research papers
Complexes of 2,4,6-trihydroxybenzoic acid: effects of intramolecular hydrogen bonding on ligand geometry and metal binding modes
aSchool of Chemistry, University of Melbourne, Parkville, VIC 3010, Australia, bScotch College, 1 Morrison Street, Hawthorn, VIC 3122, Australia, cMelbourne Girls' College, Yarra Boulevard, Richmond, VIC 3121, Australia, and dMelbourne Graduate School of Education, University of Melbourne, Parkville, VIC 3010, Australia
*Correspondence e-mail: christopher.commons@unimelb.edu.au
This article describes a series of more than 20 new compounds formed by the combination of 2,4,6-trihydroxybenzoic acid (H4thba) with metal ions in the presence of a base, with structures that include discrete molecular units, chains, and two- and three-dimensional networks. As a result of the presence of two ortho-hydroxy groups, H4thba is a relatively strong acid (pKa1 = 1.68). The carboxylate group in H3thba− is therefore considerably less basic than most carboxylates with intramolecular hydrogen bonds, conferring a rigid planar geometry upon the anion. These characteristics of H3thba− significantly impact upon the way it interacts with metal ions. In s-block metal compounds, where the interaction of the metal centres with the carboxylate O atoms is essentially ionic, the anion bonds to up to three metal centres via a variety of binding modes. In cases where the metal ion is able to form directional coordinate bonds, however, the carboxylate group tends to bond in a monodentate mode, interacting with just one metal centre in the syn mode. A dominant influence on the structures of the complexes seems to be the face-to-face stacking of the aromatic rings, which creates networks containing layers of metal–oxygen polyhedra that participate in hydrogen bonding. This investigation was undertaken, in part, by a group of secondary school students as an educational exercise designed to introduce school students to the technique of single-crystal X-ray diffraction and enhance their understanding of primary and secondary bonding.
Keywords: carboxylate; crystal engineering; crystallographic education; crystal structure; 2,4,6-trihydroxybenzoic acid; intramolecular hydrogen bonds; coordination polymers.
1. Introduction
A recent article (Abrahams et al., 2021) describes the structures of alkali metal salts of 4-hydroxybenzoic acid (H2hba). Whilst H2hba is a relatively simple organic molecule, it displays remarkable variation in its binding to metal centres. It reacts with Group 1 metal hydroxides in aqueous solution to form ionic solids containing either the uncharged molecule, the monoanion Hhba− (4-hydroxybenzoate) or the dianion hba2− (4-oxidobenzoate) (Fig. 1).
This article describes the results of a study of the complexes of 2,4,6-trihydroxybenzoic acid [H4thba; Fig. 2(a)] and its anionic forms. The presence of additional hydroxy groups in H4thba compared with H2hba offers the prospect of a greater diversity of coordination modes to metal ions, together with the potential for formation of hydrogen bonds that could aid in the generation of interesting supramolecular structures.
It is rather surprising that no metal complexes of H4thba or its anions are included in the Cambridge Structural Database (CSD, Version 5.43, June 2022 release; Groom et al., 2016), given the interest in the use of aromatic carboxylates as linkers in the synthesis of coordination polymers for technologies such as gas storage, catalysis and separation. Structures have been reported for the cocrystals of H4thba with water, pyrazine and bisphenazine (Jankowski et al., 2007), and for salts with organic ammonium cations (Dandela et al., 2018; Ganduri et al., 2019; Jankowski et al., 2007; Mittapalli et al., 2015; Prior et al., 2009; Sarmah et al., 2020; Seaton, 2014).
H4thba is a remarkably strong carboxylic acid (pKa1 = 1.68; Dean, 1999), with a similar strength to sulfurous acid. It is much more acidic than H2hba (pKa1 = 4.5) and benzoic acid (pKa = 4.2). The relatively high acidity of H4thba arises from strong intramolecular hydrogen bonds that form between the two ortho-hydroxy groups and the carboxylate group in the H3thba− ion (Fig. 2), which stabilize the conjugate carboxylate base.
Carboxylates exhibit a wide variety of coordination modes. Whilst the carboxylate anion can bind as a chelating ligand, the strain associated with the formation of the four-membered chelate ring often results in the adoption of different coordination modes, many of which involve interactions with multiple metal centres. Some of the more common coordination modes are depicted in Fig. 3 (Hu et al., 2011; Rardin et al., 1991). In the case of the complexes formed from H2hba, for example, modes I, III, IV, VI and VIII have been observed (Abrahams et al., 2021, 2022; White et al., 2015). In view of the relatively high acidity of H4thba, the carboxylate group in the H3thba− ion is much less basic than in, for example, the benzoate ion and Hhba−.
The coordination of a carboxylate group to an individual metal centre can be classified as being either syn or anti (Ryde, 1999). In the syn configuration, the second O atom of the carboxylate group is on the same side of the C—O bond as the metal centre. In this instance, the M—O—C—O torsion angle will be close to 0°. In the anti configuration, the second O atom of the carboxylate group is on the opposite side of the C—O bond as the metal centre and the M—O—C—O torsion angle will be close to 180°. The most common configuration for carboxylates is the syn form, although numerous examples of the anti form exist in the literature. For the complexes formed from H4thba, it was anticipated that the presence of the ortho-hydroxy groups would restrict coordination to the syn configuration. Significant deviation from M—O—C—O torsion angles of 0 or 180° may be expected when the interaction between the metal cation and the carboxylate is purely ionic.
This investigation was performed, in part, as a seven-week elective research program for secondary school students. The 12 students who participated were in the penultimate year of secondary education (Year 11; average age 16 years) and attended Melbourne Girls' College and Scotch College Melbourne. The program aimed to introduce students to the power of the technique of X-ray crystallography, a topic that is unfortunately missing from many modern introductory secondary school chemistry courses. The students attended weekly one-hour sessions covering the basic principles of crystallography, including the use of the OLEX2 software package (Dolomanov et al., 2009), and then performed experimental work to make new crystalline compounds in the school laboratory. In a few instances, when reactions were considered unsuitable for students to perform, the synthetic work was performed by University of Melbourne researchers.
The compounds derived from 2,4,6-trihydroxybenzoic acid, C7H6O5, described here are: di-μ-aqua-bis[triaqua(2,4,6-trihydroxybenzoato)lithium] dihydrate, [Li2(C7H5O5)2(H2O)8]·2H2O, 1, poly[μ-aqua-μ-2,4,6-trihydroxybenzoato-potassium], [K(C7H5O5)(H2O)]n, 2, poly[hemiaqua-μ-2,4,6-trihydroxybenzoato-rubidium], [Rb2(C7H5O5)2(H2O)]n, 3, poly[μ-2,4,6-trihydroxybenzoato-caesium], [Cs(C7H5O5)]n, 4, poly[μ-aqua-(μ-2,4,6-trihydroxybenzoato)(μ-2,4,6-trihydroxybenzoic acid)caesium], [Cs(C7H5O5)(C7H6O5)(H2O)]n, 5, hexaaquamagnesium(II) bis(2,4,6-trihydroxybenzoate) dihydrate, [Mg(H2O)6](C7H5O5)2·2H2O, 6, guanidinium 2,4,6-trihydroxybenzoate monohydrate, [C(NH2)3][C7H5O5]·H2O, 7, di-μ-aqua-di-μ-2,4,6-trihydroxybenzoato-bis[tetraaquacalcium(II)] bis(2,4,6-trihydroxybenzoate) tetrahydrate, [Ca2(C7H5O5)2(H2O)10](C7H5O5)2·4H2O, 8, poly[tetraaquabis(μ-2,4,6-trihydroxybenzoato)strontium], [Sr(C7H5O5)2(H2O)4]n, 9, poly[tetraaquabis(μ-2,4,6-trihydroxybenzoato)barium], [Ba(C7H5O5)2(H2O)4]n, 10, poly[[tetraaqua(μ-2,4,6-trihydroxybenzoato)bis(2,4,6-trihydroxybenzoato)cerium(III)] dihydrate], {[Ce(C7H5O5)3(H2O)4]·2H2O}n, 11, tetraaquabis(2,4,6-trihydroxybenzoato)manganese(II) tetrahydrate, [Mn(C7H5O5)2(H2O)4]·4H2O, 12 and 13, tetraaquabis(2,4,6-trihydroxybenzoato)cobalt(II) tetrahydrate, [Co(C7H5O5)2(H2O)4]·4H2O, 14, tetraaquabis(2,4,6-trihydroxybenzoato)nickel(II) tetrahydrate, [Ni(C7H5O5)2(H2O)4]·4H2O, 15, tetraaquabis(2,4,6-trihydroxybenzoato)zinc(II) tetrahydrate, [Zn(C7H5O5)2(H2O)4]·4H2O, 16, catena-poly[[bis(2,4,6-trihydroxybenzoato)copper(II)]-di-μ-aqua], [Cu(C7H5O5)2(H2O)2]n, 17, catena-poly[[[bis(2,4,6-trihydroxybenzoato)cadmium(II)]-di-μ-aqua] pentahydrate], {[Cd(C7H5O5)2(H2O)2]·5H2O}n, 18, hexaaquamanganese(II) bis(2,4,6-trihydroxybenzoate) dihydrate, [Mn(H2O)6](C7H5O5)2·2H2O, 19, catena-poly[aquabis(μ-2,4,6-trihydroxybenzoato)lead(II)], [Pb(C7H5O5)2(H2O)]n, 20, poly[μ-aqua-triaqua-(μ3-5-oxocyclohexa-2,5-diene-1,3-diolato)dilithium], [Li2(C6H4O3)(H2O)4]n, 21, and poly[[{μ-(1S,2S)-1-hydroxy-2-[(R)-1-hydroxy-2-oxido-4,6-dioxocyclohex-2-en-1-yl]-3-oxido-5-oxocyclopent-3-ene-1-carboxylato}tricaesium] 0.75-hydrate], {[Cs3(C12H7O9)(H2O)]·0.75H2O}n, 22.
X-ray crystal data sets were collected at the University of Melbourne and returned to the students by university staff. Under supervision, students determined and refined their crystal structures using SHELXT (Sheldrick, 2015a) and SHELXL (Sheldrick, 2015b), respectively, within OLEX2.
2. Experimental
2.1. Synthesis and crystallization
H4thba was combined with the hydroxides of lithium, sodium, potassium, rubidium and caesium in a series of reactions involving different stoichiometric ratios in aqueous solution. Typically, this involved heating 0.10 g (0.58 mmol) of H4thba and the appropriate amount of metal hydroxide in 5 ml of warm water (50 °C) until the solids dissolved. Crystals of the alkali metal salts suitable for single-crystal X-ray diffraction formed upon cooling and evaporation of the solvent. Compounds 1–3 were formed from 1:1 mixtures of the metal hydroxide and H4thba, but they could also be formed from combinations in other proportions.
Compound 4 was prepared from a 1:1 mixture of CsOH and H4thba, whilst a 1:2 mixture formed 5. Compound 21 was prepared from a 4:1 mixture, heated to 50 °C, whilst in the case of compound 22, the mixture was heated on a hotplate almost to dryness.
The complexes of magnesium, calcium, barium, manganese, copper, cobalt, nickel, zinc, lead and cadmium (6, 8, 10 and 12–20) were obtained by heating 0.10 g (0.58 mmol) of H4thba with the corresponding metal acetate in a 1:1 reaction mixture in 5 ml of warm water (50 °C) until the solids dissolved. Crystals formed when the solution cooled and the solvent evaporated. Remarkably, in the case of manganese, three different crystalline products with the same elemental composition were obtained using this procedure (12, 13 and 19).
The strontium salt (9) was produced by reacting 0.022 g (0.52 mmol) of LiOH·H2O with 0.10 g (0.58 mmol) of H4thba in 3 ml of water at room temperature. A 1 ml solution of 0.071 g (0.25 mmol) of Sr(NO3)2·4H2O was added and the mixture was heated at about 50 °C for 5 min. Crystals were obtained by solvent evaporation.
The synthesis of the cerium salt (11) followed the same procedure as for the strontium salt, using 0.087 g (0.20 mmol) of Ce(NO3)3·6H2O.
Finally, the guanidinium salt (7) was produced by reacting 0.022 g (0.52 mmol) of LiOH·H2O with 0.10 g (0.58 mmol) of H4thba in 3 ml of water at room temperature. A 7 ml solution of 0.075 g (0.79 mmol) of guanidinium chloride was added and the mixture heated at about 50 °C for 5 min.
Crystals were obtained by solvent evaporation with good yields obtained for each of the reactions. Visual inspection of the crystalline materials indicated a homogenous product in most of the reaction mixtures. Occasionally, different crystal habits were observed; however, these were shown to be the same crystalline material based on unit-cell determinations.
2.2. Refinement
Crystal data, data collection and structure . The H atoms of water molecules, hydroxy groups and carboxylic acid groups were located in difference Fourier maps and refined using a riding-model approximation, with O—H distances fixed at 0.85 Å and Uiso(H) = 1.5Ueq(O). H atoms bonded to O atoms were not modelled for compound 11. For the other compounds, non-hydroxylic H atoms were placed in calculated positions and refined as riding atoms, with C—H = 0.95 Å and Uiso(H) = 1.2Ueq(C) for ring H atoms. Rint values were not given for refinements that involved the use of merged data sets from twinned crystals (SHELXL HKLF5 format), i.e. those for 3, 4 and 9. Details of the refinements can be found in the files.
details are summarized in Table 13. Results and discussion
Whilst, in principle, H4thba has up to four H atoms that might be lost in the formation of complexes, nearly all the compounds described in this article contain the monoanion, H3thba− (2,4,6-trihydroxybenzoate). The exceptions are compounds 21 and 22, in which the organic components are decomposition products of H4thba. The caesium ion was found to associate with both the deprotonated and neutral forms of H4thba, yielding compound 5 of composition Cs(H3thba)(H4thba)(H2O).
As described below, H4thba reacts to form complexes with a wide range of different and interesting structures, including monomers, dimers, chains, and two- and three-dimensional networks. The following descriptions of compounds 1–22 will focus on the most significant structural aspects of the crystalline products, with the aim of identifying key factors that determine their structure.
In the descriptions of the structures that follow, the complexes are grouped on the basis of the nature of the bonds to the metal centres (Sections 3.1 and 3.2). This is followed by observations regarding the stability of H4thba in its reactions with metal ions (Section 3.3) and finally a discussion of main structural trends (Section 3.4).
3.1. Structure description of complexes with ionic bonds
The structures of the asymmetric units of the Group 1 metal salts formed from H4thba are shown in Fig. 4.
The dimer, Li2(H3thba)2(H2O)8·2H2O (1), crystallized from an aqueous solution of LiOH and H4thba when the reactants were mixed in stoichiometric ratios ranging from 1:4 to 4:1.The structure of the dimer and the extended packing arrangement are shown in Fig. 5.
Each octahedral Li+ ion is bonded to two bridging water molecules [Fig. 5(a)], three terminal water molecules and the 4-hydroxy group of the H3thba− ligand. Hydrogen bonding between the H atom of a hydroxy group and the O atom of a terminal water molecule coordinated to the adjacent Li centre `pinches' these O atoms together (O⋯O distance ∼2.72 Å).
The H3thba− units are closely packed; π–π interactions are present between the H3thba− ligands, which are arranged in a face-to-face stacking pattern ∼3.50 Å apart, with alternating orientations of the ligand. These antiparallel stacks separate layers containing Li–O polyhedra. All the complexes of H3thba− described in the current work have structures in which layers of metal and O atoms are separated by regions containing closely stacked aromatic rings. This layered architecture is a dominant structural motif in many of the structures reported previously for the alkali salts of H2hba and in some other coordination polymers of carboxylates (Abrahams et al., 2021; Banerjee & Parise, 2011).
A remarkable feature of this compound is that each metal centre is bonded to the O atom of a protonated hydroxy group of the H3thba− ligand and water molecules, rather than to the anionic carboxylate group. As discussed earlier, the carboxylate group in the H3thba− ion is much less basic than most carboxylate ligands. We suggest that this factor, in combination with the ability of the carboxylate group to form an extensive hydrogen-bonded network with lattice water molecules and neighbouring dimers [Fig. 5(b)], results in the preferential binding of metal ions to the hydroxy groups.
We were unable to obtain crystals from the reaction of NaOH and H4thba that were suitable for structural analysis. The combination of KOH and H4thba yielded crystals of compound 2, K(H3thba)(H2O). Like the lithium salt, 2 is also composed of sheets containing metal ions and O atoms that are separated by stacks of aromatic rings [Fig. 6(a)]. However, unlike 1, the potassium salt forms a three-dimensional ionic network. Each metal centre is six-coordinated and bonded to four H3thba− ions. As shown in Fig. 6(b), these anions are closely stacked in a face-to-face parallel pattern along the direction of the a axis, which is 3.7740 (4) Å in length. The potassium ions in the layers are spaced this same distance apart and bridged by a combination of water molecules, monodentate carboxylate groups and hydroxy groups. Hydrogen bonds link water molecules bonded to one metal centre with hydroxy groups of ligands bonded to metal centres in adjacent layers.
Reaction of RbOH with H4thba in a 1:1 mixture yielded compound 3, Rb2(H3thba)2(H2O). This compound forms a three-dimensional network, in which layers of H3thba− anions are interleaved with layers of Rb+ ions and water molecules [Fig. 7(a)]. When viewed along the c axis, the structure resembles that of the classic French millefeuille pastry, with the ligand layers playing the role of the pastry and metal ions as the filling. The anions form hydrogen-bonded chains, as shown in Fig. 7(b), and are arranged in antiparallel stacks ∼3.50 Å apart down the b axis [Fig. 7(c)].
Two of the metal centres in the b axis) and are arranged in columns within the network. This distance is smaller than the shortest reported Rb⋯Rb distance of 3.5721 (4) Å listed for the structure with refcode TEKXEP in the CSD (Li et al., 2017; Version 5.43, March 2022 release; Groom et al., 2016), in which Rb+ ions are bridged by O atoms. The third Rb+ ion (Rb3) is bonded to a water molecule, and both are located between the H3thba− layers, as shown in Fig. 7(a).
Rb1 and Rb2, are 3.45267 (3) Å apart (half the length of theCompound 4, Cs(H3thba), was isolated from a 1:1 mixture of CsOH and H4thba and is a three-dimensional network of Cs+ ions and H3thba−. All hydroxy groups are bonded to metal ions [Fig. 8(a)]. There are two inequivalent metal ions in the one bonded to seven O atoms and the other to nine O atoms, and two different H3thba− anions, one in which the carboxylate group is monodentate with the other bidentate. The H3thba− units are closely stacked in a parallel face-to-face fashion [Fig. 8(b)] along the direction of the b axis, which is 3.9988 (1) Å in length.
A 1:2 mixture of CsOH and H4thba reacts to form compound 5, Cs(H3thba)(H4thba)(H2O), which contains both neutral H4thba and the monoanion, H3thba−, in a three-dimensional network. The metal centres are eight-coordinate and bonded to six ligands, with the carboxyl group of the H4thba acting in a bidentate mode. The H4thba and H3thba− units form separate stacks [Fig. 9(a)]. The H4thba units are aligned in an antiparallel fashion, whereas the aromatic rings in the H3thba− stacks are rotated relative to each other. Fig. 9(b) shows the stacks of H4thba and H3thba−, and layers of Cs+ ions, viewed along the b axis. The metal centres are 6.9742 (2) Å apart, which corresponds to the length of the a axis.
With regard to the Group 2 metals, the structures of the asymmetric units of the magnesium, calcium, strontium and barium salts of H4thba are shown in Fig. 10. The structure of the guanidinium salt of H4thba is also included to allow comparison with that of the magnesium salt.
The structure of compound 6, [Mg(H2O)6][H3thba]2·2H2O, is markedly different to the structures of the other metal salts described previously in this article as the metal centres are not bonded to the organic anions. Instead, the Mg2+ ions are present as octahedral Mg(H2O)62+ units; this is unsurprising as the Mg(H2O)62+ unit is often observed in magnesium compounds (Parsekar et al., 2022), including in the salt of H2hba, [Mg(H2O)6][Hhba]2·2H2O (Shnulin et al., 1981).
The metal centres are 7.0253 (1) Å apart, which corresponds to the length of the c axis. The H3thba− units are arranged in stacks with the face-to-face aromatic rings in alternating orientations [Fig. 11(a)], displaying a centroid-to-centroid distance of ∼3.6 Å. Hydrogen bonding links the H3thba− units into chains, similar to those seen in 3 [Fig. 11(b)], and there is an extensive hydrogen-bonding network involving the ligand and the water molecules.
It is interesting to note that the structure of the guanidinium salt, [C(NH2)3][H3thba]·H2O (7), resembles that of magnesium salt 6 (Fig. 12) with respect to the relative positions of the cations and the anions. The crystals of both compounds have similar unit-cell dimensions, although 6 has a primitive (P21/c), while 7 is body centred (Ia). The orientations of the H3thba− units within stacks differ in the two compounds.
The calcium salt of H4thba, [Ca2(H3thba)2(H2O)10][H3thba]2·4H2O (8), contains the cationic dimer [Ca2(H3thba)2(H2O)10]2+ [Fig. 13(a)]. Earlier, it was noted that lithium formed an uncharged dimer, Li2(H3thba)2(H2O)8·2H2O (1), that is also bridged by two water molecules and two H3thba− ligands. In the lithium dimer, the O atom of the 4-hydroxy group bridges the metal centres, whereas in the calcium dimer, the orientation of the ligand is reversed and the larger and more highly charged Ca2+ ions are bridged by anionic carboxylate groups.
Uncoordinated H3thba− anions are interleaved between the coordinated anions to form an extended structure in which there are stacks of closely packed ligands [Fig. 13(b)], with hydrogen bonds between the anions, lattice water molecules and coordinated water molecules.
Compound 9, Sr(H3thba)2(H2O)4, has a beautifully symmetric two-dimensional 4,4-network architecture (Fig. 14), formed by coordination of the carboxylate group at one end of the H3thba− ligand and the O atom of the 4-hydroxy group at the other. As in the other compounds, the H atom on the 4-hydroxy group participates in hydrogen bonding to adjacent carboxylate groups in other ligands. The structure resembles the recently published structure of Mg(Hhba)2(H2O)2·(1,4-dioxane) (Abrahams et al., 2022), in which there are stacks of parallel networks with the 4,4-topology.
As with compound 9, Ba(H3thba)2(H2O)4 (10) also has a two-dimensional 4,4-network structure (Fig. 15), although crystals of the barium compound adopt the orthorhombic Cmcm, whereas the strontium compound is monoclinic with the P21/c. A significant difference between the two structures is that the 4,4-network in 9 is undulating, whereas in 10 the network is planar, and these structural differences are presumably the reason for the different space groups.
This description of the metal salts of H4thba that contain ionic bonds between the metal centre and H3thba− anions concludes with the cerium(III) salt which is of interest because the metal is a lanthanide and it is the only compound described in this work that contains 3+ charged metal centres.
Initial determination of the 4thba indicated a b axis of ∼9.11 Å; however, upon processing of the reflection data, it became apparent that there was a weak set of reflections consistent with a larger having b = 18.2237 (5) Å. Whilst it was possible to solve and refine the structure with the smaller cell, the use of the larger cell yielded a significantly improved model. The crystal had relatively high mosaicity and exhibited substantial disorder. Nevertheless, the overall structure of the of the cerium(III) salt of H4thba, Ce(H3thba)3(H2O)4·2H2O (11), is clearly resolved and is shown in Fig. 16. The salt consists of zigzag chains of H3thba− anions bonded to nine-coordinate Ce3+ ions (Fig. 17). Each metal centre is bonded to four anions (one bidentate and three monodentate) and four water molecules. The ligands and water molecules in the crystal are disordered over two positions. Although not all H atoms have been identified, the proximity of the O atoms indicates extensive intra- and interchain hydrogen bonding. Zigzag chains extending in the a direction form hydrogen bonds with neighbouring antiparallel chains to form layers that extend in the ab plane. These layers stack along the c direction, with close face-to-face contacts and there are uncoordinated water molecules located between the layers.
of the cerium(III) salt of H3.2. Structure description of complexes with coordinate bonds
The combination of H4thba with divalent d-block metal acetates yields a variety of complexes containing H3thba−. The structures of the asymmetric units of d-block metal complexes of H3thba− are shown in Fig. 18.
Monoclinic crystals of Mn(H3thba)2(H2O)4·4H2O (12) were obtained by heating an aqueous 1:1 mixture of H4thba and manganese acetate and leaving the solution to cool, whilst the solvent was allowed to evaporate. The structure of 12 is shown in Fig. 19. The carboxylate group of the H3thba− ligand binds in a monodentate mode in the syn configuration [Mn—O—C—O torsion angle = 9.9 (2)°]. The uncoordinated O atom forms a strong hydrogen bond (O⋯O distance ∼2.63 Å), with a coordinated water molecule [Fig. 19(a)]. As seen in Fig. 19(b), the H3thba− units are closely stacked in alternating orientations in the extended structure (centroid-to-centroid distance ∼3.4 Å).
Triclinic crystals (compound 13) were also obtained from the same synthesis. Crystals of 13 have the same formula as 12 and indeed a similar molecular structure is obtained for these polymorphs.
Compound 12 is isostructural with the complexes formed when the acetates of cobalt, nickel and zinc react with H4thba. These complexes have the formulae Co(H3thba)2(H2O)4·4H2O (14), Ni(H3thba)2(H2O)4·4H2O (15) and Zn(H3thba)2(H2O)4·4H2O (16).
In the complex Cu(H3thba)2(H2O)2 (17), the CuII centre adopts a tetragonally distorted octahedral geometry formed by two trans monodentate H3thba− ligands and four water molecules, each of which is bridging to an adjacent CuII centre. This results in a chain that extends in the b direction, as depicted in Fig. 20. The organic ligands are bonded to the metal centres in the syn configuration [Cu—O—C—O torsion angle = 12.3 (3)°]. Bridging water molecules also participate in hydrogen bonds with noncoordinated carboxylate O atoms. The chains are held together by hydrogen bonds between ortho-hydroxy H atoms and the O atoms of coordinated water molecules in adjacent chains.
The final d-block metal complex described here is Cd(H3thba)2(H2O)2·3H2O (18). Like 17, it forms chains, but only one of the bridging water molecules participates in intrachain hydrogen bonding (Fig. 21). The chains are held together by hydrogen bonds between hydroxy H atoms and both lattice and coordinated water molecules. The H3thba− units are bonded to the metal centres in the syn configuration [Cd—O—C—O torsion angle = −15.2 (7)°].
Inspection of Fig. 21 reveals a helical character along the a direction. Within the crystal, for which the is P212121, all the chains have the same handedness.
It is noted that the same reaction mixture that yielded 12 and 13 produced crystals of a manganese complex with a different structure: [Mn(H2O)6][H3thba]2·2H2O (19). The structure of 19 contains uncoordinated H3thba− ions and is very similar to that of magnesium complex 6 discussed earlier.
The final metal-based structure in this section is from the p-block and, once again, involves the monoanionic ligand, H3thba−. Pb(H3thba)2(H2O) (20) adopts a discrete monomeric structure, as indicated in Fig. 22. Each Pb2+ ion is four-coordinate and bound to a monodentate H3thba− ligand, a bidentate H3thba− ligand and a water molecule. Lead complexes are linked through hydrogen bonding. As seen in Figs. 23(a) and 23(b), the H3thba− units are stacked along the direction of the c axis (centroid-to-centroid distance of the rings of the monodentate ligand ∼3.6 Å).
The PbII centre exhibits a hemidirected coordination geometry with all the covalent bonds in one hemisphere of the coordination sphere. The pronounced coordination gap in the PbII ion created by its lone pair allows the ion to participate in noncovalent interactions, known as tetrel bonds (Bauzá et al., 2019), to O atoms of three adjacent hydroxy groups [Fig. 23(b); Pb⋯O distances of ∼2.78, ∼2.87 and ∼3.01 Å]. These interactions are shorter than the sums of the van der Waals radii but larger than the sums of the covalent radii. The hydrogen bonds between the molecules, together with the noncovalent bonds and π–π stacking interactions between the aromatic rings, link the molecules to create a three-dimensional network.
3.3. Stability of H4thba
Whereas previous investigations of complexes of H2hba found the ligand to be relatively robust, the decarboxylation of H4thba to form benzene-1,3,5-triol (phloroglucinol) is a well-known reaction that readily occurs under certain conditions (Schubert & Gardner, 1953; Zenkevich et al., 2007). Crystals of the hydrate of benzene-1,3,5-triol, C6H6O3·2H2O (Wallwork & Powell, 1957), were isolated from several reaction mixtures, particularly those that were either heated for extended periods or at temperatures above 50 °C.
Two new networks composed of decomposition products of H4thba and metal ions were also identified. The structures of their asymmetric units are shown in Fig. 24.
Heating a 4:1 mixture of LiOH and H4thba in aqueous solution caused decarboxylation of H4thba and the formation of a π-conjugated dianion with the formula C6H4O32−, shown in Fig. 25(a). This is the keto-alicyclic form of the dianion of phloroglucinol (Highet & Batterham, 1964). Pairs of Li+ ions are bridged by both the dianions and the water molecules to form chains [Fig. 25(b)] of formula Li2(C6H4O3)(H2O)4 (21). The uncoordinated O atom of the dianion participates in hydrogen bonding with adjacent coordinated water molecules. Extensive hydrogen bonding exists within and between the chains. Of particular interest is the noncoordinated O atom of the dianion, which acts as a hydrogen-bond acceptor from four water molecules.
A 4:1 reaction mixture of CsOH and H4thba produced a caesium network containing the chiral trianion, C12H7O93− [Fig. 26(a)], which is comprised of both five- and six-membered rings, and two OCCCO π-systems. The trianion combines with Cs+ ions to form Cs3(C12H7O9)(H2O)·0.75H2O (22), an intricate three-dimensional network in which the organic anion interacts with numerous caesium centres. The O atom of the solvent water molecule has 75% occupancy based upon of the site occupancy. The organic anion is chiral and the crystal consists of a of anions. No further characterization of the anion was performed. The structure is shown in stick representation in Fig. 26(b).
3.4. Discussion of structural trends
This investigation has shown that there is a wide variation in the structures of the crystalline compounds formed by the H3thba− ion when combined with metal ions in aqueous solutions. Close face-to-face packing of the aromatic rings is apparent in many of the structures, leading to layers of metal–oxygen polyhedra separated by organic groups.
In compounds of the s-block metals, where the interactions of the metal centres with the carboxylate O atoms are mainly ionic and the directionality of bonds is of less importance, the anion binds to up to three metal centres via several of the carboxylate binding modes shown in Fig. 1, viz. modes I (compounds 5, 9 and 10), II (5), III (8), IV (2 and 3) and V (4).
In compounds where the metal centre is more likely to form coordinate bonds, the H3thba− ion exhibits far less variation in its binding modes. When compared to simple aromatic carboxylate ligands, including the anions Hhba− and hba2−, there is less variety in the coordination modes involving coordinate bonds to metal centres. Whereas other ligands bond readily to two, three or four transition-metal centres, most of the compounds containing coordination bonds described in this investigation have the carboxylate groups acting solely in a monodentate mode (binding mode I), interacting with just one metal ion in the forward, or syn, direction (compounds 12–18). The Pb complex (20) is an exception, with one ligand monodentate and the other forming a four-membered chelate.
The relatively low basicity of the H3thba− anion appears to be a dominant factor in the nature of the complexes it forms, making it less likely to interact with multiple metal centres. The location of the ortho-hydroxy groups and intramolecular hydrogen bonds also appears to prevent the carboxylate group from associating with metal ions in an anti configuration.
It is noteworthy that in the ionic salts described, the atoms of the carboxylate groups are in, or close to being in, the plane of the aromatic ring. Earlier studies of the alkali metal salts of H2hba (Abrahams et al., 2021) found pronounced rotation of the atoms in the carboxylate groups away from the plane of the ring in M(Hhba)·H2O compounds (M = K, 25.1°; Rb, 26.9°; Cs, 24.5°), presumably as a result of crystal packing forces and other steric considerations. In the case of the H3thba− ion, however, the hydrogen bonds between the carboxylate group and the H atoms of the ortho-hydroxy groups appear to constrain the entire metal–carboxylate–aromatic ring system to a planar conformation.
The dimers formed by lithium and calcium with H3thba− (1 and 8) provide a contrast with respect to preferred coordination modes. In each case, a pair of H3thba− units bridge the metal ions; however, in the calcium dimer, it is the carboxylate group of each ligand that spans the metal centres, whereas in the lithium dimer, the O atoms of the 4-hydroxy groups link a pair of metal centres. This role reversal of the functional groups is likely to reflect the difference in electrostatic attraction between the anions and the 1+ and 2+ charged metal centres, and the ability of the carboxylate and hydroxy groups to form hydrogen bonds with neighbouring water molecules and dimers.
The final trend considered here relates to the metal binding of the hydroxy groups of H3thba−. The Group 1 metal ions K+, Rb+ and Cs+ interact with all of the O atoms of the hydroxy groups (compounds 2–5), whereas the Group 2 metal ions Sr2+ and Ba2+, and also Ce3+, restrict their hydroxy interactions to the 4-hydroxy group (9–11). In part, this may reflect the presence of a greater number of ligands per metal centre in the salts containing more highly charged cations and, therefore, the greater availability of oxygen donor atoms for bonding. The metals that form traditional coordination bonds did not form bonds to the hydroxy groups.
4. Conclusion
The complexes formed by H4thba described in this study display a wide range of interesting structures, including discrete monomers, dimers, chains, and two- and three-dimensional networks (and even one that resembles a French pastry). The H3thba− ligands in the lattices are closely packed with π–π stacking interactions between the aromatic rings. Hydrogen bonds clearly play a key structure-directing role in all compounds considered.
The carboxylate groups in these complexes are of special interest because this group can typically adopt a variety of binding modes. The intramolecular hydrogen bonds between the ortho-hydroxy groups and the carboxylate group in the H3thba− ion confer a planar rigid configuration upon the ligand that appears to limit its ability to form bonds, particularly directional coordination bonds. As discussed above, the low basicity of the carboxylate group in the H3thba− anion provides a contrast with the typical coordination behaviour of other carboxylate anions, resulting in a lower affinity for metal centres. Furthermore, the ortho-hydroxy groups appear to limit the availability of coordination modes that are commonly encountered with other carboxylate ligands.
The fact that almost all the complexes described in this report contain the monoanion, H3thba−, leads us to contemplate the use of more strongly basic reaction conditions to synthesize potentially interesting frameworks with networks that contain the dianion, trianion or even tetraanion, possibly using nonaqueous solvents for their synthesis. This may prove difficult as harsher reaction conditions may result in the types of decomposition of H4thba described in Section 3.3.
This investigation was highly successful in allowing senior secondary school students to experience genuine scientific discovery whilst giving them the opportunity to learn some basic principles of X-ray crystallography. In addition, students were able to appreciate the power of X-ray crystallography in being able to obtain detailed structural information at the molecular level. It was pleasing to see students responding enthusiastically to the opportunity to perform research. Students were keen to experiment, to discover the nature of the new compounds they synthesized and to learn more about the roles of strong and weak bonding interactions in the structure of matter.
Supporting information
https://doi.org/10.1107/S2053229622009901/ep3026sup1.cif
contains datablocks 1_li_h3thba, 2_KH3thba_cc66b, 3_Rb_H3thba_newrun_large_mask_tw, 4_Cs_H3thba_twin, 5_Cs_H4thba_H3thba_cc_c2thba_2to1, 6_Mg_H3thba_cc_mg_thba_1to1_pl, 7_guanidinium_H3thba_cc124f, 8_Ca_H3thba_cc124c, 9_Sr_H3thba_cc_srthba_twin1_hklf4, 10_Ba_H3thba_gaussian_april2022, 11_Ce_H3thba_weak_peaks_pl, 12_Mn_H3thba_cc124b, 13_Mn_H3THBA_triclinic_cc_mnhthba_5, 14_Co_H3thba_cc120b_2, 15_Ni_H3thba_cc2120c, 16_Zn_H3thba_gaussian_abs.hkl, 17_Cu_H3thba_cc_126d, 18_Cd_H3thba_cc_cdthba, 19_MnH2O6_H3thba_ccmnh2o6thba, 20_Pb_H3thba_cc_pbthba_frompboac_2_autored, 21_Li_C6H4O3_cc_lithba_4to1, 22_Cs_C12H7O9_cc_cs_trihy, global. DOI:Structure factors: contains datablock 1_li_h3thba. DOI: https://doi.org/10.1107/S2053229622009901/ep30261_li_h3thbasup2.hkl
Structure factors: contains datablock 2_KH3thba_cc66b. DOI: https://doi.org/10.1107/S2053229622009901/ep30262_KH3thba_cc66bsup3.hkl
Structure factors: contains datablock 3_Rb_H3thba_newrun_large_mask_tw. DOI: https://doi.org/10.1107/S2053229622009901/ep30263_Rb_H3thba_newrun_large_mask_twsup4.hkl
Structure factors: contains datablock 4_Cs_H3thba_twin. DOI: https://doi.org/10.1107/S2053229622009901/ep30264_Cs_H3thba_twinsup5.hkl
Structure factors: contains datablock 5_Cs_H4thba_H3thba_cc_c2thba_2to1. DOI: https://doi.org/10.1107/S2053229622009901/ep30265_Cs_H4thba_H3thba_cc_c2thba_2to1sup6.hkl
Structure factors: contains datablock 6_Mg_H3thba_cc_mg_thba_1to1_pl. DOI: https://doi.org/10.1107/S2053229622009901/ep30266_Mg_H3thba_cc_mg_thba_1to1_plsup7.hkl
Structure factors: contains datablock 7_guanidinium_H3thba_cc124f. DOI: https://doi.org/10.1107/S2053229622009901/ep30267_guanidinium_H3thba_cc124fsup8.hkl
Structure factors: contains datablock 8_Ca_H3thba_cc124c. DOI: https://doi.org/10.1107/S2053229622009901/ep30268_Ca_H3thba_cc124csup9.hkl
Structure factors: contains datablock 9_Sr_H3thba_cc_srthba_twin1_hklf4. DOI: https://doi.org/10.1107/S2053229622009901/ep30269_Sr_H3thba_cc_srthba_twin1_hklf4sup10.hkl
Structure factors: contains datablock 10_Ba_H3thba_gaussian_april2022. DOI: https://doi.org/10.1107/S2053229622009901/ep302610_Ba_H3thba_gaussian_april2022sup11.hkl
Structure factors: contains datablock 11_Ce_H3thba_weak_peaks_pl. DOI: https://doi.org/10.1107/S2053229622009901/ep302611_Ce_H3thba_weak_peaks_plsup12.hkl
Structure factors: contains datablock 12_Mn_H3thba_cc124b. DOI: https://doi.org/10.1107/S2053229622009901/ep302612_Mn_H3thba_cc124bsup13.hkl
Structure factors: contains datablock 13_Mn_H3THBA_triclinic_cc_mnhthba_5. DOI: https://doi.org/10.1107/S2053229622009901/ep302613_Mn_H3THBA_triclinic_cc_mnhthba_5sup14.hkl
Structure factors: contains datablock 14_Co_H3thba_cc120b_2. DOI: https://doi.org/10.1107/S2053229622009901/ep302614_Co_H3thba_cc120b_2sup15.hkl
Structure factors: contains datablock 15_Ni_H3thba_cc2120c. DOI: https://doi.org/10.1107/S2053229622009901/ep302615_Ni_H3thba_cc2120csup16.hkl
Structure factors: contains datablock 16_Zn_H3thba_gaussian_abs.hkl. DOI: https://doi.org/10.1107/S2053229622009901/ep302616_Zn_H3thba_gaussian_abs.hklsup17.hkl
Structure factors: contains datablock 17_Cu_H3thba_cc_126d. DOI: https://doi.org/10.1107/S2053229622009901/ep302617_Cu_H3thba_cc_126dsup18.hkl
Structure factors: contains datablock 18_Cd_H3thba_cc_cdthba. DOI: https://doi.org/10.1107/S2053229622009901/ep302618_Cd_H3thba_cc_cdthbasup19.hkl
Structure factors: contains datablock 19_MnH2O6_H3thba_ccmnh2o6thba. DOI: https://doi.org/10.1107/S2053229622009901/ep302619_MnH2O6_H3thba_ccmnh2o6thbasup20.hkl
Structure factors: contains datablock 20_Pb_H3thba_cc_pbthba_frompboac_2_autored. DOI: https://doi.org/10.1107/S2053229622009901/ep302620_Pb_H3thba_cc_pbthba_frompboac_2_autoredsup21.hkl
Structure factors: contains datablock 21_Li_C6H4O3_cc_lithba_4to1. DOI: https://doi.org/10.1107/S2053229622009901/ep302621_Li_C6H4O3_cc_lithba_4to1sup22.hkl
Structure factors: contains datablock 22_Cs_C12H7O9_cc_cs_trihy. DOI: https://doi.org/10.1107/S2053229622009901/ep302622_Cs_C12H7O9_cc_cs_trihysup23.hkl
Data collection: CrysAlis PRO (Rigaku OD, 2021) for 1_li_h3thba, 2_KH3thba_cc66b, 3_Rb_H3thba_newrun_large_mask_tw, 4_Cs_H3thba_twin, 10_Ba_H3thba_gaussian_april2022, 11_Ce_H3thba_weak_peaks_pl, 17_Cu_H3thba_cc_126d, 19_MnH2O6_H3thba_ccmnh2o6thba, 20_Pb_H3thba_cc_pbthba_frompboac_2_autored, 21_Li_C6H4O3_cc_lithba_4to1; CrysAlis PRO (Rigaku OD, 2018) for 5_Cs_H4thba_H3thba_cc_c2thba_2to1, 7_guanidinium_H3thba_cc124f, 8_Ca_H3thba_cc124c, 12_Mn_H3thba_cc124b, 13_Mn_H3THBA_triclinic_cc_mnhthba_5, 14_Co_H3thba_cc120b_2, 15_Ni_H3thba_cc2120c, 18_Cd_H3thba_cc_cdthba, 22_Cs_C12H7O9_cc_cs_trihy; CrysAlis PRO 1.171.40.53a (Rigaku OD, 2019) for 6_Mg_H3thba_cc_mg_thba_1to1_pl; CrysAlis PRO 1.171.40.84a (Rigaku OD, 2020) for 9_Sr_H3thba_cc_srthba_twin1_hklf4; CrysAlis PRO (Rigaku OD, 2020) for 16_Zn_H3thba_gaussian_abs.hkl. Cell
CrysAlis PRO (Rigaku OD, 2021) for 1_li_h3thba, 2_KH3thba_cc66b, 3_Rb_H3thba_newrun_large_mask_tw, 4_Cs_H3thba_twin, 10_Ba_H3thba_gaussian_april2022, 11_Ce_H3thba_weak_peaks_pl, 17_Cu_H3thba_cc_126d, 19_MnH2O6_H3thba_ccmnh2o6thba, 20_Pb_H3thba_cc_pbthba_frompboac_2_autored, 21_Li_C6H4O3_cc_lithba_4to1; CrysAlis PRO (Rigaku OD, 2018) for 5_Cs_H4thba_H3thba_cc_c2thba_2to1, 7_guanidinium_H3thba_cc124f, 8_Ca_H3thba_cc124c, 12_Mn_H3thba_cc124b, 13_Mn_H3THBA_triclinic_cc_mnhthba_5, 14_Co_H3thba_cc120b_2, 15_Ni_H3thba_cc2120c, 18_Cd_H3thba_cc_cdthba, 22_Cs_C12H7O9_cc_cs_trihy; CrysAlis PRO 1.171.40.53a (Rigaku OD, 2019) for 6_Mg_H3thba_cc_mg_thba_1to1_pl; CrysAlis PRO 1.171.40.84a (Rigaku OD, 2020) for 9_Sr_H3thba_cc_srthba_twin1_hklf4; CrysAlis PRO (Rigaku OD, 2020) for 16_Zn_H3thba_gaussian_abs.hkl. Data reduction: CrysAlis PRO (Rigaku OD, 2021) for 1_li_h3thba, 2_KH3thba_cc66b, 3_Rb_H3thba_newrun_large_mask_tw, 4_Cs_H3thba_twin, 10_Ba_H3thba_gaussian_april2022, 11_Ce_H3thba_weak_peaks_pl, 17_Cu_H3thba_cc_126d, 19_MnH2O6_H3thba_ccmnh2o6thba, 20_Pb_H3thba_cc_pbthba_frompboac_2_autored, 21_Li_C6H4O3_cc_lithba_4to1; CrysAlis PRO (Rigaku OD, 2018) for 5_Cs_H4thba_H3thba_cc_c2thba_2to1, 7_guanidinium_H3thba_cc124f, 8_Ca_H3thba_cc124c, 12_Mn_H3thba_cc124b, 13_Mn_H3THBA_triclinic_cc_mnhthba_5, 14_Co_H3thba_cc120b_2, 15_Ni_H3thba_cc2120c, 18_Cd_H3thba_cc_cdthba, 22_Cs_C12H7O9_cc_cs_trihy; CrysAlis PRO 1.171.40.53a (Rigaku OD, 2019) for 6_Mg_H3thba_cc_mg_thba_1to1_pl; CrysAlis PRO 1.171.40.84a (Rigaku OD, 2020) for 9_Sr_H3thba_cc_srthba_twin1_hklf4; CrysAlis PRO (Rigaku OD, 2020) for 16_Zn_H3thba_gaussian_abs.hkl. Program(s) used to solve structure: SHELXT2018 (Sheldrick, 2015a) for 1_li_h3thba, 5_Cs_H4thba_H3thba_cc_c2thba_2to1, 7_guanidinium_H3thba_cc124f, 11_Ce_H3thba_weak_peaks_pl, 12_Mn_H3thba_cc124b, 13_Mn_H3THBA_triclinic_cc_mnhthba_5, 14_Co_H3thba_cc120b_2, 15_Ni_H3thba_cc2120c, 18_Cd_H3thba_cc_cdthba, 19_MnH2O6_H3thba_ccmnh2o6thba, 22_Cs_C12H7O9_cc_cs_trihy; SHELXT (Sheldrick, 2015a) for 4_Cs_H3thba_twin, 9_Sr_H3thba_cc_srthba_twin1_hklf4, 16_Zn_H3thba_gaussian_abs.hkl, 17_Cu_H3thba_cc_126d, 21_Li_C6H4O3_cc_lithba_4to1; olex2.solve (Bourhis et al., 2015) for 6_Mg_H3thba_cc_mg_thba_1to1_pl. For all structures, program(s) used to refine structure: SHELXL2018 (Sheldrick, 2015b). Molecular graphics: OLEX2 (Dolomanov et al., 2009) and CrystalMaker (Palmer, 2020) for 1_li_h3thba; OLEX2 (Dolomanov et al., 2009) for 2_KH3thba_cc66b, 3_Rb_H3thba_newrun_large_mask_tw, 4_Cs_H3thba_twin, 5_Cs_H4thba_H3thba_cc_c2thba_2to1, 6_Mg_H3thba_cc_mg_thba_1to1_pl, 7_guanidinium_H3thba_cc124f, 8_Ca_H3thba_cc124c, 9_Sr_H3thba_cc_srthba_twin1_hklf4, 10_Ba_H3thba_gaussian_april2022, 11_Ce_H3thba_weak_peaks_pl, 12_Mn_H3thba_cc124b, 13_Mn_H3THBA_triclinic_cc_mnhthba_5, 14_Co_H3thba_cc120b_2, 15_Ni_H3thba_cc2120c, 16_Zn_H3thba_gaussian_abs.hkl, 17_Cu_H3thba_cc_126d, 18_Cd_H3thba_cc_cdthba, 19_MnH2O6_H3thba_ccmnh2o6thba, 20_Pb_H3thba_cc_pbthba_frompboac_2_autored, 21_Li_C6H4O3_cc_lithba_4to1, 22_Cs_C12H7O9_cc_cs_trihy. Software used to prepare material for publication: OLEX2 (Dolomanov et al., 2009) and PLATON (Spek, 2020) for 1_li_h3thba; OLEX2 (Dolomanov et al., 2009) for 2_KH3thba_cc66b, 3_Rb_H3thba_newrun_large_mask_tw, 4_Cs_H3thba_twin, 5_Cs_H4thba_H3thba_cc_c2thba_2to1, 6_Mg_H3thba_cc_mg_thba_1to1_pl, 7_guanidinium_H3thba_cc124f, 8_Ca_H3thba_cc124c, 9_Sr_H3thba_cc_srthba_twin1_hklf4, 10_Ba_H3thba_gaussian_april2022, 11_Ce_H3thba_weak_peaks_pl, 12_Mn_H3thba_cc124b, 13_Mn_H3THBA_triclinic_cc_mnhthba_5, 14_Co_H3thba_cc120b_2, 15_Ni_H3thba_cc2120c, 16_Zn_H3thba_gaussian_abs.hkl, 17_Cu_H3thba_cc_126d, 18_Cd_H3thba_cc_cdthba, 19_MnH2O6_H3thba_ccmnh2o6thba, 20_Pb_H3thba_cc_pbthba_frompboac_2_autored, 21_Li_C6H4O3_cc_lithba_4to1, 22_Cs_C12H7O9_cc_cs_trihy.[Li2(C7H5O5)2(H2O)8]·2H2O | Z = 1 |
Mr = 532.26 | F(000) = 280 |
Triclinic, P1 | Dx = 1.594 Mg m−3 |
a = 6.8553 (3) Å | Cu Kα radiation, λ = 1.54184 Å |
b = 8.5698 (2) Å | Cell parameters from 3862 reflections |
c = 10.3468 (4) Å | θ = 4.5–76.0° |
α = 95.637 (3)° | µ = 1.33 mm−1 |
β = 102.395 (3)° | T = 100 K |
γ = 108.297 (3)° | Irregular, clear colourless |
V = 554.61 (4) Å3 | 0.34 × 0.21 × 0.10 mm |
XtaLAB Synergy, Dualflex, HyPix diffractometer | 2210 independent reflections |
Radiation source: micro-focus sealed X-ray tube, PhotonJet (Cu) X-ray Source | 2042 reflections with I > 2σ(I) |
Mirror monochromator | Rint = 0.022 |
Detector resolution: 10.0000 pixels mm-1 | θmax = 76.5°, θmin = 4.5° |
ω scans | h = −8→8 |
Absorption correction: gaussian (CrysAlis PRO; Rigaku OD, 2021) | k = −10→7 |
Tmin = 0.283, Tmax = 1.000 | l = −12→13 |
5754 measured reflections |
Refinement on F2 | Primary atom site location: dual |
Least-squares matrix: full | Hydrogen site location: mixed |
R[F2 > 2σ(F2)] = 0.032 | H atoms treated by a mixture of independent and constrained refinement |
wR(F2) = 0.098 | w = 1/[σ2(Fo2) + (0.0575P)2 + 0.1293P] where P = (Fo2 + 2Fc2)/3 |
S = 1.11 | (Δ/σ)max = 0.001 |
2210 reflections | Δρmax = 0.37 e Å−3 |
183 parameters | Δρmin = −0.29 e Å−3 |
13 restraints |
Geometry. All esds (except the esd in the dihedral angle between two l.s. planes) are estimated using the full covariance matrix. The cell esds are taken into account individually in the estimation of esds in distances, angles and torsion angles; correlations between esds in cell parameters are only used when they are defined by crystal symmetry. An approximate (isotropic) treatment of cell esds is used for estimating esds involving l.s. planes. |
Refinement. O-H distances were fixed at 0.85 and Uiso(H) = 1.5Ueq(O). |
x | y | z | Uiso*/Ueq | ||
O1 | 0.44537 (13) | 0.80144 (11) | 0.78396 (8) | 0.0158 (2) | |
O2 | 0.16382 (13) | 0.23053 (10) | 0.58974 (8) | 0.0162 (2) | |
H2 | 0.110914 | 0.167634 | 0.514218 | 0.024* | |
O3 | 0.04206 (14) | 0.14669 (10) | 0.33765 (9) | 0.0181 (2) | |
O4 | 0.08937 (13) | 0.33767 (11) | 0.20527 (8) | 0.0166 (2) | |
O5 | 0.23775 (13) | 0.64658 (10) | 0.30722 (8) | 0.0151 (2) | |
H5 | 0.187348 | 0.560461 | 0.247386 | 0.023* | |
O6 | 0.72851 (13) | 1.04986 (10) | 1.01710 (9) | 0.0148 (2) | |
O7 | 0.56288 (13) | 0.88523 (10) | 1.22835 (8) | 0.0160 (2) | |
H7A | 0.676614 | 0.868773 | 1.266749 | 0.024* | |
H7B | 0.465124 | 0.817272 | 1.255219 | 0.024* | |
O8 | 0.24653 (13) | 0.61806 (10) | 1.00862 (8) | 0.0168 (2) | |
H8A | 0.275978 | 0.529739 | 0.992917 | 0.025* | |
H8B | 0.142948 | 0.608398 | 0.942206 | 0.025* | |
O9 | 0.71149 (13) | 0.69491 (10) | 1.00440 (8) | 0.0161 (2) | |
H9A | 0.826833 | 0.745740 | 1.064847 | 0.024* | |
H9B | 0.747906 | 0.699113 | 0.930836 | 0.024* | |
C1 | 0.36830 (17) | 0.68303 (14) | 0.67044 (11) | 0.0130 (2) | |
C2 | 0.31374 (18) | 0.51639 (14) | 0.68635 (11) | 0.0137 (3) | |
H2A | 0.335892 | 0.488254 | 0.773564 | 0.016* | |
C3 | 0.22665 (17) | 0.39250 (14) | 0.57280 (12) | 0.0128 (2) | |
C4 | 0.19869 (17) | 0.43114 (14) | 0.44170 (11) | 0.0127 (3) | |
C5 | 0.26092 (17) | 0.60145 (14) | 0.43110 (11) | 0.0127 (2) | |
C6 | 0.34394 (18) | 0.72692 (14) | 0.54310 (12) | 0.0135 (2) | |
H6 | 0.383702 | 0.840965 | 0.533561 | 0.016* | |
C7 | 0.10544 (17) | 0.29779 (15) | 0.32146 (12) | 0.0140 (2) | |
Li1 | 0.5011 (3) | 0.8216 (2) | 1.0106 (2) | 0.0181 (4) | |
H1 | 0.440 (3) | 0.8912 (19) | 0.7646 (17) | 0.027* | |
H6A | 0.782 (3) | 1.065 (2) | 0.9518 (16) | 0.027* | |
H6B | 0.824 (2) | 1.107 (2) | 1.0849 (15) | 0.027* | |
H10A | 0.104 (3) | 0.826 (2) | 0.2467 (16) | 0.027* | |
H10B | 0.072 (3) | 0.9698 (19) | 0.2383 (16) | 0.027* | |
O10 | 0.07960 (13) | 0.88620 (11) | 0.19033 (9) | 0.0164 (2) |
U11 | U22 | U33 | U12 | U13 | U23 | |
O1 | 0.0212 (4) | 0.0123 (4) | 0.0111 (4) | 0.0043 (3) | 0.0015 (3) | −0.0003 (3) |
O2 | 0.0210 (4) | 0.0105 (4) | 0.0149 (4) | 0.0035 (3) | 0.0028 (3) | 0.0020 (3) |
O3 | 0.0203 (4) | 0.0126 (4) | 0.0186 (4) | 0.0037 (3) | 0.0037 (3) | −0.0012 (3) |
O4 | 0.0179 (4) | 0.0193 (4) | 0.0114 (4) | 0.0073 (3) | 0.0017 (3) | −0.0008 (3) |
O5 | 0.0204 (4) | 0.0140 (4) | 0.0101 (4) | 0.0054 (3) | 0.0031 (3) | 0.0018 (3) |
O6 | 0.0142 (4) | 0.0154 (4) | 0.0118 (4) | 0.0024 (3) | 0.0024 (3) | 0.0004 (3) |
O7 | 0.0142 (4) | 0.0159 (4) | 0.0165 (4) | 0.0042 (3) | 0.0025 (3) | 0.0039 (3) |
O8 | 0.0171 (4) | 0.0144 (4) | 0.0174 (4) | 0.0054 (3) | 0.0020 (3) | 0.0019 (3) |
O9 | 0.0164 (4) | 0.0160 (4) | 0.0150 (4) | 0.0054 (3) | 0.0032 (3) | 0.0011 (3) |
C1 | 0.0105 (5) | 0.0145 (5) | 0.0125 (5) | 0.0038 (4) | 0.0018 (4) | −0.0010 (4) |
C2 | 0.0141 (5) | 0.0161 (6) | 0.0118 (6) | 0.0061 (4) | 0.0032 (4) | 0.0035 (4) |
C3 | 0.0112 (5) | 0.0129 (5) | 0.0155 (6) | 0.0051 (4) | 0.0038 (4) | 0.0035 (4) |
C4 | 0.0108 (5) | 0.0145 (6) | 0.0128 (6) | 0.0051 (4) | 0.0026 (4) | 0.0013 (4) |
C5 | 0.0111 (5) | 0.0159 (6) | 0.0122 (5) | 0.0056 (4) | 0.0034 (4) | 0.0031 (4) |
C6 | 0.0137 (5) | 0.0120 (5) | 0.0145 (6) | 0.0040 (4) | 0.0036 (4) | 0.0028 (4) |
C7 | 0.0101 (5) | 0.0176 (6) | 0.0145 (6) | 0.0062 (4) | 0.0025 (4) | 0.0008 (4) |
Li1 | 0.0182 (10) | 0.0150 (10) | 0.0204 (11) | 0.0053 (8) | 0.0046 (8) | 0.0027 (8) |
O10 | 0.0202 (4) | 0.0161 (4) | 0.0146 (4) | 0.0081 (3) | 0.0055 (3) | 0.0028 (3) |
O1—C1 | 1.3606 (14) | O8—H8B | 0.8519 |
O1—Li1 | 2.274 (2) | O8—Li1 | 2.038 (2) |
O1—H1 | 0.823 (14) | O9—H9A | 0.8509 |
O2—H2 | 0.8400 | O9—H9B | 0.8510 |
O2—C3 | 1.3593 (14) | O9—Li1 | 2.067 (2) |
O3—C7 | 1.2705 (15) | C1—C2 | 1.3941 (17) |
O4—C7 | 1.2735 (15) | C1—C6 | 1.3956 (16) |
O5—H5 | 0.8400 | C2—H2A | 0.9500 |
O5—C5 | 1.3662 (14) | C2—C3 | 1.3856 (16) |
O6—Li1 | 2.068 (2) | C3—C4 | 1.4152 (16) |
O6—Li1i | 2.175 (2) | C4—C5 | 1.4088 (16) |
O6—H6A | 0.839 (14) | C4—C7 | 1.4775 (16) |
O6—H6B | 0.834 (14) | C5—C6 | 1.3823 (16) |
O7—H7A | 0.8560 | C6—H6 | 0.9500 |
O7—H7B | 0.8558 | Li1—Li1i | 3.091 (4) |
O7—Li1 | 2.181 (2) | O10—H10A | 0.838 (14) |
O8—H8A | 0.8520 | O10—H10B | 0.853 (14) |
C1—O1—Li1 | 139.87 (9) | O5—C5—C4 | 119.92 (10) |
C1—O1—H1 | 109.5 (12) | O5—C5—C6 | 118.05 (10) |
Li1—O1—H1 | 108.1 (12) | C6—C5—C4 | 122.03 (11) |
C3—O2—H2 | 109.5 | C1—C6—H6 | 120.6 |
C5—O5—H5 | 109.5 | C5—C6—C1 | 118.80 (10) |
Li1—O6—Li1i | 93.51 (8) | C5—C6—H6 | 120.6 |
Li1—O6—H6A | 119.2 (12) | O3—C7—O4 | 122.14 (11) |
Li1i—O6—H6A | 103.6 (12) | O3—C7—C4 | 118.68 (10) |
Li1—O6—H6B | 125.4 (12) | O4—C7—C4 | 119.17 (10) |
Li1i—O6—H6B | 105.0 (12) | O1—Li1—Li1i | 81.55 (9) |
H6A—O6—H6B | 105.6 (17) | O6—Li1—O1 | 84.26 (8) |
H7A—O7—H7B | 104.2 | O6i—Li1—O1 | 83.46 (8) |
Li1—O7—H7A | 109.7 | O6—Li1—O6i | 86.49 (8) |
Li1—O7—H7B | 109.7 | O6—Li1—O7 | 88.04 (8) |
H8A—O8—H8B | 104.4 | O6i—Li1—O7 | 90.37 (8) |
Li1—O8—H8A | 109.4 | O6—Li1—Li1i | 44.61 (6) |
Li1—O8—H8B | 109.7 | O6i—Li1—Li1i | 41.89 (5) |
H9A—O9—H9B | 104.4 | O7—Li1—O1 | 170.40 (10) |
Li1—O9—H9A | 109.5 | O7—Li1—Li1i | 88.95 (9) |
Li1—O9—H9B | 109.8 | O8—Li1—O1 | 97.06 (9) |
O1—C1—C2 | 117.42 (10) | O8—Li1—O6 | 170.86 (12) |
O1—C1—C6 | 121.21 (10) | O8—Li1—O6i | 84.68 (8) |
C2—C1—C6 | 121.38 (11) | O8—Li1—O7 | 89.66 (9) |
C1—C2—H2A | 120.6 | O8—Li1—O9 | 96.23 (9) |
C3—C2—C1 | 118.88 (10) | O8—Li1—Li1i | 126.52 (12) |
C3—C2—H2A | 120.6 | O9—Li1—O1 | 87.49 (8) |
O2—C3—C2 | 118.30 (10) | O9—Li1—O6i | 170.95 (12) |
O2—C3—C4 | 120.02 (10) | O9—Li1—O6 | 92.86 (9) |
C2—C3—C4 | 121.66 (11) | O9—Li1—O7 | 98.63 (9) |
C3—C4—C7 | 121.11 (10) | O9—Li1—Li1i | 136.73 (12) |
C5—C4—C3 | 117.21 (10) | H10A—O10—H10B | 103.0 (16) |
C5—C4—C7 | 121.68 (11) | ||
O1—C1—C2—C3 | 177.39 (10) | C3—C4—C5—C6 | −0.67 (16) |
O1—C1—C6—C5 | −178.72 (10) | C3—C4—C7—O3 | 2.90 (16) |
O2—C3—C4—C5 | 178.03 (9) | C3—C4—C7—O4 | −177.72 (10) |
O2—C3—C4—C7 | −1.19 (16) | C4—C5—C6—C1 | 0.56 (17) |
O5—C5—C6—C1 | 179.87 (9) | C5—C4—C7—O3 | −176.29 (10) |
C1—C2—C3—O2 | −176.61 (9) | C5—C4—C7—O4 | 3.09 (16) |
C1—C2—C3—C4 | 2.17 (17) | C6—C1—C2—C3 | −2.30 (17) |
C2—C1—C6—C5 | 0.96 (17) | C7—C4—C5—O5 | −0.75 (16) |
C2—C3—C4—C5 | −0.72 (16) | C7—C4—C5—C6 | 178.55 (10) |
C2—C3—C4—C7 | −179.95 (10) | Li1—O1—C1—C2 | −5.64 (19) |
C3—C4—C5—O5 | −179.97 (9) | Li1—O1—C1—C6 | 174.05 (11) |
Symmetry code: (i) −x+1, −y+2, −z+2. |
[K(C7H5O5)(H2O)] | F(000) = 928 |
Mr = 226.23 | Dx = 1.764 Mg m−3 |
Monoclinic, P21/c | Cu Kα radiation, λ = 1.54184 Å |
a = 3.77740 (4) Å | Cell parameters from 8461 reflections |
b = 30.1580 (3) Å | θ = 3.3–77.3° |
c = 15.00812 (18) Å | µ = 5.57 mm−1 |
β = 94.9465 (10)° | T = 100 K |
V = 1703.34 (3) Å3 | Block, clear colourless |
Z = 8 | 0.26 × 0.05 × 0.03 mm |
XtaLAB Synergy, Dualflex, HyPix diffractometer | 3563 independent reflections |
Radiation source: micro-focus sealed X-ray tube, PhotonJet (Cu) X-ray Source | 3234 reflections with I > 2σ(I) |
Mirror monochromator | Rint = 0.048 |
Detector resolution: 10.0000 pixels mm-1 | θmax = 77.8°, θmin = 2.9° |
ω scans | h = −4→3 |
Absorption correction: gaussian (CrysAlis PRO; Rigaku OD, 2021) | k = −38→38 |
Tmin = 0.284, Tmax = 1.000 | l = −18→18 |
15764 measured reflections |
Refinement on F2 | Primary atom site location: dual |
Least-squares matrix: full | Hydrogen site location: mixed |
R[F2 > 2σ(F2)] = 0.037 | H atoms treated by a mixture of independent and constrained refinement |
wR(F2) = 0.106 | w = 1/[σ2(Fo2) + (0.0661P)2 + 0.7237P] where P = (Fo2 + 2Fc2)/3 |
S = 1.03 | (Δ/σ)max = 0.002 |
3563 reflections | Δρmax = 0.58 e Å−3 |
283 parameters | Δρmin = −0.29 e Å−3 |
21 restraints |
Geometry. All esds (except the esd in the dihedral angle between two l.s. planes) are estimated using the full covariance matrix. The cell esds are taken into account individually in the estimation of esds in distances, angles and torsion angles; correlations between esds in cell parameters are only used when they are defined by crystal symmetry. An approximate (isotropic) treatment of cell esds is used for estimating esds involving l.s. planes. |
Refinement. O-H distances were fixed at 0.85 and Uiso(H) = 1.5Ueq(O). |
x | y | z | Uiso*/Ueq | ||
K1 | 0.86229 (10) | 0.24682 (2) | 0.13056 (3) | 0.02359 (13) | |
K2 | 0.67426 (10) | 0.50281 (2) | 0.66825 (3) | 0.02185 (13) | |
O1 | 0.3646 (4) | 0.30318 (4) | 0.06959 (9) | 0.0232 (3) | |
O2 | 0.4237 (4) | 0.36673 (5) | 0.14492 (9) | 0.0250 (3) | |
O3 | 0.1439 (4) | 0.43739 (5) | 0.07902 (9) | 0.0233 (3) | |
O4 | −0.4281 (4) | 0.43411 (5) | −0.21226 (9) | 0.0233 (3) | |
O5 | 0.0987 (4) | 0.30203 (4) | −0.08966 (9) | 0.0233 (3) | |
O6 | 1.1426 (4) | 0.44815 (4) | 0.58928 (9) | 0.0229 (3) | |
O7 | 1.3563 (4) | 0.38468 (5) | 0.64844 (9) | 0.0251 (3) | |
O8 | 1.3080 (4) | 0.31364 (4) | 0.56077 (9) | 0.0226 (3) | |
O9 | 0.7567 (4) | 0.31586 (4) | 0.26624 (9) | 0.0229 (3) | |
O10 | 0.8604 (4) | 0.45023 (4) | 0.43169 (9) | 0.0226 (3) | |
O11 | 0.4038 (4) | 0.23225 (5) | 0.25831 (10) | 0.0263 (3) | |
O12 | 0.2210 (4) | 0.51648 (5) | 0.79623 (9) | 0.0253 (3) | |
C1 | 0.3152 (5) | 0.34480 (6) | 0.07524 (13) | 0.0205 (4) | |
C2 | 0.1236 (5) | 0.36825 (6) | −0.00038 (12) | 0.0198 (4) | |
C3 | 0.0192 (5) | 0.34574 (6) | −0.08106 (13) | 0.0202 (4) | |
C4 | −0.1632 (5) | 0.36693 (6) | −0.15249 (13) | 0.0220 (4) | |
H4A | −0.231650 | 0.351297 | −0.206175 | 0.026* | |
C5 | −0.2451 (5) | 0.41185 (6) | −0.14425 (13) | 0.0202 (4) | |
C6 | −0.1428 (5) | 0.43559 (6) | −0.06675 (13) | 0.0210 (4) | |
H6 | −0.198501 | 0.466194 | −0.062403 | 0.025* | |
C7 | 0.0421 (5) | 0.41367 (6) | 0.00403 (12) | 0.0203 (4) | |
C8 | 1.2007 (5) | 0.40672 (6) | 0.58405 (12) | 0.0203 (4) | |
C9 | 1.0896 (5) | 0.38301 (6) | 0.50021 (12) | 0.0197 (4) | |
C10 | 1.1469 (5) | 0.33719 (6) | 0.49111 (12) | 0.0194 (4) | |
C11 | 1.0363 (5) | 0.31480 (6) | 0.41271 (12) | 0.0206 (4) | |
H11 | 1.073889 | 0.283776 | 0.407816 | 0.025* | |
C12 | 0.8691 (5) | 0.33860 (6) | 0.34130 (12) | 0.0208 (4) | |
H10 | 0.941 (6) | 0.4563 (9) | 0.4856 (10) | 0.031* | |
H3 | 0.253 (6) | 0.4186 (7) | 0.1139 (15) | 0.031* | |
H4 | −0.505 (7) | 0.4164 (8) | −0.2540 (14) | 0.031* | |
H5 | 0.219 (6) | 0.2957 (9) | −0.0412 (12) | 0.031* | |
H8 | 1.330 (7) | 0.3334 (7) | 0.6017 (14) | 0.031* | |
H9 | 0.653 (6) | 0.3332 (8) | 0.2270 (15) | 0.031* | |
H11A | 0.481 (7) | 0.2559 (6) | 0.2823 (18) | 0.031* | |
H11B | 0.330 (7) | 0.2180 (8) | 0.3017 (14) | 0.031* | |
H12A | 0.285 (7) | 0.4916 (6) | 0.8194 (17) | 0.031* | |
H12B | 0.151 (7) | 0.5298 (8) | 0.8408 (13) | 0.031* | |
C13 | 0.8160 (5) | 0.38438 (6) | 0.34676 (13) | 0.0211 (4) | |
H13 | 0.710085 | 0.400457 | 0.296943 | 0.025* | |
C14 | 0.9205 (5) | 0.40565 (6) | 0.42586 (12) | 0.0195 (4) |
U11 | U22 | U33 | U12 | U13 | U23 | |
K1 | 0.0207 (2) | 0.0238 (2) | 0.0260 (2) | 0.00088 (14) | 0.00040 (16) | 0.00158 (15) |
K2 | 0.0204 (2) | 0.0236 (2) | 0.0212 (2) | 0.00048 (14) | −0.00034 (15) | −0.00012 (14) |
O1 | 0.0261 (7) | 0.0212 (6) | 0.0216 (7) | 0.0005 (5) | −0.0011 (5) | 0.0016 (5) |
O2 | 0.0305 (7) | 0.0251 (7) | 0.0181 (7) | 0.0026 (5) | −0.0044 (5) | −0.0008 (5) |
O3 | 0.0287 (7) | 0.0228 (7) | 0.0175 (6) | 0.0032 (5) | −0.0038 (5) | −0.0027 (5) |
O4 | 0.0284 (7) | 0.0219 (6) | 0.0184 (7) | 0.0011 (5) | −0.0044 (5) | 0.0004 (5) |
O5 | 0.0300 (7) | 0.0196 (6) | 0.0196 (7) | 0.0019 (5) | −0.0029 (5) | −0.0009 (5) |
O6 | 0.0261 (7) | 0.0207 (6) | 0.0216 (7) | 0.0005 (5) | −0.0009 (5) | −0.0017 (5) |
O7 | 0.0303 (7) | 0.0240 (7) | 0.0195 (7) | 0.0020 (5) | −0.0059 (5) | −0.0009 (5) |
O8 | 0.0281 (7) | 0.0198 (6) | 0.0189 (6) | 0.0028 (5) | −0.0033 (5) | 0.0008 (5) |
O9 | 0.0284 (7) | 0.0216 (6) | 0.0178 (6) | 0.0007 (5) | −0.0037 (5) | −0.0015 (5) |
O10 | 0.0282 (7) | 0.0182 (6) | 0.0208 (7) | 0.0020 (5) | −0.0015 (5) | −0.0002 (5) |
O11 | 0.0306 (7) | 0.0261 (7) | 0.0218 (7) | −0.0040 (6) | 0.0003 (6) | 0.0000 (6) |
O12 | 0.0275 (7) | 0.0259 (7) | 0.0223 (7) | 0.0033 (6) | 0.0016 (5) | −0.0017 (5) |
C1 | 0.0197 (8) | 0.0223 (9) | 0.0192 (9) | −0.0003 (7) | 0.0006 (7) | 0.0006 (7) |
C2 | 0.0188 (8) | 0.0219 (9) | 0.0185 (9) | 0.0006 (7) | 0.0006 (7) | −0.0008 (7) |
C3 | 0.0204 (8) | 0.0198 (9) | 0.0204 (9) | −0.0001 (7) | 0.0012 (7) | −0.0006 (7) |
C4 | 0.0236 (9) | 0.0232 (9) | 0.0189 (9) | −0.0012 (7) | −0.0009 (7) | −0.0025 (7) |
C5 | 0.0182 (8) | 0.0228 (9) | 0.0195 (9) | −0.0001 (7) | 0.0003 (7) | 0.0033 (7) |
C6 | 0.0219 (8) | 0.0199 (8) | 0.0207 (9) | 0.0003 (7) | 0.0004 (7) | 0.0008 (7) |
C7 | 0.0200 (8) | 0.0219 (9) | 0.0189 (9) | 0.0001 (7) | 0.0011 (7) | −0.0016 (7) |
C8 | 0.0191 (8) | 0.0233 (9) | 0.0183 (9) | −0.0007 (7) | 0.0001 (7) | −0.0006 (7) |
C9 | 0.0193 (8) | 0.0214 (9) | 0.0182 (9) | −0.0011 (7) | 0.0003 (7) | −0.0004 (7) |
C10 | 0.0186 (8) | 0.0215 (9) | 0.0177 (8) | −0.0004 (7) | −0.0006 (6) | 0.0029 (7) |
C11 | 0.0231 (8) | 0.0196 (8) | 0.0189 (9) | 0.0003 (7) | −0.0001 (7) | −0.0002 (7) |
C12 | 0.0205 (8) | 0.0235 (9) | 0.0181 (9) | −0.0015 (7) | 0.0003 (7) | −0.0012 (7) |
C13 | 0.0217 (8) | 0.0215 (9) | 0.0197 (9) | 0.0000 (7) | 0.0002 (7) | 0.0023 (7) |
C14 | 0.0195 (8) | 0.0178 (8) | 0.0213 (9) | 0.0006 (7) | 0.0014 (7) | 0.0023 (7) |
K1—K1i | 3.7774 (1) | O6—C8 | 1.272 (2) |
K1—K1ii | 3.7774 (1) | O7—C8 | 1.274 (2) |
K1—O1ii | 2.7614 (14) | O8—C10 | 1.363 (2) |
K1—O1 | 2.6389 (14) | O8—H8 | 0.854 (13) |
K1—O8iii | 2.9030 (14) | O9—C12 | 1.355 (2) |
K1—O8iv | 2.7497 (14) | O9—H9 | 0.856 (13) |
K1—O9 | 2.9632 (14) | O10—H10 | 0.860 (13) |
K1—O11ii | 2.7158 (15) | O10—C14 | 1.367 (2) |
K1—O11 | 2.7279 (15) | O11—H11A | 0.839 (13) |
K1—H8iv | 3.05 (2) | O11—H11B | 0.847 (13) |
K1—H11A | 2.81 (3) | O12—H12A | 0.852 (13) |
K2—K2ii | 3.7774 (1) | O12—H12B | 0.843 (13) |
K2—K2i | 3.7774 (1) | C1—C2 | 1.473 (3) |
K2—O4v | 2.7888 (14) | C2—C3 | 1.414 (3) |
K2—O6 | 2.7593 (14) | C2—C7 | 1.407 (3) |
K2—O6i | 2.7828 (14) | C3—C4 | 1.380 (3) |
K2—O10vi | 2.7927 (15) | C4—H4A | 0.9500 |
K2—O10vii | 2.7949 (14) | C4—C5 | 1.397 (3) |
K2—O12ii | 2.7278 (15) | C5—C6 | 1.392 (3) |
K2—O12 | 2.7125 (15) | C6—H6 | 0.9500 |
K2—H4v | 2.96 (3) | C6—C7 | 1.388 (3) |
K2—H12A | 2.83 (3) | C8—C9 | 1.476 (3) |
O1—C1 | 1.273 (2) | C9—C10 | 1.407 (3) |
O2—C1 | 1.275 (2) | C9—C14 | 1.413 (3) |
O3—C7 | 1.361 (2) | C10—C11 | 1.389 (3) |
O3—H3 | 0.855 (13) | C11—H11 | 0.9500 |
O4—C5 | 1.360 (2) | C11—C12 | 1.395 (3) |
O4—H4 | 0.854 (13) | C12—C13 | 1.399 (3) |
O5—C3 | 1.361 (2) | C13—H13 | 0.9500 |
O5—H5 | 0.845 (13) | C13—C14 | 1.377 (3) |
K1ii—K1—K1i | 180.0 | O12ii—K2—O6 | 85.31 (4) |
K1ii—K1—H8iv | 53.7 (5) | O12ii—K2—O6i | 149.79 (5) |
K1i—K1—H8iv | 126.3 (5) | O12—K2—O10vii | 80.33 (4) |
K1ii—K1—H11A | 125.6 (5) | O12ii—K2—O10vi | 80.10 (4) |
K1i—K1—H11A | 54.4 (5) | O12—K2—O10vi | 140.19 (5) |
O1—K1—K1ii | 133.04 (3) | O12ii—K2—O10vii | 140.31 (4) |
O1ii—K1—K1i | 135.70 (3) | O12—K2—O12ii | 87.95 (4) |
O1ii—K1—K1ii | 44.30 (3) | O12—K2—H4v | 71.0 (5) |
O1—K1—K1i | 46.96 (3) | O12ii—K2—H4v | 92.3 (4) |
O1—K1—O1ii | 88.74 (4) | O12—K2—H12A | 17.5 (3) |
O1—K1—O8iv | 137.42 (5) | O12ii—K2—H12A | 82.4 (5) |
O1ii—K1—O8iii | 139.62 (4) | H12A—K2—H4v | 55.0 (5) |
O1—K1—O8iii | 79.01 (4) | K1—O1—K1i | 88.74 (4) |
O1—K1—O9 | 69.61 (4) | C1—O1—K1i | 118.42 (12) |
O1ii—K1—O9 | 86.12 (4) | C1—O1—K1 | 135.73 (12) |
O1—K1—O11 | 82.58 (4) | C7—O3—H3 | 104.1 (19) |
O1—K1—O11ii | 145.05 (5) | K2viii—O4—H4 | 92.8 (19) |
O1—K1—H8iv | 150.0 (4) | C5—O4—K2viii | 139.45 (11) |
O1ii—K1—H8iv | 91.0 (4) | C5—O4—H4 | 111.2 (19) |
O1—K1—H11A | 79.5 (6) | C3—O5—H5 | 104.2 (19) |
O1ii—K1—H11A | 128.6 (3) | K2—O6—K2ii | 85.93 (4) |
O8iv—K1—K1ii | 49.82 (3) | C8—O6—K2 | 137.18 (12) |
O8iv—K1—K1i | 130.18 (3) | C8—O6—K2ii | 119.08 (11) |
O8iii—K1—K1ii | 133.64 (3) | K1ix—O8—K1x | 83.82 (4) |
O8iii—K1—K1i | 46.36 (3) | K1x—O8—H8 | 99.0 (18) |
O8iv—K1—O1ii | 79.69 (4) | K1ix—O8—H8 | 102.2 (18) |
O8iv—K1—O8iii | 83.82 (4) | C10—O8—K1x | 149.82 (12) |
O8iii—K1—O9 | 123.62 (4) | C10—O8—K1ix | 112.96 (11) |
O8iv—K1—O9 | 148.31 (4) | C10—O8—H8 | 101.4 (19) |
O8iv—K1—H8iv | 15.9 (3) | K1—O9—H9 | 92.0 (19) |
O8iii—K1—H8iv | 81.9 (5) | C12—O9—K1 | 151.10 (12) |
O8iii—K1—H11A | 87.1 (3) | C12—O9—H9 | 110.8 (19) |
O8iv—K1—H11A | 138.3 (5) | K2vi—O10—K2vii | 85.06 (4) |
O9—K1—K1i | 78.82 (3) | K2vi—O10—H10 | 102.1 (18) |
O9—K1—K1ii | 101.18 (3) | K2vii—O10—H10 | 125.4 (18) |
O9—K1—H8iv | 140.3 (5) | C14—O10—K2vii | 125.45 (11) |
O9—K1—H11A | 42.8 (3) | C14—O10—K2vi | 110.40 (11) |
O11ii—K1—K1ii | 46.19 (3) | C14—O10—H10 | 102.8 (19) |
O11ii—K1—K1i | 133.81 (3) | K1i—O11—K1 | 87.88 (4) |
O11—K1—K1ii | 134.07 (3) | K1i—O11—H11A | 112.1 (19) |
O11—K1—K1i | 45.93 (3) | K1—O11—H11A | 87 (2) |
O11ii—K1—O1ii | 80.58 (4) | K1—O11—H11B | 153.1 (19) |
O11—K1—O1ii | 145.91 (4) | K1i—O11—H11B | 110.4 (18) |
O11ii—K1—O8iv | 73.32 (4) | H11A—O11—H11B | 103 (3) |
O11—K1—O8iii | 70.76 (4) | K2—O12—K2i | 87.95 (4) |
O11ii—K1—O8iii | 128.97 (4) | K2—O12—H12A | 88.8 (18) |
O11—K1—O8iv | 127.42 (5) | K2i—O12—H12A | 109.0 (19) |
O11—K1—O9 | 59.93 (4) | K2i—O12—H12B | 111.1 (19) |
O11ii—K1—O9 | 76.49 (4) | K2—O12—H12B | 153.7 (19) |
O11ii—K1—O11 | 87.88 (4) | H12A—O12—H12B | 101 (2) |
O11—K1—H8iv | 112.5 (3) | O1—C1—O2 | 121.85 (17) |
O11ii—K1—H8iv | 64.0 (5) | O1—C1—C2 | 119.15 (17) |
O11ii—K1—H11A | 81.5 (5) | O2—C1—C2 | 119.00 (17) |
O11—K1—H11A | 17.3 (3) | C3—C2—C1 | 120.75 (17) |
H11A—K1—H8iv | 122.4 (6) | C7—C2—C1 | 121.75 (17) |
K2i—K2—K2ii | 180.0 | C7—C2—C3 | 117.50 (17) |
K2ii—K2—H4v | 105.2 (5) | O5—C3—C2 | 119.93 (17) |
K2i—K2—H4v | 74.8 (5) | O5—C3—C4 | 118.31 (17) |
K2ii—K2—H12A | 126.1 (5) | C4—C3—C2 | 121.76 (17) |
K2i—K2—H12A | 53.9 (5) | C3—C4—H4A | 120.7 |
O4v—K2—K2i | 78.81 (3) | C3—C4—C5 | 118.66 (18) |
O4v—K2—K2ii | 101.19 (3) | C5—C4—H4A | 120.7 |
O4v—K2—O10vii | 125.99 (4) | O4—C5—C4 | 120.95 (17) |
O4v—K2—O10vi | 148.28 (4) | O4—C5—C6 | 117.38 (17) |
O4v—K2—H4v | 16.8 (3) | C6—C5—C4 | 121.67 (18) |
O4v—K2—H12A | 44.4 (3) | C5—C6—H6 | 120.7 |
O6—K2—K2i | 132.71 (3) | C7—C6—C5 | 118.67 (18) |
O6i—K2—K2i | 46.77 (3) | C7—C6—H6 | 120.7 |
O6i—K2—K2ii | 133.23 (3) | O3—C7—C2 | 120.23 (17) |
O6—K2—K2ii | 47.29 (3) | O3—C7—C6 | 118.06 (17) |
O6i—K2—O4v | 72.48 (4) | C6—C7—C2 | 121.71 (17) |
O6—K2—O4v | 87.82 (4) | O6—C8—O7 | 122.44 (17) |
O6—K2—O6i | 85.93 (4) | O6—C8—C9 | 119.36 (16) |
O6i—K2—O10vi | 122.42 (4) | O7—C8—C9 | 118.20 (17) |
O6i—K2—O10vii | 67.05 (4) | C10—C9—C8 | 121.56 (17) |
O6—K2—O10vii | 122.18 (4) | C10—C9—C14 | 117.44 (17) |
O6—K2—O10vi | 67.40 (4) | C14—C9—C8 | 121.00 (17) |
O6i—K2—H4v | 57.6 (4) | O8—C10—K1ix | 46.11 (8) |
O6—K2—H4v | 79.6 (5) | O8—C10—C9 | 119.96 (17) |
O6i—K2—H12A | 82.3 (6) | O8—C10—C11 | 118.56 (17) |
O6—K2—H12A | 132.1 (3) | C9—C10—K1ix | 126.36 (12) |
O10vi—K2—K2ii | 47.49 (3) | C11—C10—K1ix | 93.95 (11) |
O10vii—K2—K2ii | 132.56 (3) | C11—C10—C9 | 121.47 (17) |
O10vi—K2—K2i | 132.51 (3) | C10—C11—H11 | 120.5 |
O10vii—K2—K2i | 47.44 (3) | C10—C11—C12 | 118.92 (17) |
O10vi—K2—O10vii | 85.07 (4) | C12—C11—H11 | 120.5 |
O10vi—K2—H4v | 146.6 (5) | O9—C12—C11 | 117.83 (17) |
O10vii—K2—H4v | 118.6 (5) | O9—C12—C13 | 120.78 (17) |
O10vi—K2—H12A | 152.4 (5) | C11—C12—C13 | 121.39 (17) |
O10vii—K2—H12A | 95.1 (4) | C12—C13—H13 | 120.7 |
O12—K2—K2i | 46.19 (3) | C14—C13—C12 | 118.59 (17) |
O12ii—K2—K2ii | 45.86 (3) | C14—C13—H13 | 120.7 |
O12—K2—K2ii | 133.81 (3) | O10—C14—K2vi | 48.19 (8) |
O12ii—K2—K2i | 134.14 (3) | O10—C14—C9 | 119.39 (17) |
O12—K2—O4v | 61.75 (4) | O10—C14—C13 | 118.46 (16) |
O12ii—K2—O4v | 78.35 (4) | C9—C14—K2vi | 120.95 (12) |
O12—K2—O6i | 85.14 (4) | C13—C14—K2vi | 97.01 (12) |
O12—K2—O6 | 149.57 (5) | C13—C14—C9 | 122.15 (17) |
K1—O1—C1—O2 | −33.0 (3) | O9—C12—C13—C14 | 177.08 (17) |
K1i—O1—C1—O2 | 88.29 (19) | C1—C2—C3—O5 | −0.6 (3) |
K1—O1—C1—C2 | 147.74 (13) | C1—C2—C3—C4 | 179.43 (17) |
K1i—O1—C1—C2 | −90.97 (18) | C1—C2—C7—O3 | 0.8 (3) |
K1x—O8—C10—K1ix | 119.7 (2) | C1—C2—C7—C6 | −179.06 (17) |
K1x—O8—C10—C9 | −127.0 (2) | C2—C3—C4—C5 | 0.1 (3) |
K1ix—O8—C10—C9 | 113.27 (16) | C3—C2—C7—O3 | −178.27 (16) |
K1ix—O8—C10—C11 | −65.49 (19) | C3—C2—C7—C6 | 1.9 (3) |
K1x—O8—C10—C11 | 54.2 (3) | C3—C4—C5—O4 | −179.19 (17) |
K1—O9—C12—C11 | −41.3 (3) | C3—C4—C5—C6 | 1.0 (3) |
K1—O9—C12—C13 | 139.20 (19) | C4—C5—C6—C7 | −0.6 (3) |
K1ix—C10—C11—C12 | 138.50 (16) | C5—C6—C7—O3 | 179.29 (16) |
K2viii—O4—C5—C4 | −114.19 (19) | C5—C6—C7—C2 | −0.8 (3) |
K2viii—O4—C5—C6 | 65.6 (2) | C7—C2—C3—O5 | 178.48 (16) |
K2ii—O6—C8—O7 | 42.5 (2) | C7—C2—C3—C4 | −1.5 (3) |
K2—O6—C8—O7 | −76.2 (2) | C8—C9—C10—K1ix | 55.4 (2) |
K2—O6—C8—C9 | 104.69 (19) | C8—C9—C10—O8 | 0.1 (3) |
K2ii—O6—C8—C9 | −136.57 (13) | C8—C9—C10—C11 | 178.79 (17) |
K2vii—O10—C14—K2vi | 98.75 (12) | C8—C9—C14—K2vi | 56.6 (2) |
K2vii—O10—C14—C9 | −154.50 (13) | C8—C9—C14—O10 | 0.3 (3) |
K2vi—O10—C14—C9 | 106.75 (16) | C8—C9—C14—C13 | 179.65 (17) |
K2vii—O10—C14—C13 | 26.1 (2) | C9—C10—C11—C12 | 0.9 (3) |
K2vi—O10—C14—C13 | −72.63 (18) | C10—C9—C14—K2vi | −123.49 (15) |
O1—C1—C2—C3 | −4.9 (3) | C10—C9—C14—O10 | −179.82 (16) |
O1—C1—C2—C7 | 176.09 (17) | C10—C9—C14—C13 | −0.5 (3) |
O2—C1—C2—C3 | 175.85 (17) | C10—C11—C12—O9 | −178.59 (16) |
O2—C1—C2—C7 | −3.2 (3) | C10—C11—C12—C13 | 0.9 (3) |
O4—C5—C6—C7 | 179.54 (16) | C11—C12—C13—C14 | −2.4 (3) |
O5—C3—C4—C5 | −179.86 (17) | C12—C13—C14—K2vi | 135.76 (15) |
O6—C8—C9—C10 | −179.83 (17) | C12—C13—C14—O10 | −178.45 (16) |
O6—C8—C9—C14 | 0.0 (3) | C12—C13—C14—C9 | 2.2 (3) |
O7—C8—C9—C10 | 1.0 (3) | C14—C9—C10—K1ix | −124.51 (15) |
O7—C8—C9—C14 | −179.09 (17) | C14—C9—C10—O8 | −179.80 (16) |
O8—C10—C11—C12 | 179.59 (16) | C14—C9—C10—C11 | −1.1 (3) |
Symmetry codes: (i) x−1, y, z; (ii) x+1, y, z; (iii) x−1, −y+1/2, z−1/2; (iv) x, −y+1/2, z−1/2; (v) x+1, y, z+1; (vi) −x+2, −y+1, −z+1; (vii) −x+1, −y+1, −z+1; (viii) x−1, y, z−1; (ix) x, −y+1/2, z+1/2; (x) x+1, −y+1/2, z+1/2. |
[Rb2(C7H5O5)2(H2O)] | F(000) = 2064 |
Mr = 527.18 | Dx = 2.045 Mg m−3 |
Monoclinic, C2/c | Mo Kα radiation, λ = 0.71073 Å |
a = 22.2677 (11) Å | Cell parameters from 3204 reflections |
b = 6.9047 (3) Å | θ = 3.1–30.4° |
c = 22.2964 (8) Å | µ = 5.78 mm−1 |
β = 92.908 (4)° | T = 100 K |
V = 3423.7 (3) Å3 | Block, clear colourless |
Z = 8 | 0.36 × 0.1 × 0.05 mm |
XtaLAB Synergy, Dualflex, HyPix diffractometer | 3013 measured reflections |
Radiation source: micro-focus sealed X-ray tube, PhotonJet (Mo) X-ray Source | 3013 independent reflections |
Mirror monochromator | 2238 reflections with I > 2σ(I) |
Detector resolution: 10.0000 pixels mm-1 | θmax = 25.4°, θmin = 2.5° |
ω scans | h = −26→26 |
Absorption correction: multi-scan (CrysAlis PRO; Rigaku OD, 2021) | k = −8→8 |
Tmin = 0.296, Tmax = 1.000 | l = −26→26 |
Refinement on F2 | Primary atom site location: dual |
Least-squares matrix: full | Hydrogen site location: mixed |
R[F2 > 2σ(F2)] = 0.034 | H atoms treated by a mixture of independent and constrained refinement |
wR(F2) = 0.096 | w = 1/[σ2(Fo2) + (0.0514P)2 + 0.1149P] where P = (Fo2 + 2Fc2)/3 |
S = 1.06 | (Δ/σ)max = 0.002 |
3013 reflections | Δρmax = 0.84 e Å−3 |
258 parameters | Δρmin = −0.71 e Å−3 |
15 restraints |
Geometry. All esds (except the esd in the dihedral angle between two l.s. planes) are estimated using the full covariance matrix. The cell esds are taken into account individually in the estimation of esds in distances, angles and torsion angles; correlations between esds in cell parameters are only used when they are defined by crystal symmetry. An approximate (isotropic) treatment of cell esds is used for estimating esds involving l.s. planes. |
Refinement. Twinned crystal; refined in HKLF5 format (BASF 0.56). O-H distances fixed at 0.85 and Uiso(H) = 1.5Ueq(O). |
x | y | z | Uiso*/Ueq | ||
Rb1 | 1.000000 | 0.49045 (13) | −0.250000 | 0.01886 (17) | |
Rb2 | 1.000000 | −0.00994 (13) | −0.250000 | 0.01900 (17) | |
Rb3 | 1.19756 (3) | −0.00302 (8) | −0.44565 (3) | 0.02145 (15) | |
O1 | 0.8899 (3) | 0.2405 (5) | −0.2359 (3) | 0.0232 (15) | |
O2 | 0.8598 (3) | 0.2218 (6) | −0.3322 (3) | 0.0221 (12) | |
O3 | 0.7516 (2) | 0.2153 (6) | −0.3648 (2) | 0.0196 (11) | |
O4 | 0.6039 (3) | 0.2363 (5) | −0.2203 (3) | 0.0201 (14) | |
O5 | 0.8112 (3) | 0.2483 (5) | −0.1556 (3) | 0.0238 (14) | |
O6 | 1.0826 (3) | 0.2652 (5) | −0.6085 (3) | 0.0254 (13) | |
O7 | 0.9856 (3) | 0.2569 (4) | −0.6399 (3) | 0.0199 (14) | |
O8 | 0.9063 (3) | 0.2463 (5) | −0.5624 (3) | 0.0213 (14) | |
H8 | 0.9255 (15) | 0.256 (7) | −0.5955 (8) | 0.032* | |
O9 | 0.9714 (3) | 0.2438 (5) | −0.3556 (3) | 0.0204 (14) | |
O10 | 1.1149 (3) | 0.2711 (5) | −0.5011 (3) | 0.0237 (12) | |
O11 | 1.2849 (2) | 0.0033 (8) | −0.53252 (18) | 0.0323 (8) | |
C1 | 0.8483 (4) | 0.2314 (7) | −0.2786 (4) | 0.0169 (18) | |
C7 | 0.7690 (2) | 0.2413 (4) | −0.2007 (2) | 0.019 (2) | |
C2 | 0.78396 (15) | 0.2323 (5) | −0.2604 (2) | 0.0183 (17) | |
C3 | 0.7389 (2) | 0.2238 (5) | −0.30573 (17) | 0.0129 (15) | |
C4 | 0.67884 (18) | 0.2243 (5) | −0.2914 (2) | 0.0189 (16) | |
H4A | 0.648009 | 0.218486 | −0.322376 | 0.023* | |
C5 | 0.66392 (16) | 0.2333 (5) | −0.2317 (2) | 0.0145 (18) | |
C6 | 0.7090 (2) | 0.2418 (4) | −0.18629 (17) | 0.020 (2) | |
H6 | 0.698837 | 0.247943 | −0.145474 | 0.024* | |
C8 | 1.0245 (4) | 0.2589 (6) | −0.5982 (5) | 0.021 (2) | |
C9 | 1.0115 (3) | 0.2571 (6) | −0.5356 (3) | 0.0132 (15) | |
C10 | 0.9515 (3) | 0.2492 (6) | −0.5172 (3) | 0.017 (2) | |
C11 | 0.9364 (2) | 0.2452 (6) | −0.4587 (3) | 0.0143 (18) | |
H11 | 0.895455 | 0.240121 | −0.448580 | 0.017* | |
C12 | 0.9830 (3) | 0.2489 (5) | −0.4139 (3) | 0.017 (2) | |
C13 | 1.0432 (3) | 0.2573 (6) | −0.4281 (3) | 0.0180 (16) | |
H13 | 1.074439 | 0.259852 | −0.397421 | 0.022* | |
H9 | 0.9354 (12) | 0.230 (7) | −0.348 (3) | 0.027* | |
H10 | 1.1132 (14) | 0.265 (7) | −0.5398 (9) | 0.027* | |
H3 | 0.7886 (10) | 0.192 (7) | −0.3663 (14) | 0.027* | |
H4 | 0.6014 (15) | 0.246 (7) | −0.1829 (11) | 0.027* | |
H5 | 0.8460 (7) | 0.255 (7) | −0.1719 (15) | 0.027* | |
C14 | 1.0557 (3) | 0.2619 (6) | −0.4863 (4) | 0.0210 (19) | |
H11A | 1.2897 (19) | −0.027 (6) | −0.5690 (11) | 0.032* | |
H11B | 1.3200 (12) | 0.024 (7) | −0.521 (2) | 0.032* |
U11 | U22 | U33 | U12 | U13 | U23 | |
Rb1 | 0.0141 (6) | 0.0210 (3) | 0.0213 (6) | 0.000 | −0.0013 (2) | 0.000 |
Rb2 | 0.0149 (6) | 0.0207 (3) | 0.0212 (6) | 0.000 | −0.0016 (2) | 0.000 |
Rb3 | 0.0181 (3) | 0.0257 (2) | 0.0206 (4) | 0.0014 (2) | 0.00238 (16) | 0.0011 (2) |
O1 | 0.010 (3) | 0.029 (2) | 0.030 (4) | 0.0000 (14) | −0.004 (3) | 0.0027 (14) |
O2 | 0.011 (3) | 0.040 (2) | 0.015 (3) | −0.0003 (18) | 0.002 (2) | −0.0001 (19) |
O3 | 0.009 (3) | 0.0337 (19) | 0.016 (3) | 0.0020 (18) | −0.0011 (19) | −0.0020 (18) |
O4 | 0.007 (3) | 0.030 (2) | 0.023 (4) | −0.0018 (14) | 0.000 (3) | 0.0000 (15) |
O5 | 0.015 (4) | 0.038 (3) | 0.018 (4) | −0.0001 (16) | 0.001 (3) | 0.0026 (14) |
O6 | 0.018 (3) | 0.034 (2) | 0.025 (4) | −0.0011 (17) | 0.004 (2) | −0.0009 (15) |
O7 | 0.012 (3) | 0.028 (2) | 0.019 (4) | −0.0005 (14) | −0.002 (3) | 0.0004 (13) |
O8 | 0.012 (3) | 0.037 (3) | 0.015 (4) | −0.0041 (14) | −0.004 (3) | 0.0010 (14) |
O9 | 0.010 (3) | 0.033 (3) | 0.019 (4) | 0.0019 (15) | 0.000 (3) | −0.0016 (13) |
O10 | 0.011 (3) | 0.037 (2) | 0.023 (3) | −0.0002 (17) | 0.003 (2) | 0.0000 (18) |
O11 | 0.034 (3) | 0.053 (2) | 0.010 (3) | −0.008 (2) | 0.0032 (14) | −0.016 (2) |
C1 | 0.005 (4) | 0.017 (3) | 0.028 (5) | 0.004 (2) | −0.003 (3) | −0.006 (2) |
C7 | 0.013 (5) | 0.019 (3) | 0.023 (6) | 0.0006 (19) | −0.003 (4) | −0.0010 (18) |
C2 | 0.015 (4) | 0.017 (3) | 0.024 (5) | −0.0018 (19) | 0.009 (3) | 0.0011 (19) |
C3 | 0.015 (4) | 0.015 (2) | 0.009 (4) | 0.005 (2) | 0.002 (3) | 0.0002 (18) |
C4 | 0.018 (4) | 0.019 (2) | 0.019 (4) | 0.000 (2) | −0.003 (3) | 0.004 (2) |
C5 | 0.012 (4) | 0.017 (3) | 0.014 (5) | 0.0005 (19) | −0.002 (4) | 0.0024 (18) |
C6 | 0.018 (5) | 0.014 (3) | 0.028 (6) | 0.0002 (19) | 0.004 (4) | 0.0013 (18) |
C8 | 0.019 (4) | 0.011 (3) | 0.036 (6) | 0.0033 (19) | 0.011 (4) | 0.0013 (19) |
C9 | 0.010 (4) | 0.018 (3) | 0.011 (4) | −0.0017 (17) | 0.000 (3) | 0.0015 (16) |
C10 | 0.010 (5) | 0.017 (3) | 0.024 (6) | 0.0001 (18) | −0.005 (4) | −0.0011 (17) |
C11 | 0.004 (4) | 0.026 (3) | 0.013 (5) | 0.0019 (18) | −0.002 (3) | −0.0001 (17) |
C12 | 0.023 (5) | 0.009 (3) | 0.021 (5) | 0.0004 (18) | 0.005 (4) | −0.0011 (16) |
C13 | 0.014 (4) | 0.027 (3) | 0.012 (4) | 0.000 (2) | −0.006 (3) | −0.0007 (18) |
C14 | 0.015 (4) | 0.016 (3) | 0.031 (5) | 0.0006 (19) | −0.003 (4) | −0.004 (2) |
Rb1—Rb2i | 3.4497 (15) | O3—C3 | 1.362 (7) |
Rb1—O1 | 3.027 (5) | O3—H3 | 0.842 (19) |
Rb1—O1ii | 3.027 (5) | O4—C5 | 1.373 (7) |
Rb1—O4iii | 2.919 (5) | O4—H4 | 0.842 (19) |
Rb1—O4iv | 2.919 (5) | O5—C7 | 1.341 (7) |
Rb1—O7v | 3.043 (6) | O5—H5 | 0.873 (19) |
Rb1—O7vi | 3.043 (6) | O6—C8 | 1.327 (11) |
Rb1—O9ii | 2.949 (6) | O7—C8 | 1.239 (11) |
Rb1—O9 | 2.949 (6) | O8—H8 | 0.874 (19) |
Rb1—H9 | 3.13 (6) | O8—C10 | 1.389 (8) |
Rb2—O1 | 3.030 (6) | O9—C12 | 1.339 (9) |
Rb2—O1ii | 3.030 (6) | O9—H9 | 0.83 (2) |
Rb2—O4vii | 2.951 (5) | O10—H10 | 0.864 (19) |
Rb2—O4viii | 2.951 (5) | O10—C14 | 1.376 (9) |
Rb2—O7ix | 3.021 (6) | O11—H11A | 0.851 (19) |
Rb2—O7x | 3.021 (6) | O11—H11B | 0.822 (19) |
Rb2—O9 | 2.978 (6) | C1—C2 | 1.508 (9) |
Rb2—O9ii | 2.978 (6) | C7—C2 | 1.3900 |
Rb2—H9 | 3.05 (6) | C7—C6 | 1.3900 |
Rb2—H4vii | 3.13 (4) | C2—C3 | 1.3900 |
Rb3—Rb3xi | 4.8513 (10) | C3—C4 | 1.3900 |
Rb3—Rb3xii | 4.9102 (10) | C4—H4A | 0.9500 |
Rb3—O3vii | 2.874 (5) | C4—C5 | 1.3900 |
Rb3—O5ii | 2.861 (6) | C5—C6 | 1.3900 |
Rb3—O8x | 2.871 (5) | C6—H6 | 0.9500 |
Rb3—O10 | 2.874 (5) | C8—C9 | 1.440 (11) |
Rb3—O11 | 2.814 (4) | C9—C10 | 1.418 (7) |
Rb3—O11xii | 3.509 (6) | C9—C14 | 1.437 (8) |
Rb3—O11xi | 3.513 (5) | C10—C11 | 1.364 (8) |
Rb3—C7ii | 3.714 (4) | C11—H11 | 0.9500 |
Rb3—C3vii | 3.72 (3) | C11—C12 | 1.404 (7) |
Rb3—H11B | 3.28 (4) | C12—C13 | 1.394 (7) |
O1—C1 | 1.297 (10) | C13—H13 | 0.9500 |
O2—C1 | 1.237 (11) | C13—C14 | 1.343 (8) |
Rb2i—Rb1—H9 | 125.1 (10) | O10—Rb3—O11xii | 50.67 (13) |
O1—Rb1—Rb2i | 124.75 (9) | O10—Rb3—O11xi | 131.38 (12) |
O1ii—Rb1—Rb2i | 124.75 (9) | O10—Rb3—C7ii | 100.01 (12) |
O1—Rb1—O1ii | 110.50 (17) | O10—Rb3—C3vii | 145.1 (2) |
O1—Rb1—O7vi | 97.10 (8) | O10—Rb3—H11B | 105.9 (8) |
O1ii—Rb1—O7v | 97.10 (8) | O11xi—Rb3—Rb3xi | 34.89 (6) |
O1ii—Rb1—O7vi | 122.00 (7) | O11xii—Rb3—Rb3xii | 34.19 (6) |
O1—Rb1—O7v | 122.00 (7) | O11xi—Rb3—Rb3xii | 124.91 (6) |
O1ii—Rb1—H9 | 86.9 (7) | O11xii—Rb3—Rb3xi | 124.21 (6) |
O1—Rb1—H9 | 53.0 (7) | O11—Rb3—Rb3xii | 44.48 (11) |
O4iii—Rb1—Rb2i | 54.44 (9) | O11—Rb3—Rb3xi | 45.57 (11) |
O4iv—Rb1—Rb2i | 54.44 (9) | O11—Rb3—O3vii | 99.22 (17) |
O4iv—Rb1—O1ii | 160.9 (2) | O11—Rb3—O5ii | 127.64 (17) |
O4iv—Rb1—O1 | 73.63 (13) | O11—Rb3—O8x | 129.74 (17) |
O4iii—Rb1—O1ii | 73.63 (13) | O11—Rb3—O10 | 98.25 (18) |
O4iii—Rb1—O1 | 160.9 (2) | O11—Rb3—O11xii | 78.67 (14) |
O4iii—Rb1—O4iv | 108.88 (17) | O11—Rb3—O11xi | 80.47 (14) |
O4iv—Rb1—O7v | 66.33 (19) | O11xii—Rb3—O11xi | 159.02 (11) |
O4iv—Rb1—O7vi | 74.62 (17) | O11—Rb3—C7ii | 118.87 (14) |
O4iii—Rb1—O7vi | 66.33 (19) | O11xi—Rb3—C7ii | 123.34 (9) |
O4iii—Rb1—O7v | 74.62 (17) | O11xii—Rb3—C7ii | 69.91 (9) |
O4iv—Rb1—O9ii | 130.81 (7) | O11xii—Rb3—C3vii | 126.2 (4) |
O4iv—Rb1—O9 | 91.04 (8) | O11—Rb3—C3vii | 115.78 (19) |
O4iii—Rb1—O9 | 130.80 (7) | O11xi—Rb3—C3vii | 66.0 (4) |
O4iii—Rb1—O9ii | 91.04 (8) | O11xii—Rb3—H11B | 76.9 (9) |
O4iv—Rb1—H9 | 81.1 (8) | O11—Rb3—H11B | 12.8 (6) |
O4iii—Rb1—H9 | 145.6 (7) | O11xi—Rb3—H11B | 83.3 (8) |
O7v—Rb1—Rb2i | 55.02 (9) | C7ii—Rb3—Rb3xii | 91.79 (7) |
O7vi—Rb1—Rb2i | 55.02 (9) | C7ii—Rb3—Rb3xi | 132.70 (6) |
O7vi—Rb1—O7v | 110.05 (17) | C7ii—Rb3—C3vii | 57.6 (4) |
O7v—Rb1—H9 | 80.1 (10) | C7ii—Rb3—H11B | 106.8 (6) |
O7vi—Rb1—H9 | 146.2 (5) | C3vii—Rb3—Rb3xi | 87.6 (3) |
O9ii—Rb1—Rb2i | 125.27 (9) | C3vii—Rb3—Rb3xii | 132.1 (3) |
O9—Rb1—Rb2i | 125.27 (9) | C3vii—Rb3—H11B | 106.3 (8) |
O9—Rb1—O1 | 67.1 (2) | Rb1—O1—Rb2 | 69.56 (14) |
O9—Rb1—O1ii | 74.40 (18) | C1—O1—Rb1 | 120.3 (5) |
O9ii—Rb1—O1ii | 67.1 (2) | C1—O1—Rb2 | 116.6 (5) |
O9ii—Rb1—O1 | 74.40 (18) | Rb3xiii—O3—H3 | 119 (3) |
O9—Rb1—O7vi | 161.46 (19) | C3—O3—Rb3xiii | 118.4 (3) |
O9ii—Rb1—O7v | 161.46 (19) | C3—O3—H3 | 107 (2) |
O9ii—Rb1—O7vi | 73.38 (13) | Rb1xiv—O4—Rb2xiii | 71.99 (13) |
O9—Rb1—O7v | 73.38 (13) | Rb1xiv—O4—H4 | 100 (3) |
O9—Rb1—O9ii | 109.46 (18) | Rb2xiii—O4—H4 | 95 (3) |
O9—Rb1—H9 | 15.4 (5) | C5—O4—Rb1xiv | 135.8 (3) |
O9ii—Rb1—H9 | 107.4 (10) | C5—O4—Rb2xiii | 136.6 (3) |
O1ii—Rb2—O1 | 110.38 (17) | C5—O4—H4 | 107 (2) |
O1—Rb2—H9 | 53.8 (8) | Rb3ii—O5—H5 | 117 (3) |
O1ii—Rb2—H9 | 88.3 (6) | C7—O5—Rb3ii | 119.7 (4) |
O1—Rb2—H4vii | 145.5 (4) | C7—O5—H5 | 107 (2) |
O1ii—Rb2—H4vii | 77.8 (7) | Rb2x—O7—Rb1v | 69.35 (15) |
O4vii—Rb2—O1 | 160.9 (2) | C8—O7—Rb1v | 120.0 (5) |
O4viii—Rb2—O1 | 74.50 (13) | C8—O7—Rb2x | 121.1 (5) |
O4vii—Rb2—O1ii | 74.50 (13) | Rb3x—O8—H8 | 122 (3) |
O4viii—Rb2—O1ii | 160.9 (2) | C10—O8—Rb3x | 121.3 (4) |
O4viii—Rb2—O4vii | 107.14 (17) | C10—O8—H8 | 104 (2) |
O4vii—Rb2—O7x | 74.49 (17) | Rb1—O9—Rb2 | 71.32 (15) |
O4vii—Rb2—O7ix | 66.22 (19) | Rb1—O9—H9 | 95 (4) |
O4viii—Rb2—O7x | 66.22 (19) | Rb2—O9—H9 | 87 (4) |
O4viii—Rb2—O7ix | 74.49 (17) | C12—O9—Rb1 | 135.7 (3) |
O4viii—Rb2—O9 | 92.20 (8) | C12—O9—Rb2 | 137.7 (3) |
O4viii—Rb2—O9ii | 131.35 (8) | C12—O9—H9 | 116 (5) |
O4vii—Rb2—O9 | 131.35 (8) | Rb3—O10—H10 | 113 (3) |
O4vii—Rb2—O9ii | 92.20 (8) | C14—O10—Rb3 | 117.8 (4) |
O4vii—Rb2—H9 | 145.1 (8) | C14—O10—H10 | 104 (2) |
O4viii—Rb2—H9 | 79.9 (7) | Rb3xii—O11—Rb3xi | 159.02 (11) |
O4viii—Rb2—H4vii | 109.0 (8) | Rb3—O11—Rb3xii | 101.32 (13) |
O4vii—Rb2—H4vii | 15.5 (3) | Rb3—O11—Rb3xi | 99.53 (14) |
O7ix—Rb2—O1ii | 121.79 (7) | Rb3—O11—H11A | 141 (2) |
O7x—Rb2—O1ii | 96.77 (7) | Rb3xii—O11—H11A | 95 (3) |
O7x—Rb2—O1 | 121.79 (7) | Rb3xi—O11—H11A | 67 (3) |
O7ix—Rb2—O1 | 96.77 (7) | Rb3—O11—H11B | 118 (4) |
O7x—Rb2—O7ix | 111.25 (17) | Rb3xii—O11—H11B | 76 (4) |
O7x—Rb2—H9 | 77.8 (10) | Rb3xi—O11—H11B | 96 (4) |
O7ix—Rb2—H9 | 145.6 (5) | H11A—O11—H11B | 100 (4) |
O7ix—Rb2—H4vii | 54.0 (5) | O1—C1—C2 | 117.0 (8) |
O7x—Rb2—H4vii | 88.9 (5) | O2—C1—O1 | 122.5 (8) |
O9—Rb2—O1ii | 73.96 (18) | O2—C1—C2 | 120.5 (6) |
O9—Rb2—O1 | 66.7 (2) | O5—C7—Rb3ii | 42.0 (3) |
O9ii—Rb2—O1ii | 66.7 (2) | O5—C7—C2 | 121.8 (5) |
O9ii—Rb2—O1 | 73.96 (18) | O5—C7—C6 | 118.2 (5) |
O9ii—Rb2—O7ix | 73.54 (13) | C2—C7—Rb3ii | 140.73 (19) |
O9ii—Rb2—O7x | 161.41 (19) | C2—C7—C6 | 120.0 |
O9—Rb2—O7ix | 161.41 (19) | C6—C7—Rb3ii | 87.2 (2) |
O9—Rb2—O7x | 73.54 (13) | C7—C2—C1 | 122.3 (4) |
O9—Rb2—O9ii | 107.90 (18) | C3—C2—C1 | 117.7 (4) |
O9ii—Rb2—H9 | 108.8 (10) | C3—C2—C7 | 120.0 |
O9—Rb2—H9 | 15.8 (4) | O3—C3—Rb3xiii | 42.8 (2) |
O9ii—Rb2—H4vii | 79.5 (6) | O3—C3—C2 | 121.8 (4) |
O9—Rb2—H4vii | 144.4 (4) | O3—C3—C4 | 118.2 (4) |
H9—Rb2—H4vii | 159.6 (7) | C2—C3—Rb3xiii | 136.66 (18) |
Rb3xi—Rb3—Rb3xii | 90.036 (14) | C2—C3—C4 | 120.0 |
Rb3xi—Rb3—H11B | 49.4 (8) | C4—C3—Rb3xiii | 89.6 (2) |
Rb3xii—Rb3—H11B | 43.8 (9) | C3—C4—H4A | 120.0 |
O3vii—Rb3—Rb3xii | 126.63 (11) | C5—C4—C3 | 120.0 |
O3vii—Rb3—Rb3xi | 68.95 (11) | C5—C4—H4A | 120.0 |
O3vii—Rb3—O10 | 162.49 (8) | O4—C5—C4 | 117.4 (5) |
O3vii—Rb3—O11xi | 51.36 (12) | O4—C5—C6 | 122.6 (5) |
O3vii—Rb3—O11xii | 134.94 (12) | C4—C5—C6 | 120.0 |
O3vii—Rb3—C7ii | 72.40 (11) | C7—C6—H6 | 120.0 |
O3vii—Rb3—C3vii | 18.8 (3) | C5—C6—C7 | 120.0 |
O3vii—Rb3—H11B | 91.5 (8) | C5—C6—H6 | 120.0 |
O5ii—Rb3—Rb3xii | 90.62 (11) | O6—C8—C9 | 114.5 (8) |
O5ii—Rb3—Rb3xi | 150.96 (12) | O7—C8—O6 | 121.5 (9) |
O5ii—Rb3—O3vii | 87.64 (14) | O7—C8—C9 | 124.1 (8) |
O5ii—Rb3—O8x | 102.59 (8) | C10—C9—C8 | 121.2 (6) |
O5ii—Rb3—O10 | 82.64 (16) | C10—C9—C14 | 113.5 (5) |
O5ii—Rb3—O11xii | 61.68 (12) | C14—C9—C8 | 125.2 (6) |
O5ii—Rb3—O11xi | 135.90 (12) | O8—C10—C9 | 116.8 (7) |
O5ii—Rb3—C7ii | 18.27 (13) | C11—C10—O8 | 119.2 (6) |
O5ii—Rb3—C3vii | 70.7 (4) | C11—C10—C9 | 124.0 (5) |
O5ii—Rb3—H11B | 117.5 (7) | C10—C11—H11 | 121.0 |
O8x—Rb3—Rb3xi | 91.70 (11) | C10—C11—C12 | 118.0 (5) |
O8x—Rb3—Rb3xii | 148.43 (12) | C12—C11—H11 | 121.0 |
O8x—Rb3—O3vii | 82.97 (14) | O9—C12—C11 | 121.2 (6) |
O8x—Rb3—O10 | 84.97 (13) | O9—C12—C13 | 117.1 (6) |
O8x—Rb3—O11xi | 61.89 (12) | C13—C12—C11 | 121.7 (5) |
O8x—Rb3—O11xii | 132.81 (12) | C12—C13—H13 | 121.0 |
O8x—Rb3—C7ii | 109.67 (16) | C14—C13—C12 | 118.0 (5) |
O8x—Rb3—C3vii | 79.4 (3) | C14—C13—H13 | 121.0 |
O8x—Rb3—H11B | 139.3 (7) | O10—C14—C9 | 116.5 (7) |
O10—Rb3—Rb3xii | 68.24 (11) | C13—C14—O10 | 118.7 (7) |
O10—Rb3—Rb3xi | 124.19 (12) | C13—C14—C9 | 124.8 (5) |
Rb1—O1—C1—O2 | 41.1 (6) | O5—C7—C2—C3 | 179.5 (3) |
Rb1—O1—C1—C2 | −139.1 (4) | O5—C7—C6—C5 | −179.5 (3) |
Rb1xiv—O4—C5—C4 | 55.8 (6) | O6—C8—C9—C10 | −179.5 (4) |
Rb1xiv—O4—C5—C6 | −125.2 (5) | O6—C8—C9—C14 | 0.1 (6) |
Rb1v—O7—C8—O6 | −40.2 (6) | O7—C8—C9—C10 | 1.2 (7) |
Rb1v—O7—C8—C9 | 139.1 (4) | O7—C8—C9—C14 | −179.2 (4) |
Rb1—O9—C12—C11 | −123.4 (5) | O8—C10—C11—C12 | −179.8 (4) |
Rb1—O9—C12—C13 | 56.7 (6) | O9—C12—C13—C14 | 179.8 (4) |
Rb2—O1—C1—O2 | −39.7 (7) | C1—C2—C3—Rb3xiii | −53.2 (4) |
Rb2—O1—C1—C2 | 140.1 (4) | C1—C2—C3—O3 | −0.1 (4) |
Rb2xiii—O4—C5—C4 | −60.5 (5) | C1—C2—C3—C4 | 180.0 (4) |
Rb2xiii—O4—C5—C6 | 118.5 (5) | C7—C2—C3—Rb3xiii | 126.8 (2) |
Rb2x—O7—C8—O6 | 42.6 (6) | C7—C2—C3—O3 | 179.8 (3) |
Rb2x—O7—C8—C9 | −138.2 (4) | C7—C2—C3—C4 | 0.0 |
Rb2—O9—C12—C11 | 120.1 (6) | C2—C7—C6—C5 | 0.0 |
Rb2—O9—C12—C13 | −59.7 (7) | C2—C3—C4—C5 | 0.0 |
Rb3xiii—O3—C3—C2 | −126.2 (3) | C3—C4—C5—O4 | 179.0 (3) |
Rb3xiii—O3—C3—C4 | 53.7 (4) | C3—C4—C5—C6 | 0.0 |
Rb3ii—O5—C7—C2 | −132.2 (3) | C4—C5—C6—C7 | 0.0 |
Rb3ii—O5—C7—C6 | 47.3 (4) | C6—C7—C2—C1 | 180.0 (4) |
Rb3x—O8—C10—C9 | 139.5 (4) | C6—C7—C2—C3 | 0.0 |
Rb3x—O8—C10—C11 | −40.8 (5) | C8—C9—C10—O8 | −1.0 (6) |
Rb3—O10—C14—C9 | −129.5 (4) | C8—C9—C10—C11 | 179.3 (4) |
Rb3—O10—C14—C13 | 50.3 (5) | C8—C9—C14—O10 | 0.8 (6) |
Rb3ii—C7—C2—C1 | −52.0 (4) | C8—C9—C14—C13 | −179.0 (4) |
Rb3ii—C7—C2—C3 | 128.0 (3) | C9—C10—C11—C12 | −0.1 (6) |
Rb3ii—C7—C6—C5 | −150.06 (14) | C10—C9—C14—O10 | −179.5 (4) |
Rb3xiii—C3—C4—C5 | −146.66 (14) | C10—C9—C14—C13 | 0.7 (6) |
O1—C1—C2—C7 | −0.4 (6) | C10—C11—C12—O9 | −179.5 (4) |
O1—C1—C2—C3 | 179.6 (3) | C10—C11—C12—C13 | 0.3 (6) |
O2—C1—C2—C7 | 179.4 (4) | C11—C12—C13—C14 | 0.0 (6) |
O2—C1—C2—C3 | −0.6 (6) | C12—C13—C14—O10 | 179.7 (4) |
O3—C3—C4—C5 | −179.9 (3) | C12—C13—C14—C9 | −0.5 (7) |
O4—C5—C6—C7 | −179.0 (3) | C14—C9—C10—O8 | 179.3 (4) |
O5—C7—C2—C1 | −0.5 (4) | C14—C9—C10—C11 | −0.3 (6) |
Symmetry codes: (i) x, y+1, z; (ii) −x+2, y, −z−1/2; (iii) x+1/2, y+1/2, z; (iv) −x+3/2, y+1/2, −z−1/2; (v) −x+2, −y+1, −z−1; (vi) x, −y+1, z+1/2; (vii) x+1/2, y−1/2, z; (viii) −x+3/2, y−1/2, −z−1/2; (ix) x, −y, z+1/2; (x) −x+2, −y, −z−1; (xi) −x+5/2, −y−1/2, −z−1; (xii) −x+5/2, −y+1/2, −z−1; (xiii) x−1/2, y+1/2, z; (xiv) x−1/2, y−1/2, z. |
[Cs(C7H5O5)] | F(000) = 2272 |
Mr = 302.02 | Dx = 2.464 Mg m−3 |
Monoclinic, C2/c | Mo Kα radiation, λ = 0.71073 Å |
a = 27.8456 (7) Å | Cell parameters from 9785 reflections |
b = 3.9988 (1) Å | θ = 2.8–30.9° |
c = 29.2588 (9) Å | µ = 4.53 mm−1 |
β = 92.003 (3)° | T = 100 K |
V = 3255.95 (15) Å3 | Block, clear colourless |
Z = 16 | 0.37 × 0.18 × 0.07 mm |
XtaLAB Synergy, Dualflex, HyPix diffractometer | 4281 measured reflections |
Radiation source: micro-focus sealed X-ray tube, PhotonJet (Mo) X-ray Source | 4281 independent reflections |
Mirror monochromator | 4166 reflections with I > 2σ(I) |
Detector resolution: 10.0000 pixels mm-1 | θmax = 25.4°, θmin = 2.8° |
ω scans | h = −32→32 |
Absorption correction: multi-scan (CrysAlis PRO; Rigaku OD, 2021) | k = −4→4 |
Tmin = 0.634, Tmax = 1.000 | l = −34→34 |
Refinement on F2 | Primary atom site location: dual |
Least-squares matrix: full | Hydrogen site location: mixed |
R[F2 > 2σ(F2)] = 0.054 | H atoms treated by a mixture of independent and constrained refinement |
wR(F2) = 0.160 | w = 1/[σ2(Fo2) + (0.0745P)2 + 175.4656P] where P = (Fo2 + 2Fc2)/3 |
S = 1.17 | (Δ/σ)max < 0.001 |
4281 reflections | Δρmax = 1.66 e Å−3 |
254 parameters | Δρmin = −1.33 e Å−3 |
181 restraints |
Geometry. All esds (except the esd in the dihedral angle between two l.s. planes) are estimated using the full covariance matrix. The cell esds are taken into account individually in the estimation of esds in distances, angles and torsion angles; correlations between esds in cell parameters are only used when they are defined by crystal symmetry. An approximate (isotropic) treatment of cell esds is used for estimating esds involving l.s. planes. |
Refinement. Twinned crystal; refined in HKLF5 format (BASF 0.39). H3 is restrained to be in the O3-C3-C2 plane, as observed for corresponding H atoms in other metal complexes containing this anion. RIGU restraints are applied to the carboxylate ligands to avoid unrealistic thermal ellipsoids. O-H distances were fixed at 0.85 and Uiso(H) = 1.5Ueq(O). |
x | y | z | Uiso*/Ueq | ||
Cs1 | 0.38830 (3) | 0.5421 (2) | 0.26577 (3) | 0.0162 (2) | |
Cs2 | 0.36153 (3) | 0.8967 (2) | 0.51534 (3) | 0.0204 (3) | |
O1 | 0.3934 (3) | 0.842 (3) | 0.1625 (3) | 0.019 (2) | |
O2 | 0.4507 (3) | 1.056 (2) | 0.2079 (3) | 0.018 (2) | |
O3 | 0.5380 (3) | 1.020 (3) | 0.1860 (3) | 0.017 (2) | |
O4 | 0.5737 (3) | 0.472 (3) | 0.0468 (3) | 0.021 (2) | |
O5 | 0.4116 (3) | 0.598 (3) | 0.0858 (4) | 0.023 (2) | |
O6 | 0.3490 (3) | 1.326 (3) | 0.4044 (3) | 0.022 (2) | |
O7 | 0.2937 (3) | 1.330 (3) | 0.4575 (4) | 0.021 (2) | |
O8 | 0.2108 (3) | 1.082 (3) | 0.4403 (3) | 0.019 (2) | |
O9 | 0.1805 (3) | 0.578 (3) | 0.2946 (4) | 0.022 (2) | |
O10 | 0.3328 (3) | 1.067 (3) | 0.3271 (4) | 0.019 (2) | |
C1 | 0.4372 (5) | 0.914 (4) | 0.1709 (5) | 0.018 (3) | |
C2 | 0.4729 (5) | 0.812 (4) | 0.1374 (5) | 0.017 (3) | |
C3 | 0.5225 (5) | 0.865 (3) | 0.1470 (5) | 0.012 (3) | |
C4 | 0.5562 (4) | 0.754 (3) | 0.1166 (5) | 0.013 (3) | |
H4A | 0.589508 | 0.787535 | 0.122999 | 0.016* | |
C5 | 0.5407 (5) | 0.592 (4) | 0.0765 (5) | 0.020 (3) | |
H9 | 0.158 (4) | 0.54 (4) | 0.313 (5) | 0.030* | |
H10 | 0.341 (6) | 1.19 (4) | 0.350 (4) | 0.030* | |
H4 | 0.600 (3) | 0.44 (4) | 0.062 (5) | 0.030* | |
H8 | 0.237 (3) | 1.16 (4) | 0.451 (6) | 0.030* | |
H3 | 0.511 (3) | 1.056 (19) | 0.198 (5) | 0.030* | |
H5 | 0.400 (6) | 0.62 (5) | 0.112 (3) | 0.030* | |
C6 | 0.4920 (5) | 0.549 (4) | 0.0659 (5) | 0.017 (3) | |
H6 | 0.481861 | 0.449255 | 0.037673 | 0.021* | |
C7 | 0.4594 (5) | 0.649 (4) | 0.0959 (5) | 0.018 (3) | |
C8 | 0.3066 (5) | 1.261 (3) | 0.4183 (5) | 0.013 (3) | |
C9 | 0.2732 (4) | 1.089 (3) | 0.3852 (5) | 0.013 (3) | |
C10 | 0.2264 (5) | 1.002 (4) | 0.3978 (5) | 0.015 (3) | |
C11 | 0.1960 (5) | 0.832 (4) | 0.3683 (5) | 0.017 (3) | |
H11 | 0.164756 | 0.771785 | 0.377491 | 0.020* | |
C12 | 0.2106 (4) | 0.748 (3) | 0.3247 (5) | 0.015 (3) | |
C13 | 0.2566 (4) | 0.835 (3) | 0.3107 (5) | 0.013 (3) | |
H13 | 0.266505 | 0.780254 | 0.280869 | 0.016* | |
C14 | 0.2871 (5) | 1.001 (3) | 0.3411 (5) | 0.014 (3) |
U11 | U22 | U33 | U12 | U13 | U23 | |
Cs1 | 0.0124 (4) | 0.0150 (4) | 0.0214 (4) | −0.0007 (3) | 0.0018 (3) | 0.0001 (3) |
Cs2 | 0.0170 (4) | 0.0208 (5) | 0.0235 (5) | 0.0036 (3) | 0.0005 (3) | 0.0005 (4) |
O1 | 0.003 (4) | 0.029 (5) | 0.027 (5) | 0.000 (4) | 0.003 (4) | 0.001 (5) |
O2 | 0.012 (5) | 0.023 (5) | 0.018 (5) | 0.000 (4) | 0.004 (4) | −0.005 (4) |
O3 | 0.011 (5) | 0.027 (5) | 0.014 (5) | 0.002 (4) | 0.000 (4) | −0.003 (4) |
O4 | 0.009 (5) | 0.038 (6) | 0.016 (5) | −0.001 (4) | 0.002 (4) | 0.003 (5) |
O5 | 0.008 (5) | 0.041 (6) | 0.019 (5) | 0.003 (4) | 0.000 (4) | −0.006 (5) |
O6 | 0.006 (5) | 0.035 (6) | 0.025 (6) | −0.005 (4) | 0.001 (4) | −0.006 (5) |
O7 | 0.012 (5) | 0.027 (5) | 0.023 (5) | −0.004 (4) | −0.002 (4) | 0.000 (4) |
O8 | 0.007 (5) | 0.029 (6) | 0.020 (5) | −0.003 (4) | 0.002 (4) | 0.002 (4) |
O9 | 0.011 (5) | 0.037 (6) | 0.018 (5) | −0.008 (4) | −0.002 (4) | −0.005 (5) |
O10 | 0.009 (5) | 0.023 (5) | 0.025 (5) | −0.007 (4) | 0.005 (4) | −0.006 (4) |
C1 | 0.014 (6) | 0.018 (7) | 0.021 (7) | 0.007 (5) | −0.001 (5) | 0.000 (6) |
C2 | 0.007 (6) | 0.028 (7) | 0.016 (7) | 0.004 (5) | 0.004 (5) | 0.003 (6) |
C3 | 0.012 (6) | 0.005 (6) | 0.019 (7) | −0.001 (5) | −0.004 (5) | −0.003 (5) |
C4 | 0.003 (6) | 0.014 (6) | 0.023 (7) | 0.001 (5) | 0.003 (5) | 0.012 (5) |
C5 | 0.014 (7) | 0.032 (8) | 0.015 (7) | 0.006 (6) | 0.001 (5) | 0.007 (6) |
C6 | 0.012 (6) | 0.025 (8) | 0.015 (6) | −0.003 (6) | 0.001 (5) | −0.001 (6) |
C7 | 0.007 (6) | 0.025 (7) | 0.021 (7) | 0.000 (5) | −0.002 (5) | 0.009 (6) |
C8 | 0.011 (6) | 0.006 (6) | 0.024 (7) | 0.003 (5) | 0.001 (5) | −0.002 (5) |
C9 | 0.002 (5) | 0.014 (6) | 0.023 (7) | 0.000 (5) | 0.001 (5) | 0.001 (5) |
C10 | 0.008 (6) | 0.024 (7) | 0.014 (6) | 0.004 (5) | −0.001 (5) | 0.004 (6) |
C11 | 0.010 (7) | 0.017 (7) | 0.023 (7) | −0.003 (5) | 0.002 (5) | 0.001 (6) |
C12 | 0.007 (6) | 0.016 (7) | 0.022 (7) | 0.000 (5) | 0.001 (5) | 0.005 (5) |
C13 | 0.011 (6) | 0.012 (6) | 0.016 (7) | 0.007 (5) | 0.006 (5) | 0.003 (5) |
C14 | 0.010 (6) | 0.017 (7) | 0.016 (6) | −0.003 (5) | 0.001 (5) | 0.007 (5) |
Cs1—Cs1i | 3.9988 (1) | O4—H4 | 0.85 (2) |
Cs1—O1 | 3.260 (10) | O5—H5 | 0.85 (2) |
Cs1—O2i | 3.140 (9) | O5—C7 | 1.369 (17) |
Cs1—O2 | 3.211 (10) | O6—C8 | 1.289 (16) |
Cs1—O3ii | 3.106 (10) | O7—C8 | 1.246 (17) |
Cs1—O3iii | 3.219 (10) | O8—H8 | 0.85 (3) |
Cs1—O9iv | 3.339 (10) | O8—C10 | 1.372 (17) |
Cs1—O9v | 3.161 (11) | O9—H9 | 0.85 (2) |
Cs1—O10 | 3.194 (10) | O9—C12 | 1.375 (17) |
Cs1—O10i | 3.069 (10) | O10—H10 | 0.85 (3) |
Cs1—C3ii | 3.730 (13) | O10—C14 | 1.374 (16) |
Cs1—C4ii | 3.819 (13) | C1—C2 | 1.478 (19) |
Cs1—H9v | 3.29 (17) | C2—C3 | 1.414 (19) |
Cs2—Cs2vi | 3.9988 (1) | C2—C7 | 1.42 (2) |
Cs2—Cs2i | 3.9988 (1) | C3—C4 | 1.390 (19) |
Cs2—O4ii | 3.110 (10) | C4—H4A | 0.9500 |
Cs2—O4vii | 3.474 (11) | C4—C5 | 1.39 (2) |
Cs2—O5viii | 3.148 (11) | C5—C6 | 1.39 (2) |
Cs2—O5ix | 3.175 (11) | C6—H6 | 0.9500 |
Cs2—O6 | 3.677 (11) | C6—C7 | 1.35 (2) |
Cs2—O7i | 3.368 (10) | C8—C9 | 1.488 (18) |
Cs2—O7 | 3.036 (10) | C9—C10 | 1.410 (18) |
Cs2—O8x | 3.095 (10) | C9—C14 | 1.406 (19) |
Cs2—O8xi | 3.204 (10) | C10—C11 | 1.37 (2) |
O1—C1 | 1.271 (17) | C11—H11 | 0.9500 |
O2—C1 | 1.268 (18) | C11—C12 | 1.39 (2) |
O3—C3 | 1.355 (16) | C12—C13 | 1.402 (18) |
O3—H3 | 0.84 (2) | C13—H13 | 0.9500 |
O4—C5 | 1.375 (17) | C13—C14 | 1.379 (19) |
Cs1i—Cs1—H9v | 52 (3) | O7—Cs2—O5viii | 167.6 (3) |
O1—Cs1—Cs1i | 111.57 (18) | O7—Cs2—O6 | 37.2 (2) |
O1—Cs1—O9iv | 46.9 (2) | O7i—Cs2—O6 | 80.6 (2) |
O1—Cs1—C3ii | 117.3 (3) | O7—Cs2—O7i | 77.1 (2) |
O1—Cs1—C4ii | 136.5 (3) | O7—Cs2—O8xi | 57.8 (3) |
O1—Cs1—H9v | 67 (3) | O7—Cs2—O8x | 100.7 (3) |
O2—Cs1—Cs1i | 129.82 (17) | O8xi—Cs2—Cs2vi | 49.40 (18) |
O2i—Cs1—Cs1i | 51.78 (18) | O8x—Cs2—Cs2i | 51.80 (19) |
O2—Cs1—O1 | 40.0 (2) | O8xi—Cs2—Cs2i | 130.59 (18) |
O2i—Cs1—O1 | 71.6 (3) | O8x—Cs2—Cs2vi | 128.19 (19) |
O2i—Cs1—O2 | 78.0 (2) | O8xi—Cs2—O4vii | 97.2 (3) |
O2—Cs1—O3iii | 107.4 (2) | O8x—Cs2—O4ii | 107.8 (3) |
O2i—Cs1—O3iii | 58.6 (3) | O8x—Cs2—O4vii | 170.2 (2) |
O2—Cs1—O9iv | 67.7 (2) | O8x—Cs2—O5ix | 113.5 (3) |
O2i—Cs1—O9v | 70.8 (2) | O8x—Cs2—O5viii | 67.4 (3) |
O2i—Cs1—O9iv | 115.5 (2) | O8xi—Cs2—O6 | 90.7 (2) |
O2i—Cs1—O10 | 175.3 (2) | O8x—Cs2—O6 | 128.0 (2) |
O2—Cs1—C3ii | 77.2 (3) | O8x—Cs2—O7i | 55.5 (3) |
O2i—Cs1—C3ii | 102.4 (3) | O8xi—Cs2—O7i | 107.0 (2) |
O2—Cs1—C4ii | 97.1 (3) | O8x—Cs2—O8xi | 78.8 (2) |
O2i—Cs1—C4ii | 114.1 (3) | C1—O1—Cs1 | 88.5 (8) |
O2—Cs1—H9v | 103 (2) | Cs1vi—O2—Cs1 | 78.0 (2) |
O2i—Cs1—H9v | 57.0 (16) | C1—O2—Cs1vi | 125.8 (8) |
O3ii—Cs1—Cs1i | 127.94 (18) | C1—O2—Cs1 | 90.8 (8) |
O3iii—Cs1—Cs1i | 49.55 (17) | Cs1ii—O3—Cs1vii | 78.4 (2) |
O3iii—Cs1—O1 | 126.7 (2) | Cs1ii—O3—H3 | 120 (5) |
O3ii—Cs1—O1 | 98.4 (2) | Cs1vii—O3—H3 | 106 (10) |
O3ii—Cs1—O2 | 59.0 (2) | C3—O3—Cs1vii | 147.7 (8) |
O3ii—Cs1—O2i | 104.9 (2) | C3—O3—Cs1ii | 106.8 (8) |
O3ii—Cs1—O3iii | 78.4 (2) | C3—O3—H3 | 99 (10) |
O3ii—Cs1—O9iv | 101.7 (3) | Cs2ii—O4—Cs2iii | 74.6 (2) |
O3ii—Cs1—O9v | 173.0 (3) | Cs2ii—O4—H4 | 83 (10) |
O3iii—Cs1—O9iv | 173.6 (2) | Cs2iii—O4—H4 | 73 (10) |
O3ii—Cs1—O10 | 70.5 (2) | C5—O4—Cs2ii | 126.3 (9) |
O3iii—Cs1—C3ii | 61.7 (3) | C5—O4—Cs2iii | 159.0 (9) |
O3ii—Cs1—C3ii | 20.4 (3) | C5—O4—H4 | 108 (10) |
O3iii—Cs1—C4ii | 61.1 (3) | Cs2xii—O5—Cs2xiii | 78.5 (2) |
O3ii—Cs1—C4ii | 38.2 (3) | Cs2xii—O5—H5 | 119 (10) |
O3iii—Cs1—H9v | 98 (3) | Cs2xiii—O5—H5 | 111 (10) |
O3ii—Cs1—H9v | 158.8 (11) | C7—O5—Cs2xiii | 116.5 (9) |
O9v—Cs1—Cs1i | 54.07 (19) | C7—O5—Cs2xii | 129.8 (9) |
O9iv—Cs1—Cs1i | 129.94 (19) | C7—O5—H5 | 101 (10) |
O9v—Cs1—O1 | 75.1 (3) | C8—O6—Cs2 | 71.8 (8) |
O9v—Cs1—O2 | 114.2 (2) | Cs2—O7—Cs2vi | 77.1 (2) |
O9v—Cs1—O3iii | 103.2 (3) | C8—O7—Cs2vi | 116.0 (8) |
O9v—Cs1—O9iv | 75.9 (2) | C8—O7—Cs2 | 101.1 (8) |
O9v—Cs1—O10 | 113.8 (2) | Cs2x—O8—Cs2xi | 78.8 (2) |
O9iv—Cs1—C3ii | 119.7 (3) | Cs2xi—O8—H8 | 99 (10) |
O9v—Cs1—C3ii | 164.1 (3) | Cs2x—O8—H8 | 130 (10) |
O9iv—Cs1—C4ii | 122.8 (3) | C10—O8—Cs2x | 117.9 (8) |
O9v—Cs1—C4ii | 148.4 (3) | C10—O8—Cs2xi | 138.1 (8) |
O9v—Cs1—H9v | 15.0 (9) | C10—O8—H8 | 97 (10) |
O9iv—Cs1—H9v | 80 (3) | Cs1iv—O9—Cs1v | 75.9 (2) |
O10—Cs1—Cs1i | 131.04 (18) | Cs1iv—O9—H9 | 91 (10) |
O10i—Cs1—Cs1i | 51.71 (19) | Cs1v—O9—H9 | 78 (10) |
O10—Cs1—O1 | 108.5 (3) | C12—O9—Cs1v | 169.2 (9) |
O10i—Cs1—O1 | 144.0 (3) | C12—O9—Cs1iv | 114.4 (8) |
O10i—Cs1—O2 | 176.0 (3) | C12—O9—H9 | 98 (10) |
O10i—Cs1—O2i | 103.4 (3) | Cs1vi—O10—Cs1 | 79.3 (2) |
O10—Cs1—O2 | 99.0 (2) | Cs1—O10—H10 | 134 (10) |
O10i—Cs1—O3ii | 117.0 (3) | Cs1vi—O10—H10 | 88 (10) |
O10—Cs1—O3iii | 119.5 (3) | C14—O10—Cs1vi | 141.5 (8) |
O10i—Cs1—O3iii | 70.6 (2) | C14—O10—Cs1 | 120.8 (8) |
O10—Cs1—O9iv | 66.1 (3) | C14—O10—H10 | 96 (10) |
O10i—Cs1—O9v | 69.8 (3) | O1—C1—C2 | 118.1 (13) |
O10i—Cs1—O9iv | 114.6 (3) | O2—C1—O1 | 121.4 (13) |
O10i—Cs1—O10 | 79.3 (2) | O2—C1—C2 | 120.4 (12) |
O10i—Cs1—C3ii | 98.7 (3) | C3—C2—C1 | 120.1 (13) |
O10—Cs1—C3ii | 73.3 (3) | C3—C2—C7 | 117.8 (12) |
O10i—Cs1—C4ii | 78.8 (3) | C7—C2—C1 | 122.1 (12) |
O10—Cs1—C4ii | 62.4 (3) | O3—C3—Cs1ii | 52.9 (6) |
O10—Cs1—H9v | 127.5 (16) | O3—C3—C2 | 121.1 (12) |
O10i—Cs1—H9v | 81 (2) | O3—C3—C4 | 118.8 (12) |
C3ii—Cs1—Cs1i | 110.26 (19) | C2—C3—Cs1ii | 134.9 (9) |
C3ii—Cs1—C4ii | 21.2 (3) | C4—C3—Cs1ii | 83.0 (8) |
C3ii—Cs1—H9v | 158 (2) | C4—C3—C2 | 120.1 (13) |
C4ii—Cs1—Cs1i | 102.8 (2) | Cs1ii—C4—H4A | 59.4 |
C4ii—Cs1—H9v | 155 (3) | C3—C4—Cs1ii | 75.8 (8) |
Cs2i—Cs2—Cs2vi | 180.0 | C3—C4—H4A | 120.3 |
O4ii—Cs2—Cs2vi | 123.1 (2) | C3—C4—C5 | 119.4 (12) |
O4vii—Cs2—Cs2i | 131.44 (17) | C5—C4—Cs1ii | 139.4 (9) |
O4ii—Cs2—Cs2i | 56.9 (2) | C5—C4—H4A | 120.3 |
O4vii—Cs2—Cs2vi | 48.57 (17) | O4—C5—C4 | 120.0 (12) |
O4ii—Cs2—O4vii | 74.6 (2) | O4—C5—C6 | 118.8 (13) |
O4ii—Cs2—O5ix | 118.5 (3) | C6—C5—C4 | 121.1 (13) |
O4ii—Cs2—O5viii | 77.7 (3) | C5—C6—H6 | 120.3 |
O4vii—Cs2—O6 | 42.6 (2) | C7—C6—C5 | 119.4 (14) |
O4ii—Cs2—O6 | 77.2 (3) | C7—C6—H6 | 120.3 |
O4ii—Cs2—O7i | 70.4 (3) | O5—C7—C2 | 118.7 (12) |
O4ii—Cs2—O8xi | 167.8 (3) | C6—C7—O5 | 119.2 (13) |
O5ix—Cs2—Cs2i | 129.5 (2) | C6—C7—C2 | 122.1 (13) |
O5ix—Cs2—Cs2vi | 50.5 (2) | O6—C8—C9 | 116.6 (12) |
O5viii—Cs2—Cs2vi | 128.9 (2) | O7—C8—O6 | 122.8 (12) |
O5viii—Cs2—Cs2i | 51.1 (2) | O7—C8—C9 | 120.5 (12) |
O5viii—Cs2—O4vii | 122.2 (2) | C10—C9—C8 | 120.5 (12) |
O5ix—Cs2—O4vii | 72.2 (3) | C14—C9—C8 | 121.8 (11) |
O5viii—Cs2—O5ix | 78.5 (2) | C14—C9—C10 | 117.7 (12) |
O5viii—Cs2—O6 | 153.9 (2) | O8—C10—C9 | 120.3 (12) |
O5ix—Cs2—O6 | 107.6 (3) | C11—C10—O8 | 118.6 (12) |
O5ix—Cs2—O7i | 168.6 (2) | C11—C10—C9 | 121.0 (13) |
O5viii—Cs2—O7i | 97.7 (3) | C10—C11—H11 | 119.9 |
O5viii—Cs2—O8xi | 114.4 (3) | C10—C11—C12 | 120.1 (12) |
O5ix—Cs2—O8xi | 65.8 (2) | C12—C11—H11 | 119.9 |
O6—Cs2—Cs2i | 117.84 (17) | O9—C12—C11 | 121.0 (11) |
O6—Cs2—Cs2vi | 62.17 (17) | O9—C12—C13 | 118.5 (13) |
O7i—Cs2—Cs2vi | 132.27 (18) | C11—C12—C13 | 120.5 (13) |
O7—Cs2—Cs2vi | 55.18 (19) | C12—C13—H13 | 120.7 |
O7—Cs2—Cs2i | 124.82 (19) | C14—C13—C12 | 118.7 (12) |
O7i—Cs2—Cs2i | 47.73 (18) | C14—C13—H13 | 120.7 |
O7—Cs2—O4vii | 69.8 (2) | O10—C14—C9 | 120.9 (12) |
O7—Cs2—O4ii | 110.4 (3) | O10—C14—C13 | 117.2 (12) |
O7i—Cs2—O4vii | 118.3 (2) | C13—C14—C9 | 121.9 (12) |
O7—Cs2—O5ix | 104.4 (3) | ||
Cs1—O1—C1—O2 | −46.0 (13) | O2—C1—C2—C3 | 2 (2) |
Cs1—O1—C1—C2 | 131.0 (12) | O2—C1—C2—C7 | 179.2 (14) |
Cs1vi—O2—C1—O1 | −28.9 (19) | O3—C3—C4—Cs1ii | 40.4 (10) |
Cs1—O2—C1—O1 | 46.9 (14) | O3—C3—C4—C5 | 179.6 (12) |
Cs1vi—O2—C1—C2 | 154.1 (9) | O4—C5—C6—C7 | 176.3 (13) |
Cs1—O2—C1—C2 | −130.1 (12) | O6—C8—C9—C10 | 178.7 (12) |
Cs1vii—O3—C3—Cs1ii | 94.8 (14) | O6—C8—C9—C14 | 0.2 (19) |
Cs1ii—O3—C3—C2 | 125.3 (12) | O7—C8—C9—C10 | −0.1 (19) |
Cs1vii—O3—C3—C2 | −139.9 (13) | O7—C8—C9—C14 | −178.6 (13) |
Cs1vii—O3—C3—C4 | 41 (2) | O8—C10—C11—C12 | 179.7 (12) |
Cs1ii—O3—C3—C4 | −53.8 (13) | O9—C12—C13—C14 | −179.1 (12) |
Cs1v—O9—C12—C11 | −73 (5) | C1—C2—C3—Cs1ii | 64.2 (18) |
Cs1iv—O9—C12—C11 | 87.5 (13) | C1—C2—C3—O3 | −3 (2) |
Cs1v—O9—C12—C13 | 107 (4) | C1—C2—C3—C4 | 176.6 (12) |
Cs1iv—O9—C12—C13 | −92.6 (12) | C1—C2—C7—O5 | 3 (2) |
Cs1vi—O10—C14—C9 | −105.3 (15) | C1—C2—C7—C6 | −178.3 (14) |
Cs1—O10—C14—C9 | 140.9 (10) | C2—C3—C4—Cs1ii | −138.7 (13) |
Cs1vi—O10—C14—C13 | 77.1 (17) | C2—C3—C4—C5 | 0 (2) |
Cs1—O10—C14—C13 | −36.7 (15) | C3—C2—C7—O5 | −179.5 (13) |
Cs1ii—C3—C4—C5 | 139.1 (12) | C3—C2—C7—C6 | −1 (2) |
Cs1ii—C4—C5—O4 | −75.0 (18) | C3—C4—C5—O4 | −178.0 (12) |
Cs1ii—C4—C5—C6 | 104.8 (16) | C3—C4—C5—C6 | 2 (2) |
Cs2ii—O4—C5—C4 | −71.0 (15) | C4—C5—C6—C7 | −3 (2) |
Cs2iii—O4—C5—C4 | 114 (2) | C5—C6—C7—O5 | −178.3 (13) |
Cs2ii—O4—C5—C6 | 109.2 (14) | C5—C6—C7—C2 | 3 (2) |
Cs2iii—O4—C5—C6 | −65 (3) | C7—C2—C3—Cs1ii | −113.3 (14) |
Cs2xiii—O5—C7—C2 | 100.7 (13) | C7—C2—C3—O3 | 179.9 (13) |
Cs2xii—O5—C7—C2 | −162.1 (10) | C7—C2—C3—C4 | −1 (2) |
Cs2xiii—O5—C7—C6 | −78.0 (15) | C8—C9—C10—O8 | 1.7 (19) |
Cs2xii—O5—C7—C6 | 19 (2) | C8—C9—C10—C11 | −177.5 (13) |
Cs2—O6—C8—O7 | 49.6 (12) | C8—C9—C14—O10 | 1 (2) |
Cs2—O6—C8—C9 | −129.2 (11) | C8—C9—C14—C13 | 178.5 (12) |
Cs2—O7—C8—O6 | −63.2 (13) | C9—C10—C11—C12 | −1 (2) |
Cs2vi—O7—C8—O6 | 17.7 (16) | C10—C9—C14—O10 | −177.5 (12) |
Cs2—O7—C8—C9 | 115.5 (11) | C10—C9—C14—C13 | −0.1 (19) |
Cs2vi—O7—C8—C9 | −163.5 (9) | C10—C11—C12—O9 | −179.9 (13) |
Cs2xi—O8—C10—C9 | 107.0 (13) | C10—C11—C12—C13 | 0 (2) |
Cs2x—O8—C10—C9 | −147.9 (10) | C11—C12—C13—C14 | 1 (2) |
Cs2xi—O8—C10—C11 | −73.8 (17) | C12—C13—C14—O10 | 176.6 (12) |
Cs2x—O8—C10—C11 | 31.2 (15) | C12—C13—C14—C9 | −1 (2) |
O1—C1—C2—C3 | −175.3 (13) | C14—C9—C10—O8 | −179.8 (12) |
O1—C1—C2—C7 | 2 (2) | C14—C9—C10—C11 | 1 (2) |
Symmetry codes: (i) x, y−1, z; (ii) −x+1, y, −z+1/2; (iii) −x+1, y−1, −z+1/2; (iv) −x+1/2, y+1/2, −z+1/2; (v) −x+1/2, y−1/2, −z+1/2; (vi) x, y+1, z; (vii) −x+1, y+1, −z+1/2; (viii) x, −y+1, z+1/2; (ix) x, −y+2, z+1/2; (x) −x+1/2, −y+3/2, −z+1; (xi) −x+1/2, −y+5/2, −z+1; (xii) x, −y+1, z−1/2; (xiii) x, −y+2, z−1/2. |
[Cs(C7H5O5)(C7H6O5)(H2O)] | Dx = 2.071 Mg m−3 |
Mr = 490.15 | Cu Kα radiation, λ = 1.54184 Å |
Orthorhombic, Pbca | Cell parameters from 6587 reflections |
a = 6.9742 (2) Å | θ = 3.0–76.2° |
b = 15.2467 (4) Å | µ = 18.99 mm−1 |
c = 29.5616 (7) Å | T = 100 K |
V = 3143.39 (14) Å3 | Block, clear colourless |
Z = 8 | 0.16 × 0.13 × 0.05 mm |
F(000) = 1920 |
XtaLAB Synergy, Dualflex, HyPix diffractometer | 3278 independent reflections |
Radiation source: micro-focus sealed X-ray tube, PhotonJet (Cu) X-ray Source | 2946 reflections with I > 2σ(I) |
Mirror monochromator | Rint = 0.057 |
Detector resolution: 10.0000 pixels mm-1 | θmax = 78.1°, θmin = 3.0° |
ω scans | h = −8→8 |
Absorption correction: multi-scan (CrysAlis PRO; Rigaku OD, 2018) | k = −19→18 |
Tmin = 0.142, Tmax = 1.000 | l = −36→21 |
14256 measured reflections |
Refinement on F2 | Primary atom site location: dual |
Least-squares matrix: full | Hydrogen site location: mixed |
R[F2 > 2σ(F2)] = 0.042 | H atoms treated by a mixture of independent and constrained refinement |
wR(F2) = 0.116 | w = 1/[σ2(Fo2) + (0.0695P)2 + 6.6495P] where P = (Fo2 + 2Fc2)/3 |
S = 1.07 | (Δ/σ)max = 0.001 |
3278 reflections | Δρmax = 1.16 e Å−3 |
264 parameters | Δρmin = −1.05 e Å−3 |
10 restraints |
Geometry. All esds (except the esd in the dihedral angle between two l.s. planes) are estimated using the full covariance matrix. The cell esds are taken into account individually in the estimation of esds in distances, angles and torsion angles; correlations between esds in cell parameters are only used when they are defined by crystal symmetry. An approximate (isotropic) treatment of cell esds is used for estimating esds involving l.s. planes. |
Refinement. O-H distances were fixed at 0.85 and Uiso(H) = 1.5Ueq(O). |
x | y | z | Uiso*/Ueq | ||
Cs1 | 0.72455 (4) | 0.53531 (2) | 0.61245 (2) | 0.02029 (13) | |
O1 | 0.8718 (5) | 0.8565 (2) | 0.57123 (10) | 0.0261 (7) | |
O2 | 0.8353 (5) | 0.9441 (2) | 0.51308 (11) | 0.0231 (7) | |
H2 | 0.836 (12) | 0.943 (5) | 0.4843 (7) | 0.05 (2)* | |
O3 | 0.8387 (5) | 0.8782 (2) | 0.43378 (10) | 0.0243 (7) | |
H3 | 0.776 (12) | 0.875 (7) | 0.4091 (17) | 0.07 (3)* | |
O4 | 0.8655 (6) | 0.5641 (2) | 0.41937 (12) | 0.0288 (7) | |
O5 | 0.8965 (5) | 0.6917 (2) | 0.56305 (10) | 0.0243 (7) | |
O6 | 0.3704 (5) | 0.4306 (2) | 0.65408 (10) | 0.0220 (6) | |
O7 | 0.3228 (6) | 0.5230 (2) | 0.71125 (11) | 0.0238 (7) | |
O8 | 0.3255 (6) | 0.46603 (19) | 0.79262 (11) | 0.0253 (7) | |
O9 | 0.4816 (5) | 0.1696 (2) | 0.81952 (10) | 0.0250 (7) | |
O10 | 0.4635 (5) | 0.27365 (19) | 0.66820 (10) | 0.0215 (6) | |
O11 | 1.1291 (5) | 0.6069 (2) | 0.63841 (10) | 0.0221 (6) | |
C1 | 0.8596 (7) | 0.8639 (3) | 0.52996 (15) | 0.0214 (9) | |
C2 | 0.8676 (6) | 0.7891 (3) | 0.49918 (14) | 0.0176 (8) | |
C3 | 0.8509 (6) | 0.7962 (3) | 0.45160 (15) | 0.0196 (8) | |
C4 | 0.8503 (7) | 0.7224 (3) | 0.42430 (15) | 0.0222 (9) | |
H4A | 0.840607 | 0.727894 | 0.393055 | 0.027* | |
H4 | 0.811 (9) | 0.579 (5) | 0.3950 (13) | 0.033* | |
H5 | 0.898 (10) | 0.7448 (18) | 0.572 (2) | 0.033* | |
H8 | 0.299 (9) | 0.490 (4) | 0.7676 (13) | 0.033* | |
H9 | 0.536 (9) | 0.125 (3) | 0.8075 (18) | 0.033* | |
H10 | 0.436 (9) | 0.322 (2) | 0.6558 (18) | 0.033* | |
H11A | 1.160 (9) | 0.580 (3) | 0.6619 (12) | 0.033* | |
H11B | 1.113 (9) | 0.6597 (16) | 0.6458 (17) | 0.033* | |
C5 | 0.8643 (7) | 0.6398 (3) | 0.44418 (15) | 0.0220 (9) | |
C6 | 0.8849 (7) | 0.6302 (3) | 0.49063 (15) | 0.0205 (8) | |
H6 | 0.898724 | 0.574753 | 0.503366 | 0.025* | |
C7 | 0.8847 (6) | 0.7040 (3) | 0.51763 (15) | 0.0190 (8) | |
C8 | 0.3591 (6) | 0.4462 (3) | 0.69625 (14) | 0.0185 (8) | |
C9 | 0.3921 (6) | 0.3744 (3) | 0.72849 (14) | 0.0179 (8) | |
C10 | 0.3757 (7) | 0.3864 (3) | 0.77570 (14) | 0.0201 (8) | |
C11 | 0.4057 (6) | 0.3180 (3) | 0.80588 (14) | 0.0198 (8) | |
H11 | 0.392478 | 0.326849 | 0.836859 | 0.024* | |
C12 | 0.4558 (7) | 0.2362 (3) | 0.78892 (15) | 0.0215 (8) | |
C13 | 0.4753 (6) | 0.2217 (3) | 0.74300 (15) | 0.0199 (8) | |
H13 | 0.509576 | 0.166516 | 0.732315 | 0.024* | |
C14 | 0.4439 (6) | 0.2893 (3) | 0.71333 (15) | 0.0194 (8) |
U11 | U22 | U33 | U12 | U13 | U23 | |
Cs1 | 0.0257 (2) | 0.01533 (18) | 0.01985 (19) | −0.00107 (9) | −0.00040 (9) | −0.00010 (8) |
O1 | 0.039 (2) | 0.0177 (14) | 0.0219 (15) | 0.0035 (14) | −0.0026 (13) | −0.0027 (12) |
O2 | 0.0299 (18) | 0.0120 (13) | 0.0273 (16) | −0.0015 (13) | 0.0008 (14) | −0.0002 (12) |
O3 | 0.0322 (19) | 0.0155 (14) | 0.0253 (16) | −0.0010 (13) | −0.0020 (13) | 0.0017 (12) |
O4 | 0.039 (2) | 0.0164 (15) | 0.0312 (17) | 0.0060 (14) | −0.0070 (15) | −0.0046 (13) |
O5 | 0.0351 (19) | 0.0142 (14) | 0.0237 (15) | −0.0013 (13) | −0.0012 (13) | 0.0007 (12) |
O6 | 0.0281 (18) | 0.0183 (14) | 0.0197 (14) | 0.0017 (12) | −0.0009 (12) | 0.0033 (11) |
O7 | 0.0344 (19) | 0.0125 (13) | 0.0244 (15) | 0.0006 (13) | 0.0019 (14) | −0.0003 (12) |
O8 | 0.036 (2) | 0.0176 (16) | 0.0226 (15) | 0.0030 (13) | 0.0028 (15) | −0.0004 (12) |
O9 | 0.0336 (19) | 0.0176 (14) | 0.0238 (14) | 0.0046 (13) | 0.0010 (13) | 0.0053 (12) |
O10 | 0.0298 (17) | 0.0149 (13) | 0.0198 (14) | 0.0032 (12) | −0.0008 (13) | −0.0005 (11) |
O11 | 0.0331 (19) | 0.0127 (13) | 0.0206 (14) | 0.0020 (13) | −0.0028 (12) | 0.0014 (11) |
C1 | 0.020 (2) | 0.0163 (19) | 0.028 (2) | 0.0003 (16) | 0.0017 (17) | 0.0007 (16) |
C2 | 0.0151 (19) | 0.0146 (19) | 0.023 (2) | −0.0007 (15) | −0.0010 (15) | 0.0000 (15) |
C3 | 0.017 (2) | 0.0168 (19) | 0.025 (2) | 0.0011 (16) | 0.0010 (16) | 0.0040 (16) |
C4 | 0.027 (2) | 0.020 (2) | 0.0196 (19) | −0.0015 (18) | 0.0004 (17) | −0.0014 (16) |
C5 | 0.020 (2) | 0.017 (2) | 0.029 (2) | 0.0026 (17) | −0.0007 (17) | −0.0061 (17) |
C6 | 0.022 (2) | 0.0143 (18) | 0.026 (2) | 0.0019 (16) | −0.0007 (16) | 0.0022 (16) |
C7 | 0.0145 (19) | 0.0156 (19) | 0.027 (2) | 0.0006 (15) | −0.0033 (16) | 0.0001 (16) |
C8 | 0.017 (2) | 0.0154 (18) | 0.023 (2) | −0.0025 (16) | 0.0021 (15) | 0.0027 (15) |
C9 | 0.016 (2) | 0.0162 (19) | 0.0219 (19) | 0.0014 (15) | −0.0033 (15) | 0.0015 (15) |
C10 | 0.022 (2) | 0.0143 (19) | 0.0235 (19) | −0.0050 (16) | −0.0023 (16) | 0.0010 (15) |
C11 | 0.018 (2) | 0.021 (2) | 0.0206 (19) | −0.0028 (16) | −0.0007 (15) | 0.0017 (16) |
C12 | 0.021 (2) | 0.019 (2) | 0.025 (2) | 0.0003 (17) | −0.0017 (17) | 0.0060 (17) |
C13 | 0.020 (2) | 0.0120 (19) | 0.028 (2) | 0.0011 (15) | 0.0010 (17) | 0.0026 (15) |
C14 | 0.017 (2) | 0.0174 (19) | 0.024 (2) | −0.0025 (16) | −0.0023 (16) | −0.0032 (15) |
Cs1—O1i | 3.061 (3) | O9—H9 | 0.85 (2) |
Cs1—O2i | 3.277 (3) | O9—C12 | 1.372 (5) |
Cs1—O3ii | 3.294 (4) | O10—H10 | 0.85 (2) |
Cs1—O4iii | 3.370 (4) | O10—C14 | 1.362 (5) |
Cs1—O5 | 3.043 (3) | O11—H11A | 0.838 (19) |
Cs1—O6 | 3.188 (3) | O11—H11B | 0.84 (2) |
Cs1—O8iv | 3.080 (3) | C1—C2 | 1.459 (6) |
Cs1—O9v | 3.210 (3) | C2—C3 | 1.415 (6) |
Cs1—O11 | 3.121 (3) | C2—C7 | 1.412 (6) |
Cs1—H9v | 3.28 (6) | C3—C4 | 1.385 (6) |
Cs1—H11A | 3.44 (6) | C4—H4A | 0.9300 |
Cs1—H11B | 3.45 (6) | C4—C5 | 1.393 (6) |
O1—C1 | 1.228 (5) | C5—C6 | 1.388 (6) |
O2—H2 | 0.85 (2) | C6—H6 | 0.9300 |
O2—C1 | 1.332 (5) | C6—C7 | 1.380 (6) |
O3—H3 | 0.85 (2) | C8—C9 | 1.470 (6) |
O3—C3 | 1.359 (5) | C9—C10 | 1.412 (6) |
O4—H4 | 0.84 (2) | C9—C14 | 1.419 (6) |
O4—C5 | 1.367 (5) | C10—C11 | 1.388 (6) |
O5—H5 | 0.85 (2) | C11—H11 | 0.9300 |
O5—C7 | 1.358 (5) | C11—C12 | 1.389 (6) |
O6—C8 | 1.272 (5) | C12—C13 | 1.382 (6) |
O7—C8 | 1.278 (5) | C13—H13 | 0.9300 |
O8—H8 | 0.85 (2) | C13—C14 | 1.370 (6) |
O8—C10 | 1.359 (5) | ||
O1i—Cs1—O2i | 40.29 (8) | C1—O2—Cs1vi | 94.0 (2) |
O1i—Cs1—O3ii | 90.71 (9) | C1—O2—H2 | 111 (5) |
O1i—Cs1—O4iii | 70.99 (9) | Cs1vii—O3—H3 | 95 (6) |
O1i—Cs1—O6 | 62.46 (8) | C3—O3—Cs1vii | 118.6 (3) |
O1i—Cs1—O8iv | 96.17 (8) | C3—O3—H3 | 108 (7) |
O1i—Cs1—O9v | 135.99 (9) | Cs1iii—O4—H4 | 105 (5) |
O1i—Cs1—O11 | 127.42 (9) | C5—O4—Cs1iii | 122.3 (3) |
O1i—Cs1—H9v | 122.5 (6) | C5—O4—H4 | 103 (5) |
O1i—Cs1—H11A | 122.6 (8) | Cs1—O5—H5 | 127 (4) |
O1i—Cs1—H11B | 140.8 (6) | C7—O5—Cs1 | 124.0 (3) |
O2i—Cs1—O3ii | 72.18 (8) | C7—O5—H5 | 101 (4) |
O2i—Cs1—O4iii | 70.54 (8) | C8—O6—Cs1 | 109.4 (3) |
O2i—Cs1—H9v | 138.9 (11) | Cs1viii—O8—H8 | 127 (5) |
O2i—Cs1—H11A | 125.3 (10) | C10—O8—Cs1viii | 134.5 (3) |
O2i—Cs1—H11B | 126.1 (9) | C10—O8—H8 | 97 (5) |
O3ii—Cs1—O4iii | 139.24 (8) | Cs1ix—O9—H9 | 87 (4) |
O3ii—Cs1—H9v | 71.4 (11) | C12—O9—Cs1ix | 145.7 (3) |
O3ii—Cs1—H11A | 145.0 (7) | C12—O9—H9 | 112 (4) |
O3ii—Cs1—H11B | 122.7 (6) | C14—O10—H10 | 104 (4) |
O4iii—Cs1—H9v | 149.1 (11) | Cs1—O11—H11A | 106 (5) |
O4iii—Cs1—H11A | 57.2 (10) | Cs1—O11—H11B | 106 (5) |
O4iii—Cs1—H11B | 70.1 (7) | H11A—O11—H11B | 107 (4) |
O5—Cs1—O1i | 126.41 (8) | O1—C1—Cs1vi | 53.8 (2) |
O5—Cs1—O2i | 87.27 (8) | O1—C1—O2 | 117.7 (4) |
O5—Cs1—O3ii | 78.99 (9) | O1—C1—C2 | 123.0 (4) |
O5—Cs1—O4iii | 83.36 (9) | O2—C1—Cs1vi | 64.5 (2) |
O5—Cs1—O6 | 152.02 (9) | O2—C1—C2 | 119.2 (4) |
O5—Cs1—O8iv | 128.02 (9) | C2—C1—Cs1vi | 171.6 (3) |
O5—Cs1—O9v | 88.70 (8) | C3—C2—C1 | 123.8 (4) |
O5—Cs1—O11 | 59.18 (8) | C7—C2—C1 | 118.7 (4) |
O5—Cs1—H9v | 103.7 (4) | C7—C2—C3 | 117.4 (4) |
O5—Cs1—H11A | 72.6 (6) | O3—C3—C2 | 117.4 (4) |
O5—Cs1—H11B | 52.9 (8) | O3—C3—C4 | 121.4 (4) |
O6—Cs1—O2i | 92.01 (8) | C4—C3—C2 | 121.2 (4) |
O6—Cs1—O3ii | 74.21 (8) | C3—C4—H4A | 120.4 |
O6—Cs1—O4iii | 122.66 (8) | C3—C4—C5 | 119.2 (4) |
O6—Cs1—O9v | 74.37 (8) | C5—C4—H4A | 120.4 |
O6—Cs1—H9v | 60.2 (5) | O4—C5—C4 | 122.5 (4) |
O6—Cs1—H11A | 128.2 (7) | O4—C5—C6 | 116.2 (4) |
O6—Cs1—H11B | 140.7 (9) | C6—C5—C4 | 121.3 (4) |
O8iv—Cs1—O2i | 134.46 (8) | C5—C6—H6 | 120.5 |
O8iv—Cs1—O3ii | 134.60 (9) | C7—C6—C5 | 119.1 (4) |
O8iv—Cs1—O4iii | 84.61 (9) | C7—C6—H6 | 120.5 |
O8iv—Cs1—O6 | 69.73 (9) | O5—C7—C2 | 120.9 (4) |
O8iv—Cs1—O9v | 75.54 (8) | O5—C7—C6 | 117.3 (4) |
O8iv—Cs1—O11 | 71.89 (9) | C6—C7—C2 | 121.7 (4) |
O8iv—Cs1—H9v | 67.2 (10) | O6—C8—O7 | 121.6 (4) |
O8iv—Cs1—H11A | 58.5 (7) | O6—C8—C9 | 119.1 (4) |
O8iv—Cs1—H11B | 75.5 (8) | O7—C8—C9 | 119.3 (4) |
O9v—Cs1—O2i | 140.84 (9) | C10—C9—C8 | 122.1 (4) |
O9v—Cs1—O3ii | 68.81 (8) | C10—C9—C14 | 116.8 (4) |
O9v—Cs1—O4iii | 147.33 (9) | C14—C9—C8 | 121.1 (4) |
O9v—Cs1—H9v | 15.0 (4) | O8—C10—C9 | 120.0 (4) |
O9v—Cs1—H11A | 90.2 (10) | O8—C10—C11 | 118.2 (4) |
O9v—Cs1—H11B | 79.8 (7) | C11—C10—C9 | 121.7 (4) |
O11—Cs1—O2i | 118.94 (9) | C10—C11—H11 | 120.7 |
O11—Cs1—O3ii | 134.48 (8) | C10—C11—C12 | 118.7 (4) |
O11—Cs1—O4iii | 57.25 (8) | C12—C11—H11 | 120.7 |
O11—Cs1—O6 | 141.30 (8) | O9—C12—C11 | 117.4 (4) |
O11—Cs1—O9v | 91.59 (9) | O9—C12—C13 | 121.1 (4) |
O11—Cs1—H9v | 100.2 (10) | C13—C12—C11 | 121.5 (4) |
O11—Cs1—H11A | 13.6 (6) | C12—C13—H13 | 120.3 |
O11—Cs1—H11B | 13.5 (6) | C14—C13—C12 | 119.5 (4) |
H11A—Cs1—H9v | 95.7 (14) | C14—C13—H13 | 120.3 |
H11A—Cs1—H11B | 22.6 (7) | O10—C14—C9 | 119.6 (4) |
H11B—Cs1—H9v | 89.9 (12) | O10—C14—C13 | 118.6 (4) |
C1—O1—Cs1vi | 107.4 (3) | C13—C14—C9 | 121.7 (4) |
Cs1vi—O2—H2 | 155 (5) | ||
Cs1vi—O1—C1—O2 | 8.4 (5) | C1—C2—C3—O3 | 4.2 (7) |
Cs1vi—O1—C1—C2 | −170.6 (4) | C1—C2—C3—C4 | −176.8 (4) |
Cs1vi—O2—C1—O1 | −7.5 (4) | C1—C2—C7—O5 | −1.0 (6) |
Cs1vi—O2—C1—C2 | 171.5 (4) | C1—C2—C7—C6 | 177.2 (4) |
Cs1vii—O3—C3—C2 | 101.5 (4) | C2—C3—C4—C5 | 0.7 (7) |
Cs1vii—O3—C3—C4 | −77.4 (5) | C3—C2—C7—O5 | −178.4 (4) |
Cs1iii—O4—C5—C4 | 95.0 (5) | C3—C2—C7—C6 | −0.1 (7) |
Cs1iii—O4—C5—C6 | −82.8 (5) | C3—C4—C5—O4 | −179.7 (4) |
Cs1—O5—C7—C2 | 145.3 (3) | C3—C4—C5—C6 | −2.0 (7) |
Cs1—O5—C7—C6 | −33.0 (5) | C4—C5—C6—C7 | 2.3 (7) |
Cs1—O6—C8—O7 | 64.5 (5) | C5—C6—C7—O5 | 177.1 (4) |
Cs1—O6—C8—C9 | −114.4 (4) | C5—C6—C7—C2 | −1.2 (7) |
Cs1viii—O8—C10—C9 | 172.7 (3) | C7—C2—C3—O3 | −178.6 (4) |
Cs1viii—O8—C10—C11 | −6.0 (7) | C7—C2—C3—C4 | 0.4 (7) |
Cs1ix—O9—C12—C11 | 73.0 (6) | C8—C9—C10—O8 | 0.9 (7) |
Cs1ix—O9—C12—C13 | −105.8 (5) | C8—C9—C10—C11 | 179.5 (4) |
O1—C1—C2—C3 | 179.0 (4) | C8—C9—C14—O10 | 0.0 (6) |
O1—C1—C2—C7 | 1.8 (7) | C8—C9—C14—C13 | 179.9 (4) |
O2—C1—C2—C3 | 0.0 (7) | C9—C10—C11—C12 | 0.9 (7) |
O2—C1—C2—C7 | −177.2 (4) | C10—C9—C14—O10 | −179.5 (4) |
O3—C3—C4—C5 | 179.6 (4) | C10—C9—C14—C13 | 0.4 (7) |
O4—C5—C6—C7 | −179.9 (4) | C10—C11—C12—O9 | −179.0 (4) |
O6—C8—C9—C10 | −177.9 (4) | C10—C11—C12—C13 | −0.3 (7) |
O6—C8—C9—C14 | 2.7 (7) | C11—C12—C13—C14 | −0.3 (7) |
O7—C8—C9—C10 | 3.2 (7) | C12—C13—C14—O10 | −179.9 (4) |
O7—C8—C9—C14 | −176.3 (4) | C12—C13—C14—C9 | 0.2 (7) |
O8—C10—C11—C12 | 179.6 (4) | C14—C9—C10—O8 | −179.6 (4) |
O9—C12—C13—C14 | 178.4 (4) | C14—C9—C10—C11 | −1.0 (7) |
Symmetry codes: (i) −x+3/2, y−1/2, z; (ii) x−1/2, −y+3/2, −z+1; (iii) −x+2, −y+1, −z+1; (iv) x+1/2, y, −z+3/2; (v) −x+1, y+1/2, −z+3/2; (vi) −x+3/2, y+1/2, z; (vii) x+1/2, −y+3/2, −z+1; (viii) x−1/2, y, −z+3/2; (ix) −x+1, y−1/2, −z+3/2. |
[Mg(H2O)6](C7H5O5)2·2H2O | F(000) = 532 |
Mr = 506.66 | Dx = 1.642 Mg m−3 |
Monoclinic, P21/c | Cu Kα radiation, λ = 1.54184 Å |
a = 7.1116 (2) Å | Cell parameters from 5658 reflections |
b = 20.5162 (5) Å | θ = 3.1–76.6° |
c = 7.0253 (1) Å | µ = 1.63 mm−1 |
β = 91.148 (2)° | T = 100 K |
V = 1024.81 (4) Å3 | Rect. Prism, clear colourless |
Z = 2 | 0.24 × 0.08 × 0.05 mm |
XtaLAB Synergy, Dualflex, HyPix diffractometer | 2071 independent reflections |
Radiation source: micro-focus sealed X-ray tube, PhotonJet (Cu) X-ray Source | 1881 reflections with I > 2σ(I) |
Mirror monochromator | Rint = 0.028 |
Detector resolution: 10.0000 pixels mm-1 | θmax = 76.9°, θmin = 4.3° |
ω scans | h = −6→8 |
Absorption correction: multi-scan (CrysAlis PRO; Rigaku OD, 2019) | k = −23→25 |
Tmin = 0.640, Tmax = 1.000 | l = −8→8 |
8140 measured reflections |
Refinement on F2 | Primary atom site location: iterative |
Least-squares matrix: full | Hydrogen site location: mixed |
R[F2 > 2σ(F2)] = 0.033 | H atoms treated by a mixture of independent and constrained refinement |
wR(F2) = 0.097 | w = 1/[σ2(Fo2) + (0.0602P)2 + 0.284P] where P = (Fo2 + 2Fc2)/3 |
S = 1.06 | (Δ/σ)max = 0.001 |
2071 reflections | Δρmax = 0.26 e Å−3 |
177 parameters | Δρmin = −0.28 e Å−3 |
5 restraints |
Geometry. All esds (except the esd in the dihedral angle between two l.s. planes) are estimated using the full covariance matrix. The cell esds are taken into account individually in the estimation of esds in distances, angles and torsion angles; correlations between esds in cell parameters are only used when they are defined by crystal symmetry. An approximate (isotropic) treatment of cell esds is used for estimating esds involving l.s. planes. |
Refinement. H atoms on O9 and O3 are disordered. O-H distances were fixed at 0.85 and Uiso(H) = 1.5Ueq(O). |
x | y | z | Uiso*/Ueq | Occ. (<1) | |
O8 | 1.71479 (12) | 0.66162 (4) | 0.15757 (13) | 0.0179 (2) | |
O5 | 1.73213 (12) | 0.86375 (4) | 0.18074 (12) | 0.0176 (2) | |
O7 | 1.11098 (12) | 0.65754 (4) | 0.41634 (12) | 0.0180 (2) | |
H7 | 1.032602 | 0.683808 | 0.465819 | 0.027* | |
O6 | 1.40047 (12) | 0.86246 (4) | 0.30979 (12) | 0.0168 (2) | |
H6 | 1.506925 | 0.876217 | 0.273764 | 0.025* | |
O4 | 1.86831 (12) | 0.77075 (4) | 0.09392 (13) | 0.0185 (2) | |
C3 | 1.40804 (16) | 0.79628 (6) | 0.30212 (16) | 0.0144 (3) | |
C1 | 1.73133 (16) | 0.80161 (6) | 0.16438 (16) | 0.0152 (3) | |
C4 | 1.25364 (16) | 0.76152 (6) | 0.36380 (16) | 0.0153 (3) | |
H4 | 1.146379 | 0.783587 | 0.410085 | 0.018* | |
C5 | 1.25836 (16) | 0.69402 (6) | 0.35680 (16) | 0.0148 (3) | |
C2 | 1.56847 (16) | 0.76444 (6) | 0.23129 (16) | 0.0150 (3) | |
C7 | 1.56557 (16) | 0.69574 (6) | 0.22541 (16) | 0.0148 (3) | |
C6 | 1.41314 (17) | 0.66035 (6) | 0.28820 (17) | 0.0162 (3) | |
H6A | 1.414013 | 0.614061 | 0.284605 | 0.019* | |
Mg1 | 1.000000 | 1.000000 | 0.500000 | 0.01447 (16) | |
O1 | 1.04325 (12) | 0.91266 (4) | 0.36968 (13) | 0.0201 (2) | |
H1A | 0.959812 | 0.898440 | 0.294580 | 0.030* | |
H1B | 1.149422 | 0.899340 | 0.340580 | 0.030* | |
O2 | 0.91827 (14) | 1.03805 (5) | 0.24224 (13) | 0.0252 (2) | |
H2A | 0.851720 | 1.018418 | 0.160772 | 0.038* | |
H2B | 0.928300 | 1.076918 | 0.203782 | 0.038* | |
O3 | 1.27979 (14) | 1.03044 (5) | 0.44054 (16) | 0.0250 (2) | |
O9 | 1.68449 (18) | 0.52329 (5) | 0.47527 (15) | 0.0320 (3) | |
H9A | 1.689 (3) | 0.5620 (12) | 0.508 (3) | 0.048* | |
H3A | 1.296 (3) | 1.0700 (13) | 0.434 (3) | 0.048* | |
H3B | 1.385 (5) | 1.0152 (18) | 0.489 (5) | 0.026 (9)* | 0.5 |
H8 | 1.799 (3) | 0.6949 (12) | 0.127 (3) | 0.052 (6)* | |
H9B | 1.741 (5) | 0.523 (2) | 0.364 (2) | 0.062 (14)* | 0.5 |
H9C | 1.569 (4) | 0.510 (3) | 0.496 (8) | 0.061 (15)* | 0.5 |
H3C | 1.298 (8) | 1.021 (3) | 0.323 (4) | 0.071 (16)* | 0.5 |
U11 | U22 | U33 | U12 | U13 | U23 | |
O8 | 0.0138 (4) | 0.0174 (5) | 0.0229 (5) | 0.0009 (3) | 0.0065 (3) | −0.0026 (3) |
O5 | 0.0161 (4) | 0.0178 (5) | 0.0190 (4) | −0.0025 (3) | 0.0028 (3) | −0.0005 (3) |
O7 | 0.0151 (4) | 0.0159 (4) | 0.0232 (5) | −0.0018 (3) | 0.0077 (3) | −0.0021 (3) |
O6 | 0.0147 (4) | 0.0151 (5) | 0.0209 (4) | −0.0004 (3) | 0.0043 (3) | 0.0004 (3) |
O4 | 0.0141 (4) | 0.0209 (5) | 0.0208 (4) | −0.0002 (3) | 0.0052 (3) | 0.0001 (3) |
C3 | 0.0147 (6) | 0.0164 (6) | 0.0121 (5) | 0.0000 (4) | 0.0002 (4) | −0.0004 (4) |
C1 | 0.0139 (6) | 0.0192 (6) | 0.0123 (5) | −0.0003 (4) | −0.0004 (4) | 0.0002 (4) |
C4 | 0.0133 (6) | 0.0180 (6) | 0.0146 (5) | 0.0008 (4) | 0.0021 (4) | −0.0011 (4) |
C5 | 0.0131 (5) | 0.0189 (6) | 0.0124 (5) | −0.0021 (4) | 0.0010 (4) | 0.0000 (4) |
C2 | 0.0137 (6) | 0.0183 (7) | 0.0130 (5) | −0.0002 (4) | 0.0016 (4) | −0.0001 (4) |
C7 | 0.0126 (5) | 0.0191 (6) | 0.0127 (5) | 0.0015 (4) | 0.0013 (4) | −0.0013 (4) |
C6 | 0.0173 (6) | 0.0148 (6) | 0.0165 (6) | 0.0006 (4) | 0.0021 (5) | −0.0011 (4) |
Mg1 | 0.0155 (3) | 0.0119 (3) | 0.0161 (3) | −0.00001 (19) | 0.0027 (2) | −0.0001 (2) |
O1 | 0.0152 (4) | 0.0180 (5) | 0.0271 (5) | 0.0016 (3) | 0.0000 (3) | −0.0073 (4) |
O2 | 0.0370 (6) | 0.0190 (5) | 0.0196 (5) | 0.0059 (4) | −0.0024 (4) | 0.0025 (4) |
O3 | 0.0197 (5) | 0.0152 (5) | 0.0404 (6) | −0.0018 (4) | 0.0072 (4) | 0.0013 (4) |
O9 | 0.0516 (7) | 0.0187 (5) | 0.0263 (5) | 0.0054 (5) | 0.0161 (5) | 0.0004 (4) |
O8—C7 | 1.3652 (14) | Mg1—O1 | 2.0384 (8) |
O8—H8 | 0.94 (2) | Mg1—O1i | 2.0384 (8) |
O5—C1 | 1.2802 (16) | Mg1—O2i | 2.0455 (9) |
O7—H7 | 0.8543 | Mg1—O2 | 2.0455 (9) |
O7—C5 | 1.3606 (14) | Mg1—O3 | 2.1347 (10) |
O6—H6 | 0.8512 | Mg1—O3i | 2.1347 (10) |
O6—C3 | 1.3598 (16) | O1—H1A | 0.8385 |
O4—C1 | 1.2705 (15) | O1—H1B | 0.8323 |
C3—C4 | 1.3860 (17) | O2—H2A | 0.8384 |
C3—C2 | 1.4139 (16) | O2—H2B | 0.8455 |
C1—C2 | 1.4716 (16) | O3—H3A | 0.82 (3) |
C4—H4 | 0.9500 | O3—H3B | 0.87 (4) |
C4—C5 | 1.3861 (18) | O3—H3C | 0.86 (2) |
C5—C6 | 1.3938 (17) | O9—H9A | 0.83 (2) |
C2—C7 | 1.4100 (19) | O9—H9B | 0.886 (17) |
C7—C6 | 1.3843 (17) | O9—H9C | 0.876 (19) |
C6—H6A | 0.9500 | ||
C7—O8—H8 | 102.3 (14) | O1—Mg1—O2 | 88.89 (4) |
C5—O7—H7 | 106.9 | O1i—Mg1—O2i | 88.89 (4) |
C3—O6—H6 | 106.5 | O1—Mg1—O3 | 91.13 (4) |
O6—C3—C4 | 117.98 (10) | O1i—Mg1—O3i | 91.13 (4) |
O6—C3—C2 | 120.54 (11) | O1i—Mg1—O3 | 88.87 (4) |
C4—C3—C2 | 121.48 (12) | O1—Mg1—O3i | 88.87 (4) |
O5—C1—C2 | 119.31 (11) | O2i—Mg1—O2 | 180.0 |
O4—C1—O5 | 121.95 (11) | O2—Mg1—O3i | 92.03 (4) |
O4—C1—C2 | 118.73 (11) | O2—Mg1—O3 | 87.97 (4) |
C3—C4—H4 | 120.6 | O2i—Mg1—O3 | 92.03 (4) |
C5—C4—C3 | 118.89 (11) | O2i—Mg1—O3i | 87.97 (4) |
C5—C4—H4 | 120.6 | O3—Mg1—O3i | 180.0 |
O7—C5—C4 | 121.29 (10) | Mg1—O1—H1A | 118.5 |
O7—C5—C6 | 116.88 (11) | Mg1—O1—H1B | 123.0 |
C4—C5—C6 | 121.83 (11) | H1A—O1—H1B | 111.4 |
C3—C2—C1 | 121.25 (12) | Mg1—O2—H2A | 124.6 |
C7—C2—C3 | 117.44 (11) | Mg1—O2—H2B | 128.2 |
C7—C2—C1 | 121.31 (10) | H2A—O2—H2B | 106.6 |
O8—C7—C2 | 120.78 (10) | Mg1—O3—H3A | 115.7 (16) |
O8—C7—C6 | 117.48 (12) | Mg1—O3—H3B | 128 (2) |
C6—C7—C2 | 121.74 (11) | Mg1—O3—H3C | 107 (4) |
C5—C6—H6A | 120.7 | H3A—O3—H3B | 105 (3) |
C7—C6—C5 | 118.63 (12) | H3A—O3—H3C | 98 (4) |
C7—C6—H6A | 120.7 | H3B—O3—H3C | 99 (4) |
O1—Mg1—O1i | 180.0 | H9A—O9—H9B | 103 (3) |
O1—Mg1—O2i | 91.11 (4) | H9A—O9—H9C | 106 (4) |
O1i—Mg1—O2 | 91.11 (4) | H9B—O9—H9C | 126 (4) |
O8—C7—C6—C5 | −179.52 (10) | C3—C4—C5—C6 | −0.52 (17) |
O5—C1—C2—C3 | 4.04 (16) | C3—C2—C7—O8 | 179.53 (10) |
O5—C1—C2—C7 | −176.63 (10) | C3—C2—C7—C6 | −0.71 (17) |
O7—C5—C6—C7 | 179.69 (10) | C1—C2—C7—O8 | 0.17 (17) |
O6—C3—C4—C5 | 179.88 (10) | C1—C2—C7—C6 | 179.93 (10) |
O6—C3—C2—C1 | 0.10 (16) | C4—C3—C2—C1 | 179.44 (10) |
O6—C3—C2—C7 | −179.26 (10) | C4—C3—C2—C7 | 0.08 (17) |
O4—C1—C2—C3 | −176.79 (10) | C4—C5—C6—C7 | −0.09 (17) |
O4—C1—C2—C7 | 2.54 (17) | C2—C3—C4—C5 | 0.52 (17) |
C3—C4—C5—O7 | 179.71 (10) | C2—C7—C6—C5 | 0.72 (17) |
Symmetry code: (i) −x+2, −y+2, −z+1. |
CH6N3+·C7H5O5−·H2O | F(000) = 520 |
Mr = 247.21 | Dx = 1.573 Mg m−3 |
Monoclinic, Ia | Cu Kα radiation, λ = 1.54184 Å |
a = 6.9815 (2) Å | Cell parameters from 2434 reflections |
b = 20.1684 (6) Å | θ = 6.7–76.7° |
c = 7.4156 (2) Å | µ = 1.18 mm−1 |
β = 91.627 (2)° | T = 100 K |
V = 1043.74 (5) Å3 | Needle, clear colourless |
Z = 4 | 0.44 × 0.11 × 0.07 mm |
XtaLAB Synergy, Dualflex, HyPix diffractometer | 1421 independent reflections |
Radiation source: micro-focus sealed X-ray tube, PhotonJet (Cu) X-ray Source | 1383 reflections with I > 2σ(I) |
Mirror monochromator | Rint = 0.045 |
Detector resolution: 10.0000 pixels mm-1 | θmax = 77.1°, θmin = 4.4° |
ω scans | h = −8→5 |
Absorption correction: multi-scan (CrysAlis PRO; Rigaku OD, 2018) | k = −25→24 |
Tmin = 0.566, Tmax = 1.000 | l = −9→8 |
3719 measured reflections |
Refinement on F2 | Hydrogen site location: mixed |
Least-squares matrix: full | H atoms treated by a mixture of independent and constrained refinement |
R[F2 > 2σ(F2)] = 0.049 | w = 1/[σ2(Fo2) + (0.1068P)2 + 0.3642P] where P = (Fo2 + 2Fc2)/3 |
wR(F2) = 0.138 | (Δ/σ)max < 0.001 |
S = 1.07 | Δρmax = 0.30 e Å−3 |
1421 reflections | Δρmin = −0.29 e Å−3 |
181 parameters | Absolute structure: Flack x determined using 305 quotients [(I+)-(I-)]/[(I+)+(I-)] (Parsons et al., 2013) |
17 restraints | Absolute structure parameter: 0.3 (3) |
Primary atom site location: dual |
Geometry. All esds (except the esd in the dihedral angle between two l.s. planes) are estimated using the full covariance matrix. The cell esds are taken into account individually in the estimation of esds in distances, angles and torsion angles; correlations between esds in cell parameters are only used when they are defined by crystal symmetry. An approximate (isotropic) treatment of cell esds is used for estimating esds involving l.s. planes. |
Refinement. N-H distances were restrained to 0.87 and O-H distances to 0.85 . Where applicable, Uiso(H) = 1.5Ueq(O) and 1.5Ueq(N). |
x | y | z | Uiso*/Ueq | ||
O1 | 0.4308 (3) | 0.62361 (11) | 0.3397 (3) | 0.0223 (5) | |
O2 | 0.5477 (4) | 0.62300 (10) | 0.6715 (3) | 0.0224 (5) | |
O3 | 0.6953 (4) | 0.41462 (10) | 0.9425 (3) | 0.0212 (5) | |
O4 | 0.4554 (4) | 0.41833 (11) | 0.3462 (3) | 0.0218 (5) | |
O5 | 0.3839 (4) | 0.52713 (12) | 0.1970 (3) | 0.0242 (6) | |
C2 | 0.4342 (4) | 0.56044 (16) | 0.3368 (4) | 0.0200 (6) | |
C3 | 0.5022 (5) | 0.52317 (14) | 0.4971 (5) | 0.0193 (6) | |
C4 | 0.5586 (4) | 0.55554 (14) | 0.6590 (4) | 0.0191 (6) | |
C5 | 0.6259 (5) | 0.52107 (15) | 0.8092 (4) | 0.0185 (6) | |
H5 | 0.665997 | 0.543408 | 0.913327 | 0.028* | |
C6 | 0.6323 (5) | 0.45217 (16) | 0.8007 (4) | 0.0190 (6) | |
C7 | 0.5725 (5) | 0.41800 (15) | 0.6458 (5) | 0.0202 (7) | |
H7 | 0.575359 | 0.371904 | 0.643586 | 0.030* | |
H2 | 0.495 (7) | 0.632 (2) | 0.568 (4) | 0.030* | |
H3 | 0.748 (7) | 0.439 (2) | 1.029 (5) | 0.030* | |
H4 | 0.416 (7) | 0.448 (2) | 0.269 (5) | 0.030* | |
H1A | 0.187 (4) | 0.276 (2) | 0.438 (7) | 0.030* | |
H1B | 0.320 (7) | 0.3311 (12) | 0.400 (7) | 0.030* | |
H2A | 0.644 (7) | 0.3090 (13) | 0.366 (6) | 0.030* | |
H2B | 0.729 (5) | 0.245 (2) | 0.431 (7) | 0.030* | |
H3A | 0.308 (4) | 0.175 (2) | 0.515 (7) | 0.030* | |
H3B | 0.517 (5) | 0.1576 (19) | 0.494 (7) | 0.030* | |
C8 | 0.5092 (5) | 0.45288 (14) | 0.4960 (4) | 0.0189 (6) | |
O6 | 0.4898 (4) | 0.69111 (11) | 0.0091 (4) | 0.0251 (5) | |
H6A | 0.481686 | 0.659926 | 0.082488 | 0.038* | |
H6B | 0.486336 | 0.677176 | −0.096742 | 0.038* | |
N1 | 0.3038 (4) | 0.28788 (14) | 0.4117 (4) | 0.0256 (6) | |
N2 | 0.6291 (5) | 0.26755 (15) | 0.3964 (4) | 0.0252 (6) | |
N3 | 0.4242 (5) | 0.18578 (13) | 0.4903 (4) | 0.0253 (6) | |
C1 | 0.4529 (5) | 0.24713 (16) | 0.4329 (4) | 0.0210 (7) |
U11 | U22 | U33 | U12 | U13 | U23 | |
O1 | 0.0287 (12) | 0.0142 (10) | 0.0240 (12) | 0.0001 (9) | 0.0005 (9) | 0.0016 (8) |
O2 | 0.0294 (12) | 0.0135 (10) | 0.0242 (11) | −0.0002 (9) | −0.0022 (9) | 0.0005 (9) |
O3 | 0.0281 (12) | 0.0151 (10) | 0.0202 (10) | −0.0005 (9) | −0.0044 (9) | 0.0028 (8) |
O4 | 0.0288 (13) | 0.0160 (10) | 0.0205 (11) | −0.0003 (9) | −0.0045 (9) | 0.0000 (8) |
O5 | 0.0312 (13) | 0.0200 (12) | 0.0210 (12) | 0.0010 (9) | −0.0032 (10) | 0.0005 (8) |
C2 | 0.0216 (14) | 0.0172 (13) | 0.0214 (15) | −0.0018 (13) | 0.0025 (12) | 0.0005 (11) |
C3 | 0.0205 (14) | 0.0161 (13) | 0.0213 (14) | −0.0011 (13) | 0.0013 (11) | 0.0028 (12) |
C4 | 0.0173 (13) | 0.0154 (14) | 0.0248 (15) | −0.0008 (12) | 0.0015 (11) | −0.0008 (12) |
C5 | 0.0215 (14) | 0.0156 (15) | 0.0184 (14) | −0.0027 (12) | 0.0010 (12) | 0.0005 (11) |
C6 | 0.0201 (14) | 0.0170 (14) | 0.0196 (14) | 0.0000 (11) | −0.0009 (11) | 0.0003 (11) |
C7 | 0.0228 (16) | 0.0149 (13) | 0.0227 (16) | 0.0002 (12) | −0.0008 (12) | −0.0001 (11) |
C8 | 0.0191 (14) | 0.0179 (13) | 0.0196 (13) | −0.0011 (12) | 0.0011 (11) | −0.0027 (13) |
O6 | 0.0302 (11) | 0.0214 (10) | 0.0236 (10) | −0.0044 (10) | −0.0002 (9) | 0.0006 (10) |
N1 | 0.0278 (15) | 0.0149 (13) | 0.0343 (15) | 0.0018 (11) | 0.0016 (12) | 0.0008 (11) |
N2 | 0.0263 (14) | 0.0190 (13) | 0.0303 (14) | −0.0004 (11) | 0.0012 (11) | 0.0014 (11) |
N3 | 0.0268 (14) | 0.0158 (12) | 0.0332 (15) | 0.0008 (11) | 0.0021 (12) | 0.0024 (11) |
C1 | 0.0262 (16) | 0.0187 (15) | 0.0181 (14) | 0.0017 (11) | −0.0003 (12) | −0.0027 (11) |
O1—C2 | 1.274 (4) | C6—C7 | 1.393 (5) |
O2—C4 | 1.366 (4) | C7—H7 | 0.9300 |
O2—H2 | 0.86 (2) | C7—C8 | 1.377 (5) |
O3—C6 | 1.359 (4) | O6—H6A | 0.8346 |
O3—H3 | 0.88 (2) | O6—H6B | 0.8334 |
O4—H4 | 0.86 (2) | N1—H1A | 0.88 (2) |
O4—C8 | 1.355 (4) | N1—H1B | 0.88 (2) |
O5—C2 | 1.276 (4) | N1—C1 | 1.332 (4) |
C2—C3 | 1.473 (5) | N2—H2A | 0.87 (2) |
C3—C4 | 1.413 (5) | N2—H2B | 0.87 (2) |
C3—C8 | 1.419 (4) | N2—C1 | 1.332 (4) |
C4—C5 | 1.384 (5) | N3—H3A | 0.87 (2) |
C5—H5 | 0.9300 | N3—H3B | 0.86 (2) |
C5—C6 | 1.392 (4) | N3—C1 | 1.326 (4) |
C4—O2—H2 | 100 (3) | C8—C7—C6 | 119.6 (3) |
C6—O3—H3 | 112 (3) | C8—C7—H7 | 120.2 |
C8—O4—H4 | 105 (3) | O4—C8—C3 | 120.7 (3) |
O1—C2—O5 | 122.3 (3) | O4—C8—C7 | 118.3 (3) |
O1—C2—C3 | 120.2 (3) | C7—C8—C3 | 121.1 (3) |
O5—C2—C3 | 117.5 (3) | H6A—O6—H6B | 111.1 |
C4—C3—C2 | 121.7 (3) | H1A—N1—H1B | 114 (4) |
C4—C3—C8 | 117.2 (3) | C1—N1—H1A | 123 (3) |
C8—C3—C2 | 121.0 (3) | C1—N1—H1B | 121 (3) |
O2—C4—C3 | 120.2 (3) | H2A—N2—H2B | 119 (4) |
O2—C4—C5 | 117.6 (3) | C1—N2—H2A | 118 (3) |
C5—C4—C3 | 122.2 (3) | C1—N2—H2B | 121 (3) |
C4—C5—H5 | 120.8 | H3A—N3—H3B | 122 (4) |
C4—C5—C6 | 118.4 (3) | C1—N3—H3A | 117 (3) |
C6—C5—H5 | 120.8 | C1—N3—H3B | 120 (3) |
O3—C6—C5 | 122.1 (3) | N2—C1—N1 | 120.6 (3) |
O3—C6—C7 | 116.4 (3) | N3—C1—N1 | 119.3 (3) |
C5—C6—C7 | 121.5 (3) | N3—C1—N2 | 120.2 (3) |
C6—C7—H7 | 120.2 | ||
O1—C2—C3—C4 | 2.3 (5) | C3—C4—C5—C6 | −2.0 (5) |
O1—C2—C3—C8 | −179.2 (3) | C4—C3—C8—O4 | 179.3 (3) |
O2—C4—C5—C6 | 178.0 (3) | C4—C3—C8—C7 | −1.3 (5) |
O3—C6—C7—C8 | −179.2 (3) | C4—C5—C6—O3 | −179.6 (3) |
O5—C2—C3—C4 | −179.2 (3) | C4—C5—C6—C7 | −0.1 (5) |
O5—C2—C3—C8 | −0.7 (5) | C5—C6—C7—C8 | 1.3 (5) |
C2—C3—C4—O2 | 1.2 (5) | C6—C7—C8—O4 | 178.8 (3) |
C2—C3—C4—C5 | −178.8 (3) | C6—C7—C8—C3 | −0.6 (5) |
C2—C3—C8—O4 | 0.7 (5) | C8—C3—C4—O2 | −177.3 (3) |
C2—C3—C8—C7 | −179.9 (3) | C8—C3—C4—C5 | 2.6 (5) |
[Ca2(C7H5O5)2(H2O)10](C7H5O5)2·4H2O | Z = 1 |
Mr = 1008.82 | F(000) = 528 |
Triclinic, P1 | Dx = 1.684 Mg m−3 |
a = 6.9836 (2) Å | Cu Kα radiation, λ = 1.54184 Å |
b = 9.9150 (3) Å | Cell parameters from 6873 reflections |
c = 14.4214 (4) Å | θ = 3.1–77.3° |
α = 88.420 (2)° | µ = 3.57 mm−1 |
β = 86.377 (2)° | T = 100 K |
γ = 86.733 (3)° | Rect. Prism, clear colourless |
V = 994.67 (5) Å3 | 0.52 × 0.10 × 0.05 mm |
XtaLAB Synergy, Dualflex, HyPix diffractometer | 4081 independent reflections |
Radiation source: micro-focus sealed X-ray tube, PhotonJet (Cu) X-ray Source | 3692 reflections with I > 2σ(I) |
Mirror monochromator | Rint = 0.047 |
Detector resolution: 10.0000 pixels mm-1 | θmax = 77.5°, θmin = 3.1° |
ω scans | h = −8→8 |
Absorption correction: multi-scan (CrysAlis PRO; Rigaku OD, 2018) | k = −12→12 |
Tmin = 0.564, Tmax = 1.000 | l = −18→17 |
11872 measured reflections |
Refinement on F2 | Primary atom site location: dual |
Least-squares matrix: full | Hydrogen site location: mixed |
R[F2 > 2σ(F2)] = 0.039 | H atoms treated by a mixture of independent and constrained refinement |
wR(F2) = 0.114 | w = 1/[σ2(Fo2) + (0.0779P)2 + 0.010P] where P = (Fo2 + 2Fc2)/3 |
S = 1.05 | (Δ/σ)max < 0.001 |
4081 reflections | Δρmax = 0.45 e Å−3 |
349 parameters | Δρmin = −0.49 e Å−3 |
15 restraints |
Geometry. All esds (except the esd in the dihedral angle between two l.s. planes) are estimated using the full covariance matrix. The cell esds are taken into account individually in the estimation of esds in distances, angles and torsion angles; correlations between esds in cell parameters are only used when they are defined by crystal symmetry. An approximate (isotropic) treatment of cell esds is used for estimating esds involving l.s. planes. |
Refinement. O-H distances were fixed at 0.85 and Uiso(H) = 1.5Ueq(O). |
x | y | z | Uiso*/Ueq | ||
Ca1 | 0.51290 (4) | 0.32688 (3) | 0.56735 (2) | 0.01256 (12) | |
O2 | 0.48063 (17) | 0.70830 (12) | 0.60018 (8) | 0.0154 (3) | |
O1 | 0.46081 (17) | 0.50697 (12) | 0.67265 (8) | 0.0152 (2) | |
O5 | 0.52426 (18) | 0.47620 (12) | 0.84125 (8) | 0.0164 (3) | |
O4 | 0.67438 (19) | 0.85685 (13) | 1.00843 (8) | 0.0193 (3) | |
O3 | 0.55015 (18) | 0.91411 (12) | 0.69122 (8) | 0.0166 (3) | |
O11 | 0.27313 (16) | 0.50103 (12) | 0.49882 (8) | 0.0139 (2) | |
O13 | 0.6422 (2) | 0.09376 (15) | 0.53341 (10) | 0.0302 (3) | |
O12 | 0.20103 (18) | 0.23333 (13) | 0.57472 (9) | 0.0199 (3) | |
O14 | 0.45534 (19) | 0.20041 (13) | 0.71627 (9) | 0.0182 (3) | |
O15 | 0.8094 (2) | 0.30334 (16) | 0.65200 (10) | 0.0284 (3) | |
C8 | 0.4898 (2) | 0.63276 (17) | 0.67278 (11) | 0.0131 (3) | |
C9 | 0.5377 (2) | 0.69150 (16) | 0.76070 (11) | 0.0128 (3) | |
C10 | 0.5550 (2) | 0.61060 (16) | 0.84242 (11) | 0.0133 (3) | |
C11 | 0.5994 (2) | 0.66419 (17) | 0.92539 (11) | 0.0151 (3) | |
H11 | 0.609132 | 0.609537 | 0.978526 | 0.018* | |
C12 | 0.6293 (2) | 0.80182 (17) | 0.92777 (11) | 0.0148 (3) | |
C13 | 0.6123 (2) | 0.88635 (17) | 0.84962 (11) | 0.0147 (3) | |
H13 | 0.630682 | 0.978248 | 0.852604 | 0.018* | |
C14 | 0.5673 (2) | 0.83041 (17) | 0.76748 (11) | 0.0133 (3) | |
O6 | −0.02274 (18) | 0.61025 (13) | 0.62245 (8) | 0.0184 (3) | |
O7 | −0.0112 (2) | 0.82434 (13) | 0.57125 (9) | 0.0249 (3) | |
O8 | 0.05680 (19) | 1.00971 (13) | 0.67739 (9) | 0.0208 (3) | |
O9 | 0.18087 (18) | 0.89601 (13) | 0.99009 (8) | 0.0187 (3) | |
O10 | 0.02824 (18) | 0.55093 (12) | 0.79369 (9) | 0.0180 (3) | |
C1 | 0.0001 (2) | 0.73454 (18) | 0.63625 (12) | 0.0166 (3) | |
H5 | 0.494 (3) | 0.463 (3) | 0.7848 (12) | 0.025* | |
H4 | 0.708 (3) | 0.801 (2) | 1.0477 (15) | 0.025* | |
H3 | 0.516 (4) | 0.858 (3) | 0.6475 (18) | 0.025* | |
H11A | 0.207 (3) | 0.466 (2) | 0.4607 (15) | 0.025* | |
H11B | 0.202 (3) | 0.533 (2) | 0.5415 (15) | 0.025* | |
H13A | 0.682 (4) | 0.050 (3) | 0.5800 (19) | 0.025* | |
H13B | 0.750 (4) | 0.114 (3) | 0.4986 (18) | 0.025* | |
H12A | 0.192 (4) | 0.166 (2) | 0.6086 (16) | 0.025* | |
H12B | 0.143 (3) | 0.212 (2) | 0.5268 (14) | 0.025* | |
H14A | 0.368 (4) | 0.227 (3) | 0.7613 (18) | 0.025* | |
H14B | 0.473 (4) | 0.120 (3) | 0.7200 (17) | 0.025* | |
H15A | 0.792 (3) | 0.262 (2) | 0.7054 (13) | 0.025* | |
H15B | 0.924 (3) | 0.290 (2) | 0.6292 (16) | 0.025* | |
H8 | 0.026 (3) | 0.966 (2) | 0.6314 (14) | 0.025* | |
H9 | 0.218 (3) | 0.9732 (18) | 0.9883 (17) | 0.025* | |
H10 | 0.002 (3) | 0.544 (2) | 0.7376 (12) | 0.025* | |
O16 | 0.1900 (2) | 0.30055 (13) | 0.85392 (9) | 0.0222 (3) | |
H16A | 0.076 (3) | 0.293 (3) | 0.8505 (19) | 0.033* | |
H16B | 0.209 (4) | 0.3809 (18) | 0.8499 (19) | 0.033* | |
O17 | 0.8099 (2) | 0.26717 (16) | 0.85477 (11) | 0.0296 (3) | |
H17A | 0.793 (5) | 0.227 (3) | 0.9025 (15) | 0.044* | |
H17B | 0.733 (4) | 0.333 (2) | 0.863 (2) | 0.044* | |
C2 | 0.0432 (2) | 0.77708 (17) | 0.72923 (11) | 0.0138 (3) | |
C3 | 0.0725 (2) | 0.91413 (17) | 0.74667 (11) | 0.0145 (3) | |
C4 | 0.1162 (2) | 0.95481 (17) | 0.83324 (12) | 0.0153 (3) | |
H4A | 0.133999 | 1.045285 | 0.843577 | 0.018* | |
C5 | 0.1332 (2) | 0.85853 (17) | 0.90508 (11) | 0.0145 (3) | |
C6 | 0.0999 (2) | 0.72358 (17) | 0.89222 (11) | 0.0142 (3) | |
H6 | 0.106843 | 0.660980 | 0.941280 | 0.017* | |
C7 | 0.0562 (2) | 0.68406 (16) | 0.80486 (12) | 0.0134 (3) |
U11 | U22 | U33 | U12 | U13 | U23 | |
Ca1 | 0.01605 (19) | 0.01019 (18) | 0.01172 (18) | −0.00258 (12) | −0.00202 (12) | 0.00095 (12) |
O2 | 0.0221 (6) | 0.0126 (6) | 0.0115 (5) | 0.0000 (5) | −0.0022 (4) | 0.0002 (4) |
O1 | 0.0204 (6) | 0.0114 (6) | 0.0143 (5) | −0.0032 (4) | −0.0037 (4) | −0.0004 (4) |
O5 | 0.0248 (6) | 0.0111 (6) | 0.0143 (6) | −0.0056 (5) | −0.0046 (5) | 0.0012 (4) |
O4 | 0.0271 (6) | 0.0179 (6) | 0.0139 (6) | −0.0008 (5) | −0.0078 (5) | −0.0032 (5) |
O3 | 0.0264 (6) | 0.0100 (6) | 0.0136 (6) | −0.0019 (5) | −0.0040 (5) | 0.0018 (4) |
O11 | 0.0159 (6) | 0.0143 (6) | 0.0118 (5) | −0.0027 (4) | −0.0017 (4) | −0.0024 (4) |
O13 | 0.0499 (9) | 0.0205 (7) | 0.0181 (7) | 0.0083 (6) | 0.0025 (6) | 0.0036 (5) |
O12 | 0.0236 (6) | 0.0209 (6) | 0.0162 (6) | −0.0086 (5) | −0.0067 (5) | 0.0055 (5) |
O14 | 0.0248 (6) | 0.0137 (6) | 0.0157 (6) | −0.0005 (5) | −0.0009 (5) | 0.0023 (5) |
O15 | 0.0212 (7) | 0.0410 (9) | 0.0218 (7) | 0.0022 (6) | −0.0010 (5) | 0.0115 (6) |
C8 | 0.0120 (7) | 0.0139 (7) | 0.0133 (7) | 0.0003 (6) | −0.0006 (6) | −0.0002 (6) |
C9 | 0.0125 (7) | 0.0125 (8) | 0.0136 (8) | −0.0011 (6) | −0.0004 (6) | −0.0009 (6) |
C10 | 0.0125 (7) | 0.0114 (7) | 0.0158 (8) | −0.0009 (6) | −0.0003 (6) | 0.0011 (6) |
C11 | 0.0171 (8) | 0.0157 (8) | 0.0127 (7) | −0.0023 (6) | −0.0023 (6) | 0.0015 (6) |
C12 | 0.0145 (7) | 0.0169 (8) | 0.0131 (7) | 0.0002 (6) | −0.0012 (6) | −0.0036 (6) |
C13 | 0.0170 (8) | 0.0108 (7) | 0.0164 (8) | −0.0008 (6) | −0.0021 (6) | −0.0012 (6) |
C14 | 0.0136 (7) | 0.0125 (7) | 0.0136 (7) | 0.0002 (6) | −0.0003 (6) | 0.0008 (6) |
O6 | 0.0211 (6) | 0.0180 (6) | 0.0166 (6) | −0.0002 (5) | −0.0044 (5) | −0.0052 (5) |
O7 | 0.0385 (8) | 0.0222 (7) | 0.0146 (6) | 0.0008 (6) | −0.0089 (5) | 0.0008 (5) |
O8 | 0.0298 (7) | 0.0171 (6) | 0.0165 (6) | −0.0075 (5) | −0.0073 (5) | 0.0055 (5) |
O9 | 0.0265 (6) | 0.0169 (6) | 0.0136 (6) | −0.0024 (5) | −0.0050 (5) | −0.0029 (5) |
O10 | 0.0275 (7) | 0.0110 (6) | 0.0159 (6) | −0.0012 (5) | −0.0039 (5) | −0.0015 (4) |
C1 | 0.0154 (7) | 0.0177 (8) | 0.0168 (8) | 0.0011 (6) | −0.0023 (6) | −0.0021 (6) |
O16 | 0.0264 (7) | 0.0123 (6) | 0.0274 (7) | −0.0029 (5) | 0.0036 (5) | 0.0014 (5) |
O17 | 0.0330 (8) | 0.0251 (7) | 0.0312 (8) | 0.0056 (6) | −0.0119 (6) | −0.0012 (6) |
C2 | 0.0134 (7) | 0.0149 (8) | 0.0133 (8) | −0.0006 (6) | −0.0013 (6) | −0.0004 (6) |
C3 | 0.0141 (7) | 0.0148 (8) | 0.0147 (7) | −0.0019 (6) | −0.0010 (6) | 0.0024 (6) |
C4 | 0.0167 (8) | 0.0126 (8) | 0.0167 (8) | −0.0031 (6) | −0.0012 (6) | 0.0007 (6) |
C5 | 0.0134 (7) | 0.0162 (8) | 0.0141 (8) | −0.0013 (6) | −0.0006 (6) | −0.0022 (6) |
C6 | 0.0159 (8) | 0.0138 (8) | 0.0127 (7) | 0.0002 (6) | −0.0024 (6) | 0.0015 (6) |
C7 | 0.0137 (7) | 0.0091 (7) | 0.0171 (8) | 0.0002 (6) | 0.0001 (6) | 0.0003 (6) |
Ca1—O2i | 2.4479 (12) | C9—C14 | 1.411 (2) |
Ca1—O1 | 2.3732 (12) | C10—C11 | 1.382 (2) |
Ca1—O11 | 2.5588 (12) | C11—H11 | 0.9300 |
Ca1—O11i | 2.4648 (12) | C11—C12 | 1.394 (2) |
Ca1—O13 | 2.4832 (14) | C12—C13 | 1.393 (2) |
Ca1—O12 | 2.4106 (13) | C13—H13 | 0.9300 |
Ca1—O14 | 2.4792 (12) | C13—C14 | 1.383 (2) |
Ca1—O15 | 2.4661 (14) | O6—C1 | 1.274 (2) |
Ca1—H13B | 2.77 (3) | O7—C1 | 1.278 (2) |
O2—C8 | 1.273 (2) | O8—H8 | 0.848 (17) |
O1—C8 | 1.275 (2) | O8—C3 | 1.363 (2) |
O5—C10 | 1.362 (2) | O9—H9 | 0.821 (17) |
O5—H5 | 0.870 (16) | O9—C5 | 1.358 (2) |
O4—C12 | 1.360 (2) | O10—H10 | 0.846 (17) |
O4—H4 | 0.819 (17) | O10—C7 | 1.361 (2) |
O3—C14 | 1.367 (2) | C1—C2 | 1.471 (2) |
O3—H3 | 0.90 (3) | O16—H16A | 0.811 (17) |
O11—H11A | 0.833 (17) | O16—H16B | 0.815 (17) |
O11—H11B | 0.824 (17) | O17—H17A | 0.792 (18) |
O13—H13A | 0.84 (3) | O17—H17B | 0.830 (18) |
O13—H13B | 0.91 (3) | C2—C3 | 1.417 (2) |
O12—H12A | 0.815 (17) | C2—C7 | 1.413 (2) |
O12—H12B | 0.857 (17) | C3—C4 | 1.380 (2) |
O14—H14A | 0.90 (3) | C4—H4A | 0.9300 |
O14—H14B | 0.80 (3) | C4—C5 | 1.395 (2) |
O15—H15A | 0.869 (16) | C5—C6 | 1.390 (2) |
O15—H15B | 0.850 (17) | C6—H6 | 0.9300 |
C8—C9 | 1.475 (2) | C6—C7 | 1.387 (2) |
C9—C10 | 1.415 (2) | ||
O2i—Ca1—O11i | 76.42 (4) | Ca1—O14—H14A | 124.1 (16) |
O2i—Ca1—O11 | 72.39 (4) | Ca1—O14—H14B | 121.6 (18) |
O2i—Ca1—O13 | 70.54 (4) | H14A—O14—H14B | 108 (2) |
O2i—Ca1—O14 | 139.79 (4) | Ca1—O15—H15A | 112.0 (17) |
O2i—Ca1—O15 | 121.18 (5) | Ca1—O15—H15B | 127.5 (17) |
O2i—Ca1—H13B | 63.2 (5) | H15A—O15—H15B | 112 (2) |
O1—Ca1—O2i | 138.78 (4) | O2—C8—O1 | 122.56 (15) |
O1—Ca1—O11i | 76.55 (4) | O2—C8—C9 | 119.29 (15) |
O1—Ca1—O11 | 72.06 (4) | O1—C8—C9 | 118.14 (14) |
O1—Ca1—O13 | 149.58 (5) | C10—C9—C8 | 121.22 (15) |
O1—Ca1—O12 | 101.60 (4) | C14—C9—C8 | 121.79 (15) |
O1—Ca1—O14 | 79.04 (4) | C14—C9—C10 | 116.98 (15) |
O1—Ca1—O15 | 78.96 (5) | O5—C10—C9 | 120.03 (15) |
O1—Ca1—H13B | 148.7 (5) | O5—C10—C11 | 118.05 (14) |
O11i—Ca1—O11 | 78.22 (4) | C11—C10—C9 | 121.91 (15) |
O11i—Ca1—O13 | 112.07 (5) | C10—C11—H11 | 120.7 |
O11i—Ca1—O14 | 138.47 (4) | C10—C11—C12 | 118.64 (15) |
O11i—Ca1—O15 | 73.10 (4) | C12—C11—H11 | 120.7 |
O11i—Ca1—H13B | 93.2 (6) | O4—C12—C11 | 119.77 (15) |
O11—Ca1—H13B | 135.5 (5) | O4—C12—C13 | 118.40 (15) |
O13—Ca1—O11 | 137.37 (5) | C13—C12—C11 | 121.82 (15) |
O13—Ca1—H13B | 18.8 (5) | C12—C13—H13 | 120.8 |
O12—Ca1—O2i | 86.08 (4) | C14—C13—C12 | 118.45 (15) |
O12—Ca1—O11i | 148.36 (4) | C14—C13—H13 | 120.8 |
O12—Ca1—O11 | 71.38 (4) | O3—C14—C9 | 119.74 (15) |
O12—Ca1—O13 | 85.75 (5) | O3—C14—C13 | 118.07 (15) |
O12—Ca1—O14 | 69.56 (4) | C13—C14—C9 | 122.19 (15) |
O12—Ca1—O15 | 138.18 (5) | C3—O8—H8 | 103.9 (17) |
O12—Ca1—H13B | 102.2 (6) | C5—O9—H9 | 111.3 (18) |
O14—Ca1—O11 | 124.58 (4) | C7—O10—H10 | 105.9 (17) |
O14—Ca1—O13 | 76.02 (5) | O6—C1—O7 | 122.02 (16) |
O14—Ca1—H13B | 90.5 (5) | O6—C1—C2 | 119.57 (15) |
O15—Ca1—O11 | 143.08 (5) | O7—C1—C2 | 118.41 (15) |
O15—Ca1—O13 | 76.22 (6) | H16A—O16—H16B | 108 (3) |
O15—Ca1—O14 | 69.58 (5) | H17A—O17—H17B | 101 (3) |
O15—Ca1—H13B | 69.7 (5) | C3—C2—C1 | 121.06 (15) |
C8—O2—Ca1i | 135.84 (10) | C7—C2—C1 | 121.77 (15) |
C8—O1—Ca1 | 137.27 (10) | C7—C2—C3 | 117.17 (15) |
C10—O5—H5 | 104.5 (17) | O8—C3—C2 | 120.18 (15) |
C12—O4—H4 | 113.6 (18) | O8—C3—C4 | 118.27 (15) |
C14—O3—H3 | 102.9 (16) | C4—C3—C2 | 121.55 (15) |
Ca1i—O11—Ca1 | 101.78 (4) | C3—C4—H4A | 120.4 |
Ca1—O11—H11A | 111.4 (17) | C3—C4—C5 | 119.18 (15) |
Ca1i—O11—H11A | 115.0 (17) | C5—C4—H4A | 120.4 |
Ca1i—O11—H11B | 110.0 (18) | O9—C5—C4 | 120.06 (15) |
Ca1—O11—H11B | 108.7 (18) | O9—C5—C6 | 118.52 (15) |
H11A—O11—H11B | 110 (2) | C6—C5—C4 | 121.42 (15) |
Ca1—O13—H13A | 114.4 (17) | C5—C6—H6 | 120.6 |
Ca1—O13—H13B | 98.9 (16) | C7—C6—C5 | 118.76 (15) |
H13A—O13—H13B | 105 (2) | C7—C6—H6 | 120.6 |
Ca1—O12—H12A | 114.1 (18) | O10—C7—C2 | 120.57 (15) |
Ca1—O12—H12B | 123.9 (17) | O10—C7—C6 | 117.56 (15) |
H12A—O12—H12B | 103 (2) | C6—C7—C2 | 121.86 (15) |
Ca1i—O2—C8—O1 | −17.2 (2) | C14—C9—C10—O5 | 178.63 (13) |
Ca1i—O2—C8—C9 | 162.16 (11) | C14—C9—C10—C11 | −0.2 (2) |
Ca1—O1—C8—O2 | 33.1 (2) | O6—C1—C2—C3 | 178.98 (15) |
Ca1—O1—C8—C9 | −146.32 (12) | O6—C1—C2—C7 | −1.4 (2) |
O2—C8—C9—C10 | −178.15 (14) | O7—C1—C2—C3 | −0.3 (2) |
O2—C8—C9—C14 | 2.2 (2) | O7—C1—C2—C7 | 179.35 (15) |
O1—C8—C9—C10 | 1.3 (2) | O8—C3—C4—C5 | −179.91 (14) |
O1—C8—C9—C14 | −178.39 (14) | O9—C5—C6—C7 | −178.29 (14) |
O5—C10—C11—C12 | −179.39 (14) | C1—C2—C3—O8 | 1.4 (2) |
O4—C12—C13—C14 | 179.74 (14) | C1—C2—C3—C4 | −178.94 (15) |
C8—C9—C10—O5 | −1.0 (2) | C1—C2—C7—O10 | −0.2 (2) |
C8—C9—C10—C11 | −179.89 (14) | C1—C2—C7—C6 | 178.95 (14) |
C8—C9—C14—O3 | 0.5 (2) | C2—C3—C4—C5 | 0.5 (2) |
C8—C9—C14—C13 | −179.97 (14) | C3—C2—C7—O10 | 179.45 (14) |
C9—C10—C11—C12 | −0.5 (2) | C3—C2—C7—C6 | −1.4 (2) |
C10—C9—C14—O3 | −179.17 (14) | C3—C4—C5—O9 | 178.30 (14) |
C10—C9—C14—C13 | 0.4 (2) | C3—C4—C5—C6 | −2.5 (2) |
C10—C11—C12—O4 | −179.61 (14) | C4—C5—C6—C7 | 2.5 (2) |
C10—C11—C12—C13 | 1.2 (2) | C5—C6—C7—O10 | 178.66 (14) |
C11—C12—C13—C14 | −1.0 (2) | C5—C6—C7—C2 | −0.5 (2) |
C12—C13—C14—O3 | 179.79 (14) | C7—C2—C3—O8 | −178.18 (14) |
C12—C13—C14—C9 | 0.2 (2) | C7—C2—C3—C4 | 1.4 (2) |
Symmetry code: (i) −x+1, −y+1, −z+1. |
[Sr(C7H5O5)2(H2O)4] | F(000) = 1008 |
Mr = 497.90 | Dx = 1.815 Mg m−3 |
Monoclinic, P21/c | Cu Kα radiation, λ = 1.54184 Å |
a = 16.2436 (6) Å | Cell parameters from 7416 reflections |
b = 16.0663 (7) Å | θ = 3.8–77.6° |
c = 6.9876 (3) Å | µ = 4.84 mm−1 |
β = 92.171 (3)° | T = 100 K |
V = 1822.28 (13) Å3 | Plate, clear colourless |
Z = 4 | 0.21 × 0.16 × 0.03 mm |
XtaLAB Synergy, Dualflex, HyPix diffractometer | 6577 measured reflections |
Radiation source: micro-focus sealed X-ray tube, PhotonJet (Cu) X-ray Source | 6577 independent reflections |
Mirror monochromator | 6185 reflections with I > 2σ(I) |
Detector resolution: 10.0000 pixels mm-1 | θmax = 78.2°, θmin = 2.7° |
ω scans | h = −20→20 |
Absorption correction: multi-scan (CrysAlis PRO; Rigaku OD, 2020) | k = −20→20 |
Tmin = 0.677, Tmax = 1.000 | l = −8→7 |
Refinement on F2 | Primary atom site location: dual |
Least-squares matrix: full | Hydrogen site location: mixed |
R[F2 > 2σ(F2)] = 0.069 | H atoms treated by a mixture of independent and constrained refinement |
wR(F2) = 0.199 | w = 1/[σ2(Fo2) + (0.1481P)2 + 3.5208P] where P = (Fo2 + 2Fc2)/3 |
S = 1.06 | (Δ/σ)max < 0.001 |
6577 reflections | Δρmax = 2.88 e Å−3 |
290 parameters | Δρmin = −1.88 e Å−3 |
14 restraints |
Geometry. All esds (except the esd in the dihedral angle between two l.s. planes) are estimated using the full covariance matrix. The cell esds are taken into account individually in the estimation of esds in distances, angles and torsion angles; correlations between esds in cell parameters are only used when they are defined by crystal symmetry. An approximate (isotropic) treatment of cell esds is used for estimating esds involving l.s. planes. |
Refinement. Twinned crystal; refined in HKFL5 format (BASF 0.5). O-H distances fixed at 0.85 and Uiso(H) = 1.5Ueq(O). |
x | y | z | Uiso*/Ueq | ||
Sr1 | 0.25205 (3) | 0.49250 (3) | 0.79770 (9) | 0.0155 (2) | |
O1 | −0.1339 (2) | 0.8732 (2) | 0.6951 (6) | 0.0231 (8) | |
O2 | −0.0129 (2) | 0.9373 (2) | 0.7446 (6) | 0.0226 (8) | |
O3 | 0.1171 (2) | 0.8567 (2) | 0.8037 (6) | 0.0179 (7) | |
O4 | 0.1070 (2) | 0.5633 (2) | 0.8082 (6) | 0.0206 (8) | |
O5 | −0.1407 (2) | 0.7143 (2) | 0.6971 (7) | 0.0235 (8) | |
O6 | 0.5135 (2) | 0.9397 (2) | 0.7802 (6) | 0.0236 (8) | |
O7 | 0.6355 (2) | 0.8785 (2) | 0.7455 (6) | 0.0211 (8) | |
O8 | 0.6439 (2) | 0.7200 (2) | 0.7388 (6) | 0.0230 (9) | |
O9 | 0.3989 (2) | 0.5641 (2) | 0.8164 (6) | 0.0202 (7) | |
O10 | 0.3861 (2) | 0.8577 (2) | 0.8269 (6) | 0.0187 (7) | |
O11 | 0.2062 (3) | 0.4418 (3) | 0.4674 (6) | 0.0327 (9) | |
H11A | 0.246614 | 0.443862 | 0.393524 | 0.049* | |
H11B | 0.194082 | 0.390274 | 0.472605 | 0.049* | |
O12 | 0.2529 (2) | 0.6168 (2) | 0.5720 (6) | 0.0225 (8) | |
O13 | 0.2544 (2) | 0.3975 (3) | 1.0956 (7) | 0.0270 (9) | |
H13A | 0.292294 | 0.361391 | 1.086509 | 0.041* | |
H13B | 0.210155 | 0.369183 | 1.095892 | 0.041* | |
O14 | 0.2527 (2) | 0.5983 (3) | 1.0701 (6) | 0.0247 (9) | |
H14A | 0.289011 | 0.584594 | 1.155403 | 0.037* | |
H14B | 0.207274 | 0.595436 | 1.126900 | 0.037* | |
C1 | −0.0563 (3) | 0.8710 (3) | 0.7297 (8) | 0.0178 (10) | |
C2 | −0.0143 (3) | 0.7906 (3) | 0.7509 (7) | 0.0158 (10) | |
C3 | 0.0714 (3) | 0.7856 (3) | 0.7878 (8) | 0.0164 (10) | |
C4 | 0.1121 (3) | 0.7099 (3) | 0.8074 (8) | 0.0178 (10) | |
H4A | 0.169825 | 0.708014 | 0.833822 | 0.021* | |
H3 | 0.080 (3) | 0.893 (3) | 0.786 (10) | 0.027* | |
H4 | 0.074 (4) | 0.522 (3) | 0.791 (11) | 0.027* | |
H5 | −0.151 (4) | 0.7661 (18) | 0.689 (10) | 0.027* | |
H8 | 0.656 (4) | 0.7720 (19) | 0.737 (11) | 0.027* | |
H9 | 0.433 (4) | 0.525 (3) | 0.797 (11) | 0.027* | |
H10 | 0.424 (3) | 0.895 (3) | 0.817 (10) | 0.027* | |
H12A | 0.219 (3) | 0.621 (4) | 0.478 (7) | 0.027* | |
H12B | 0.297 (3) | 0.633 (4) | 0.520 (9) | 0.027* | |
C5 | 0.0664 (3) | 0.6370 (3) | 0.7874 (8) | 0.0177 (10) | |
C6 | −0.0186 (3) | 0.6383 (3) | 0.7523 (8) | 0.0188 (10) | |
H6 | −0.049080 | 0.587949 | 0.740697 | 0.023* | |
C7 | −0.0571 (3) | 0.7142 (3) | 0.7350 (8) | 0.0170 (10) | |
C8 | 0.5584 (3) | 0.8744 (3) | 0.7686 (8) | 0.0199 (11) | |
C9 | 0.5175 (3) | 0.7931 (3) | 0.7849 (8) | 0.0177 (10) | |
C10 | 0.5613 (3) | 0.7178 (3) | 0.7668 (8) | 0.0182 (10) | |
C11 | 0.5234 (3) | 0.6412 (3) | 0.7791 (8) | 0.0188 (10) | |
H11 | 0.554271 | 0.591285 | 0.768374 | 0.023* | |
C12 | 0.4384 (3) | 0.6384 (3) | 0.8075 (7) | 0.0154 (9) | |
C13 | 0.3928 (3) | 0.7106 (3) | 0.8267 (8) | 0.0173 (10) | |
H13 | 0.335466 | 0.707886 | 0.848660 | 0.021* | |
C14 | 0.4323 (3) | 0.7869 (3) | 0.8133 (8) | 0.0155 (9) |
U11 | U22 | U33 | U12 | U13 | U23 | |
Sr1 | 0.0138 (3) | 0.0107 (3) | 0.0220 (3) | 0.00058 (13) | 0.0010 (2) | 0.00010 (16) |
O1 | 0.0157 (16) | 0.0151 (18) | 0.038 (2) | 0.0011 (13) | 0.0000 (15) | 0.0001 (16) |
O2 | 0.0189 (16) | 0.0105 (17) | 0.038 (2) | 0.0007 (13) | −0.0004 (15) | 0.0007 (15) |
O3 | 0.0143 (15) | 0.0093 (16) | 0.030 (2) | −0.0018 (12) | −0.0006 (14) | 0.0007 (14) |
O4 | 0.0152 (15) | 0.0094 (16) | 0.037 (2) | −0.0006 (13) | 0.0010 (14) | −0.0009 (15) |
O5 | 0.0132 (16) | 0.0131 (17) | 0.044 (2) | 0.0014 (13) | −0.0020 (15) | 0.0001 (17) |
O6 | 0.0199 (17) | 0.0103 (17) | 0.041 (2) | −0.0005 (13) | 0.0052 (15) | 0.0003 (15) |
O7 | 0.0158 (16) | 0.0145 (18) | 0.033 (2) | −0.0002 (13) | 0.0016 (14) | 0.0038 (15) |
O8 | 0.0145 (16) | 0.0141 (17) | 0.041 (3) | −0.0006 (13) | 0.0049 (15) | 0.0038 (16) |
O9 | 0.0150 (15) | 0.0098 (16) | 0.036 (2) | 0.0005 (13) | 0.0023 (14) | 0.0003 (15) |
O10 | 0.0142 (15) | 0.0102 (16) | 0.032 (2) | 0.0006 (12) | 0.0039 (14) | 0.0014 (14) |
O11 | 0.037 (2) | 0.031 (2) | 0.031 (2) | −0.0083 (18) | 0.0027 (17) | −0.0024 (19) |
O12 | 0.0176 (16) | 0.0249 (19) | 0.025 (2) | 0.0010 (14) | −0.0001 (15) | 0.0052 (16) |
O13 | 0.0196 (17) | 0.025 (2) | 0.037 (2) | 0.0017 (15) | 0.0029 (16) | 0.0055 (18) |
O14 | 0.0165 (16) | 0.028 (2) | 0.029 (2) | 0.0002 (15) | 0.0017 (16) | −0.0050 (17) |
C1 | 0.017 (2) | 0.014 (2) | 0.022 (3) | −0.0009 (18) | −0.0007 (19) | 0.001 (2) |
C2 | 0.016 (2) | 0.010 (2) | 0.021 (3) | −0.0003 (17) | 0.0023 (18) | 0.0002 (18) |
C3 | 0.018 (2) | 0.009 (2) | 0.022 (2) | −0.0008 (17) | 0.0056 (19) | −0.0019 (19) |
C4 | 0.012 (2) | 0.017 (2) | 0.025 (3) | 0.0002 (17) | 0.0010 (18) | −0.001 (2) |
C5 | 0.019 (2) | 0.011 (2) | 0.023 (3) | 0.0032 (18) | 0.005 (2) | 0.001 (2) |
C6 | 0.017 (2) | 0.012 (2) | 0.028 (3) | −0.0016 (18) | 0.0016 (19) | 0.000 (2) |
C7 | 0.014 (2) | 0.014 (2) | 0.023 (3) | 0.0009 (17) | 0.0005 (18) | −0.002 (2) |
C8 | 0.021 (2) | 0.012 (2) | 0.027 (3) | 0.0010 (18) | −0.001 (2) | 0.003 (2) |
C9 | 0.018 (2) | 0.011 (2) | 0.024 (3) | −0.0006 (18) | 0.0009 (18) | −0.0007 (19) |
C10 | 0.016 (2) | 0.014 (2) | 0.025 (3) | 0.0012 (17) | 0.0000 (19) | 0.001 (2) |
C11 | 0.017 (2) | 0.012 (2) | 0.028 (3) | 0.0020 (18) | 0.0029 (19) | −0.0005 (19) |
C12 | 0.019 (2) | 0.011 (2) | 0.017 (2) | −0.0003 (17) | 0.0003 (18) | −0.0002 (19) |
C13 | 0.014 (2) | 0.014 (2) | 0.024 (3) | 0.0006 (17) | 0.0023 (18) | −0.002 (2) |
C14 | 0.018 (2) | 0.012 (2) | 0.017 (2) | 0.0015 (17) | −0.0021 (18) | −0.0012 (19) |
Sr1—O1i | 2.714 (4) | O10—C14 | 1.369 (6) |
Sr1—O4 | 2.620 (3) | O11—H11A | 0.8510 |
Sr1—O7ii | 2.612 (4) | O11—H11B | 0.8514 |
Sr1—O9 | 2.647 (3) | O12—H12A | 0.84 (3) |
Sr1—O11 | 2.533 (4) | O12—H12B | 0.86 (3) |
Sr1—H11A | 2.9284 | O13—H13A | 0.8492 |
Sr1—H11B | 2.9295 | O13—H13B | 0.8509 |
Sr1—O12 | 2.545 (4) | O14—H14A | 0.8519 |
Sr1—O13 | 2.581 (4) | O14—H14B | 0.8519 |
Sr1—O14 | 2.552 (4) | C1—C2 | 1.466 (7) |
Sr1—H14A | 2.9468 | C2—C3 | 1.408 (7) |
Sr1—H14B | 2.9466 | C2—C7 | 1.413 (7) |
Sr1—H4 | 2.93 (7) | C3—C4 | 1.388 (7) |
O1—C1 | 1.275 (6) | C4—H4A | 0.9500 |
O2—C1 | 1.280 (6) | C4—C5 | 1.391 (7) |
O3—C3 | 1.365 (6) | C5—C6 | 1.393 (7) |
O3—H3 | 0.85 (3) | C6—H6 | 0.9500 |
O4—H4 | 0.86 (3) | C6—C7 | 1.374 (7) |
O4—C5 | 1.361 (6) | C8—C9 | 1.472 (7) |
O5—H5 | 0.85 (3) | C9—C10 | 1.412 (7) |
O5—C7 | 1.374 (6) | C9—C14 | 1.409 (7) |
O6—C8 | 1.282 (6) | C10—C11 | 1.380 (7) |
O7—C8 | 1.269 (6) | C11—H11 | 0.9500 |
O8—H8 | 0.86 (3) | C11—C12 | 1.402 (7) |
O8—C10 | 1.364 (6) | C12—C13 | 1.386 (7) |
O9—H9 | 0.86 (3) | C13—H13 | 0.9500 |
O9—C12 | 1.357 (6) | C13—C14 | 1.389 (7) |
O10—H10 | 0.86 (3) | ||
O1i—Sr1—H11A | 80.4 | O14—Sr1—H14A | 15.8 |
O1i—Sr1—H11B | 54.0 | O14—Sr1—H14B | 15.8 |
O1i—Sr1—H14A | 117.4 | O14—Sr1—H4 | 83.1 (12) |
O1i—Sr1—H14B | 100.7 | H14A—Sr1—H14B | 26.4 |
O1i—Sr1—H4 | 54.3 (9) | H14A—Sr1—H4 | 95.8 |
O4—Sr1—O1i | 70.64 (11) | H14B—Sr1—H4 | 69.4 |
O4—Sr1—O9 | 128.29 (11) | C1—O1—Sr1iii | 135.3 (3) |
O4—Sr1—H11A | 98.5 | C3—O3—H3 | 100 (5) |
O4—Sr1—H11B | 90.1 | Sr1—O4—H4 | 103 (5) |
O4—Sr1—H14A | 85.0 | C5—O4—Sr1 | 143.8 (3) |
O4—Sr1—H14B | 59.1 | C5—O4—H4 | 111 (5) |
O4—Sr1—H4 | 16.5 (8) | C7—O5—H5 | 102 (5) |
O7ii—Sr1—O1i | 90.31 (12) | C8—O7—Sr1iv | 138.5 (3) |
O7ii—Sr1—O4 | 160.25 (11) | C10—O8—H8 | 105 (5) |
O7ii—Sr1—O9 | 71.19 (11) | Sr1—O9—H9 | 105 (5) |
O7ii—Sr1—H11A | 72.4 | C12—O9—Sr1 | 143.8 (3) |
O7ii—Sr1—H11B | 73.9 | C12—O9—H9 | 109 (5) |
O7ii—Sr1—H14A | 109.2 | C14—O10—H10 | 100 (5) |
O7ii—Sr1—H14B | 132.7 | Sr1—O11—H11A | 109.4 |
O7ii—Sr1—H4 | 143.8 (9) | Sr1—O11—H11B | 109.5 |
O9—Sr1—O1i | 160.49 (11) | H11A—O11—H11B | 104.4 |
O9—Sr1—H11A | 99.1 | Sr1—O12—H12A | 122 (5) |
O9—Sr1—H11B | 123.0 | Sr1—O12—H12B | 122 (5) |
O9—Sr1—H14A | 65.5 | H12A—O12—H12B | 100 (6) |
O9—Sr1—H14B | 88.0 | Sr1—O13—H13A | 109.4 |
O9—Sr1—H4 | 144.8 (9) | Sr1—O13—H13B | 109.3 |
O11—Sr1—O1i | 66.79 (13) | H13A—O13—H13B | 104.5 |
O11—Sr1—O4 | 86.06 (13) | Sr1—O14—H14A | 109.4 |
O11—Sr1—O7ii | 81.49 (13) | Sr1—O14—H14B | 109.4 |
O11—Sr1—O9 | 114.73 (13) | H14A—O14—H14B | 104.4 |
O11—Sr1—H11A | 15.9 | O1—C1—O2 | 122.0 (5) |
O11—Sr1—H11B | 15.9 | O1—C1—C2 | 119.8 (5) |
O11—Sr1—O12 | 72.32 (14) | O2—C1—C2 | 118.2 (4) |
O11—Sr1—O13 | 122.65 (14) | C3—C2—C1 | 121.4 (4) |
O11—Sr1—O14 | 152.46 (14) | C3—C2—C7 | 116.4 (4) |
O11—Sr1—H14A | 167.9 | C7—C2—C1 | 122.1 (4) |
O11—Sr1—H14B | 145.0 | O3—C3—C2 | 119.9 (4) |
O11—Sr1—H4 | 77.4 (14) | O3—C3—C4 | 118.0 (4) |
H11A—Sr1—H11B | 26.6 | C4—C3—C2 | 122.1 (4) |
H11A—Sr1—H14A | 161.8 | C3—C4—H4A | 120.7 |
H11A—Sr1—H14B | 154.6 | C3—C4—C5 | 118.6 (4) |
H11A—Sr1—H4 | 92.0 | C5—C4—H4A | 120.7 |
H11B—Sr1—H14A | 171.3 | O4—C5—C4 | 118.0 (4) |
H11B—Sr1—H14B | 147.0 | O4—C5—C6 | 120.3 (5) |
H11B—Sr1—H4 | 77.9 | C4—C5—C6 | 121.8 (5) |
O12—Sr1—O1i | 125.89 (12) | C5—C6—H6 | 120.9 |
O12—Sr1—O4 | 72.72 (12) | C7—C6—C5 | 118.3 (5) |
O12—Sr1—O7ii | 117.27 (13) | C7—C6—H6 | 120.9 |
O12—Sr1—O9 | 70.32 (12) | O5—C7—C2 | 119.6 (4) |
O12—Sr1—H11A | 67.2 | C6—C7—O5 | 117.5 (5) |
O12—Sr1—H11B | 88.2 | C6—C7—C2 | 122.9 (5) |
O12—Sr1—O13 | 164.53 (14) | O6—C8—C9 | 117.5 (5) |
O12—Sr1—O14 | 86.51 (14) | O7—C8—O6 | 122.1 (5) |
O12—Sr1—H14A | 97.2 | O7—C8—C9 | 120.4 (5) |
O12—Sr1—H14B | 92.9 | C10—C9—C8 | 121.6 (4) |
O12—Sr1—H4 | 83.8 (13) | C14—C9—C8 | 121.5 (5) |
O13—Sr1—O1i | 63.66 (13) | C14—C9—C10 | 116.9 (5) |
O13—Sr1—O4 | 102.72 (12) | O8—C10—C9 | 119.4 (4) |
O13—Sr1—O7ii | 71.90 (13) | O8—C10—C11 | 118.4 (5) |
O13—Sr1—O9 | 103.38 (12) | C11—C10—C9 | 122.1 (5) |
O13—Sr1—H11A | 128.2 | C10—C11—H11 | 120.6 |
O13—Sr1—H11B | 106.8 | C10—C11—C12 | 118.8 (5) |
O13—Sr1—H14A | 67.5 | C12—C11—H11 | 120.6 |
O13—Sr1—H14B | 72.5 | O9—C12—C11 | 120.3 (4) |
O13—Sr1—H4 | 95.4 (14) | O9—C12—C13 | 118.3 (4) |
O14—Sr1—O1i | 116.07 (13) | C13—C12—C11 | 121.3 (5) |
O14—Sr1—O4 | 70.63 (12) | C12—C13—H13 | 120.6 |
O14—Sr1—O7ii | 124.76 (13) | C12—C13—C14 | 118.8 (4) |
O14—Sr1—O9 | 72.26 (12) | C14—C13—H13 | 120.6 |
O14—Sr1—H11A | 153.7 | O10—C14—C9 | 119.6 (4) |
O14—Sr1—H11B | 160.7 | O10—C14—C13 | 118.3 (4) |
O14—Sr1—O13 | 78.06 (16) | C13—C14—C9 | 122.1 (4) |
Sr1iii—O1—C1—O2 | −14.1 (9) | C2—C3—C4—C5 | 0.8 (8) |
Sr1iii—O1—C1—C2 | 166.7 (4) | C3—C2—C7—O5 | −179.4 (5) |
Sr1—O4—C5—C4 | −21.0 (9) | C3—C2—C7—C6 | −0.6 (8) |
Sr1—O4—C5—C6 | 160.6 (4) | C3—C4—C5—O4 | −179.6 (5) |
Sr1iv—O7—C8—O6 | −1.5 (9) | C3—C4—C5—C6 | −1.3 (9) |
Sr1iv—O7—C8—C9 | 179.1 (3) | C4—C5—C6—C7 | 0.9 (9) |
Sr1—O9—C12—C11 | −163.7 (4) | C5—C6—C7—O5 | 178.9 (5) |
Sr1—O9—C12—C13 | 16.2 (9) | C5—C6—C7—C2 | 0.1 (9) |
O1—C1—C2—C3 | 179.6 (5) | C7—C2—C3—O3 | 179.5 (5) |
O1—C1—C2—C7 | −0.2 (8) | C7—C2—C3—C4 | 0.1 (8) |
O2—C1—C2—C3 | 0.4 (8) | C8—C9—C10—O8 | 1.8 (8) |
O2—C1—C2—C7 | −179.4 (5) | C8—C9—C10—C11 | −179.0 (5) |
O3—C3—C4—C5 | −178.6 (5) | C8—C9—C14—O10 | −0.2 (8) |
O4—C5—C6—C7 | 179.1 (5) | C8—C9—C14—C13 | 179.3 (5) |
O6—C8—C9—C10 | 177.6 (5) | C9—C10—C11—C12 | 1.0 (8) |
O6—C8—C9—C14 | −0.4 (8) | C10—C9—C14—O10 | −178.3 (5) |
O7—C8—C9—C10 | −2.9 (9) | C10—C9—C14—C13 | 1.2 (8) |
O7—C8—C9—C14 | 179.1 (5) | C10—C11—C12—O9 | 178.7 (5) |
O8—C10—C11—C12 | −179.9 (5) | C10—C11—C12—C13 | −1.1 (8) |
O9—C12—C13—C14 | −178.5 (5) | C11—C12—C13—C14 | 1.3 (8) |
C1—C2—C3—O3 | −0.3 (8) | C12—C13—C14—O10 | 178.1 (5) |
C1—C2—C3—C4 | −179.7 (5) | C12—C13—C14—C9 | −1.4 (9) |
C1—C2—C7—O5 | 0.4 (8) | C14—C9—C10—O8 | 179.9 (5) |
C1—C2—C7—C6 | 179.3 (5) | C14—C9—C10—C11 | −1.0 (8) |
Symmetry codes: (i) −x, y−1/2, −z+3/2; (ii) −x+1, y−1/2, −z+3/2; (iii) −x, y+1/2, −z+3/2; (iv) −x+1, y+1/2, −z+3/2. |
[Ba(C7H5O5)2(H2O)4] | Dx = 1.887 Mg m−3 |
Mr = 547.62 | Cu Kα radiation, λ = 1.54184 Å |
Orthorhombic, Cmcm | Cell parameters from 2295 reflections |
a = 16.9238 (7) Å | θ = 5.2–77.3° |
b = 16.1932 (7) Å | µ = 16.71 mm−1 |
c = 7.0336 (3) Å | T = 100 K |
V = 1927.56 (14) Å3 | Irregular, clear colourless |
Z = 4 | 0.11 × 0.08 × 0.03 mm |
F(000) = 1080 |
XtaLAB Synergy, Dualflex, HyPix diffractometer | 947 independent reflections |
Radiation source: micro-focus sealed X-ray tube, PhotonJet (Cu) X-ray Source | 921 reflections with I > 2σ(I) |
Mirror monochromator | Rint = 0.033 |
Detector resolution: 10.0000 pixels mm-1 | θmax = 66.0°, θmin = 3.8° |
ω scans | h = −20→13 |
Absorption correction: gaussian (CrysAlis PRO; Rigaku OD, 2021) | k = −19→18 |
Tmin = 0.288, Tmax = 0.684 | l = −8→8 |
3778 measured reflections |
Refinement on F2 | Primary atom site location: dual |
Least-squares matrix: full | Hydrogen site location: mixed |
R[F2 > 2σ(F2)] = 0.044 | H atoms treated by a mixture of independent and constrained refinement |
wR(F2) = 0.121 | w = 1/[σ2(Fo2) + (0.098P)2 + 2.335P] where P = (Fo2 + 2Fc2)/3 |
S = 1.11 | (Δ/σ)max < 0.001 |
947 reflections | Δρmax = 3.23 e Å−3 |
101 parameters | Δρmin = −1.34 e Å−3 |
7 restraints |
Geometry. All esds (except the esd in the dihedral angle between two l.s. planes) are estimated using the full covariance matrix. The cell esds are taken into account individually in the estimation of esds in distances, angles and torsion angles; correlations between esds in cell parameters are only used when they are defined by crystal symmetry. An approximate (isotropic) treatment of cell esds is used for estimating esds involving l.s. planes. |
x | y | z | Uiso*/Ueq | ||
Ba1 | 0.500000 | 0.26994 (3) | 0.250000 | 0.0276 (3) | |
O3 | 0.8712 (3) | 0.3979 (3) | 0.250000 | 0.0291 (10) | |
H3 | 0.835 (4) | 0.362 (4) | 0.250000 | 0.044* | |
O5 | 0.6163 (3) | 0.5267 (3) | 0.250000 | 0.0310 (10) | |
H5 | 0.611 (5) | 0.4745 (15) | 0.250000 | 0.046* | |
O1 | 0.6301 (3) | 0.3719 (3) | 0.250000 | 0.0331 (11) | |
O2 | 0.7487 (3) | 0.3125 (3) | 0.250000 | 0.0288 (10) | |
O4 | 0.8504 (3) | 0.6886 (3) | 0.250000 | 0.0321 (11) | |
H4 | 0.817 (5) | 0.728 (5) | 0.250000 | 0.048* | |
O7 | 0.500000 | 0.1458 (3) | −0.0077 (8) | 0.0364 (11) | |
H7 | 0.5389 (11) | 0.126 (4) | −0.070 (7) | 0.055* | |
O6 | 0.500000 | 0.3918 (4) | 0.5167 (9) | 0.0426 (13) | |
H6 | 0.5403 (11) | 0.411 (4) | 0.574 (8) | 0.064* | |
C4 | 0.8609 (4) | 0.5436 (4) | 0.250000 | 0.0291 (14) | |
H4A | 0.916884 | 0.548220 | 0.250000 | 0.035* | |
C3 | 0.8251 (4) | 0.4674 (4) | 0.250000 | 0.0241 (13) | |
C7 | 0.6972 (4) | 0.5317 (4) | 0.250000 | 0.0235 (12) | |
C1 | 0.7050 (4) | 0.3764 (4) | 0.250000 | 0.0261 (13) | |
C5 | 0.8136 (4) | 0.6140 (4) | 0.250000 | 0.0253 (13) | |
C6 | 0.7316 (4) | 0.6090 (4) | 0.250000 | 0.0254 (13) | |
H6A | 0.700089 | 0.657481 | 0.250000 | 0.031* | |
C2 | 0.7423 (4) | 0.4586 (4) | 0.250000 | 0.0235 (12) |
U11 | U22 | U33 | U12 | U13 | U23 | |
Ba1 | 0.0162 (4) | 0.0133 (4) | 0.0534 (4) | 0.000 | 0.000 | 0.000 |
O3 | 0.017 (2) | 0.013 (2) | 0.057 (3) | 0.0020 (18) | 0.000 | 0.000 |
O5 | 0.014 (2) | 0.015 (2) | 0.064 (3) | 0.0012 (18) | 0.000 | 0.000 |
O1 | 0.019 (2) | 0.016 (2) | 0.064 (3) | 0.0000 (19) | 0.000 | 0.000 |
O2 | 0.021 (2) | 0.014 (2) | 0.052 (2) | −0.0005 (17) | 0.000 | 0.000 |
O4 | 0.018 (2) | 0.013 (2) | 0.066 (3) | −0.0025 (17) | 0.000 | 0.000 |
O7 | 0.022 (2) | 0.030 (3) | 0.058 (3) | 0.000 | 0.000 | −0.010 (2) |
O6 | 0.023 (2) | 0.042 (3) | 0.063 (3) | 0.000 | 0.000 | −0.016 (3) |
C4 | 0.016 (3) | 0.019 (3) | 0.052 (3) | −0.003 (3) | 0.000 | 0.000 |
C3 | 0.018 (3) | 0.015 (3) | 0.039 (3) | −0.001 (2) | 0.000 | 0.000 |
C7 | 0.017 (3) | 0.016 (3) | 0.038 (3) | 0.000 (2) | 0.000 | 0.000 |
C1 | 0.019 (3) | 0.017 (3) | 0.042 (3) | 0.003 (3) | 0.000 | 0.000 |
C5 | 0.020 (3) | 0.014 (3) | 0.041 (3) | 0.001 (2) | 0.000 | 0.000 |
C6 | 0.020 (3) | 0.014 (3) | 0.041 (3) | 0.002 (3) | 0.000 | 0.000 |
C2 | 0.019 (3) | 0.015 (3) | 0.036 (3) | 0.000 (2) | 0.000 | 0.000 |
Ba1—O1 | 2.752 (5) | O4—C5 | 1.359 (8) |
Ba1—O1i | 2.752 (5) | O7—H7 | 0.853 (19) |
Ba1—O4ii | 2.854 (5) | O7—H7v | 0.853 (19) |
Ba1—O4iii | 2.854 (5) | O6—H6 | 0.85 (2) |
Ba1—O7 | 2.707 (5) | O6—H6v | 0.853 (19) |
Ba1—O7iv | 2.707 (5) | C4—H4A | 0.9500 |
Ba1—O6iv | 2.722 (5) | C4—C3 | 1.376 (10) |
Ba1—O6 | 2.722 (5) | C4—C5 | 1.393 (10) |
O3—H3 | 0.85 (2) | C3—C2 | 1.408 (9) |
O3—C3 | 1.369 (8) | C7—C6 | 1.380 (10) |
O5—H5 | 0.85 (2) | C7—C2 | 1.409 (9) |
O5—C7 | 1.371 (8) | C1—C2 | 1.472 (10) |
O1—C1 | 1.270 (9) | C5—C6 | 1.389 (10) |
O2—C1 | 1.272 (8) | C6—H6A | 0.9500 |
O4—H4 | 0.85 (2) | ||
O1—Ba1—O1i | 106.2 (2) | Ba1vi—O4—H4 | 103 (8) |
O1i—Ba1—O4ii | 64.35 (12) | C5—O4—Ba1vi | 144.7 (4) |
O1i—Ba1—O4iii | 170.59 (14) | C5—O4—H4 | 112 (8) |
O1—Ba1—O4iii | 64.35 (12) | Ba1—O7—H7v | 129 (3) |
O1—Ba1—O4ii | 170.59 (14) | Ba1—O7—H7 | 129 (3) |
O4ii—Ba1—O4iii | 125.05 (18) | H7—O7—H7v | 101 (5) |
O7—Ba1—O1i | 116.47 (9) | Ba1—O6—H6v | 126 (3) |
O7iv—Ba1—O1 | 116.47 (9) | Ba1—O6—H6 | 126 (3) |
O7—Ba1—O1 | 116.47 (9) | H6—O6—H6v | 106 (5) |
O7iv—Ba1—O1i | 116.47 (9) | C3—C4—H4A | 120.6 |
O7iv—Ba1—O4ii | 69.96 (8) | C3—C4—C5 | 118.7 (6) |
O7iv—Ba1—O4iii | 69.96 (8) | C5—C4—H4A | 120.6 |
O7—Ba1—O4iii | 69.96 (8) | O3—C3—C4 | 119.1 (5) |
O7—Ba1—O4ii | 69.96 (8) | O3—C3—C2 | 119.0 (6) |
O7—Ba1—O7iv | 84.1 (2) | C4—C3—C2 | 122.0 (6) |
O7—Ba1—O6 | 178.48 (14) | O5—C7—C6 | 118.4 (6) |
O7iv—Ba1—O6 | 94.4 (2) | O5—C7—C2 | 119.4 (6) |
O7—Ba1—O6iv | 94.4 (2) | C6—C7—C2 | 122.2 (6) |
O7iv—Ba1—O6iv | 178.48 (14) | O1—C1—O2 | 122.3 (6) |
O6—Ba1—O1 | 64.22 (9) | O1—C1—C2 | 118.7 (6) |
O6iv—Ba1—O1i | 64.22 (9) | O2—C1—C2 | 119.0 (6) |
O6—Ba1—O1i | 64.22 (9) | O4—C5—C4 | 117.6 (6) |
O6iv—Ba1—O1 | 64.22 (9) | O4—C5—C6 | 120.7 (6) |
O6iv—Ba1—O4iii | 109.53 (8) | C6—C5—C4 | 121.7 (6) |
O6—Ba1—O4ii | 109.53 (8) | C7—C6—C5 | 118.4 (6) |
O6iv—Ba1—O4ii | 109.53 (8) | C7—C6—H6A | 120.8 |
O6—Ba1—O4iii | 109.53 (8) | C5—C6—H6A | 120.8 |
O6iv—Ba1—O6 | 87.1 (3) | C3—C2—C7 | 117.0 (6) |
C3—O3—H3 | 99 (6) | C3—C2—C1 | 121.2 (6) |
C7—O5—H5 | 100 (6) | C7—C2—C1 | 121.8 (6) |
C1—O1—Ba1 | 146.4 (4) | ||
Ba1—O1—C1—O2 | 0.0 | O2—C1—C2—C7 | 180.0 |
Ba1—O1—C1—C2 | 180.0 | O4—C5—C6—C7 | 180.0 |
Ba1vi—O4—C5—C4 | 0.0 | C4—C3—C2—C7 | 0.0 |
Ba1vi—O4—C5—C6 | 180.0 | C4—C3—C2—C1 | 180.0 |
O3—C3—C2—C7 | 180.0 | C4—C5—C6—C7 | 0.0 |
O3—C3—C2—C1 | 0.0 | C3—C4—C5—O4 | 180.0 |
O5—C7—C6—C5 | 180.0 | C3—C4—C5—C6 | 0.0 |
O5—C7—C2—C3 | 180.0 | C5—C4—C3—O3 | 180.0 |
O5—C7—C2—C1 | 0.0 | C5—C4—C3—C2 | 0.0 |
O1—C1—C2—C3 | 180.0 | C6—C7—C2—C3 | 0.0 |
O1—C1—C2—C7 | 0.0 | C6—C7—C2—C1 | 180.0 |
O2—C1—C2—C3 | 0.0 | C2—C7—C6—C5 | 0.0 |
Symmetry codes: (i) −x+1, y, −z+1/2; (ii) x−1/2, y−1/2, z; (iii) −x+3/2, y−1/2, −z+1/2; (iv) x, y, −z+1/2; (v) −x+1, y, z; (vi) x+1/2, y+1/2, z. |
[Ce(C7H5O5)3(H2O)4]·2H2O | F(000) = 2864 |
Mr = 734.38 | Dx = 1.856 Mg m−3 |
Monoclinic, P21/n | Cu Kα radiation, λ = 1.54184 Å |
a = 16.7404 (3) Å | Cell parameters from 12847 reflections |
b = 18.2237 (5) Å | θ = 4.7–77.8° |
c = 18.9013 (6) Å | µ = 14.30 mm−1 |
β = 114.273 (2)° | T = 100 K |
V = 5256.5 (3) Å3 | Irregular, clear colourless |
Z = 8 | 0.31 × 0.19 × 0.14 mm |
XtaLAB Synergy, Dualflex, HyPix diffractometer | 9213 independent reflections |
Radiation source: micro-focus sealed X-ray tube, PhotonJet (Cu) X-ray Source | 6870 reflections with I > 2σ(I) |
Mirror monochromator | Rint = 0.054 |
Detector resolution: 10.0000 pixels mm-1 | θmax = 66.5°, θmin = 3.0° |
ω scans | h = −18→19 |
Absorption correction: multi-scan (CrysAlis PRO; Rigaku OD, 2021) | k = −21→21 |
Tmin = 0.463, Tmax = 1.000 | l = −22→18 |
32351 measured reflections |
Refinement on F2 | Primary atom site location: dual |
Least-squares matrix: full | Hydrogen site location: inferred from neighbouring sites |
R[F2 > 2σ(F2)] = 0.056 | H-atom parameters constrained |
wR(F2) = 0.171 | w = 1/[σ2(Fo2) + (0.093P)2 + 11.8281P] where P = (Fo2 + 2Fc2)/3 |
S = 1.08 | (Δ/σ)max = 0.002 |
9213 reflections | Δρmax = 2.46 e Å−3 |
1034 parameters | Δρmin = −2.00 e Å−3 |
398 restraints |
Geometry. All esds (except the esd in the dihedral angle between two l.s. planes) are estimated using the full covariance matrix. The cell esds are taken into account individually in the estimation of esds in distances, angles and torsion angles; correlations between esds in cell parameters are only used when they are defined by crystal symmetry. An approximate (isotropic) treatment of cell esds is used for estimating esds involving l.s. planes. |
Refinement. Crystallizes as a supercell with relatively high mosaicity. Substantial disorder of ligands; EADP constraints applied to similar atoms in the 2 parts. RIGU, DELU and SIMU restraints were also applied to some atoms. H atoms bonded to O atoms were not modelled. |
x | y | z | Uiso*/Ueq | Occ. (<1) | |
Ce2 | −0.75474 (2) | −1.07434 (2) | 0.24382 (2) | 0.01631 (15) | |
Ce1 | −0.24767 (2) | −0.67560 (2) | 0.25683 (2) | 0.01607 (15) | |
O123 | −0.6831 (11) | −0.9499 (10) | 0.2521 (9) | 0.0221 (11) | 0.2548 (12) |
O4 | 0.1643 (4) | −0.3701 (9) | 0.4828 (7) | 0.0200 (18) | 0.7452 (12) |
O104 | 0.187 (2) | −0.369 (3) | 0.492 (3) | 0.0200 (18) | 0.2548 (12) |
O34 | −1.0261 (4) | −1.1724 (3) | 0.1198 (4) | 0.0184 (11) | 0.7452 (12) |
O134 | −1.0648 (10) | −1.1376 (9) | 0.1115 (9) | 0.0184 (11) | 0.2548 (12) |
O6 | −0.3544 (4) | −0.5823 (3) | 0.1722 (4) | 0.0172 (12) | 0.7452 (12) |
O15 | 0.0211 (3) | −0.7535 (3) | 0.2936 (3) | 0.0195 (10) | 0.7452 (12) |
O9 | −0.6716 (9) | −0.3623 (7) | 0.0053 (10) | 0.0259 (16) | 0.7452 (12) |
O28 | −0.3401 (8) | −1.3743 (8) | 0.4794 (4) | 0.0236 (17) | 0.7452 (12) |
O7 | −0.2867 (3) | −0.4937 (3) | 0.1348 (3) | 0.0167 (10) | 0.7452 (12) |
O107 | −0.3061 (14) | −0.5588 (10) | 0.1705 (10) | 0.030 (4) | 0.2548 (12) |
O36 | −0.8744 (3) | −1.1112 (3) | 0.2883 (3) | 0.0237 (11) | 0.7452 (12) |
O136 | −0.8161 (10) | −1.1373 (9) | 0.3235 (9) | 0.0237 (11) | 0.2548 (12) |
O1 | −0.1873 (4) | −0.5557 (3) | 0.3358 (3) | 0.0194 (10) | 0.7452 (12) |
O10 | −0.5191 (4) | −0.5768 (3) | 0.1318 (3) | 0.0173 (11) | 0.7452 (12) |
O110 | −0.5622 (12) | −0.6136 (10) | 0.1157 (11) | 0.031 (4) | 0.2548 (12) |
O32 | −0.8744 (3) | −1.3805 (3) | 0.0803 (3) | 0.0258 (12) | 0.7452 (12) |
O27 | −0.6390 (4) | −1.3152 (3) | 0.3929 (3) | 0.0239 (11) | 0.7452 (12) |
O24 | −0.6195 (3) | −0.7639 (3) | 0.1942 (3) | 0.0175 (10) | 0.7452 (12) |
O124 | −0.5219 (10) | −0.7502 (8) | 0.2109 (8) | 0.0175 (10) | 0.2548 (12) |
O128 | −0.329 (3) | −1.382 (3) | 0.4987 (18) | 0.0236 (17) | 0.2548 (12) |
O29 | −0.4387 (3) | −1.1343 (3) | 0.3812 (3) | 0.0188 (10) | 0.7452 (12) |
O127 | −0.6302 (10) | −1.3719 (9) | 0.4245 (9) | 0.0239 (11) | 0.2548 (12) |
O129 | −0.4785 (12) | −1.1722 (9) | 0.3721 (11) | 0.0188 (10) | 0.2548 (12) |
O131 | −0.8116 (11) | −1.1966 (10) | 0.1683 (8) | 0.0202 (10) | 0.2548 (12) |
O5 | −0.1348 (4) | −0.4278 (3) | 0.3888 (3) | 0.0243 (12) | 0.7452 (12) |
O132 | −0.8645 (13) | −1.3232 (9) | 0.1106 (11) | 0.033 (4) | 0.2548 (12) |
O105 | −0.1246 (9) | −0.3698 (9) | 0.4193 (8) | 0.0243 (12) | 0.2548 (12) |
O12 | −0.2031 (3) | −0.8831 (3) | 0.2262 (3) | 0.0209 (10) | 0.7452 (12) |
O135 | −0.6756 (12) | −1.0336 (10) | 0.3831 (10) | 0.0234 (11) | 0.2548 (12) |
O35 | −0.7167 (4) | −1.0198 (3) | 0.3762 (3) | 0.0234 (11) | 0.7452 (12) |
O17 | −0.3238 (4) | −0.7191 (4) | 0.1188 (4) | 0.0288 (14) | 0.7452 (12) |
O20 | −0.3642 (4) | −0.6355 (3) | 0.3038 (3) | 0.0240 (11) | 0.7452 (12) |
O19 | −0.2087 (5) | −0.7299 (4) | 0.3907 (4) | 0.0212 (13) | 0.7452 (12) |
O16 | −0.1821 (4) | −0.6097 (3) | 0.1815 (3) | 0.0256 (12) | 0.7452 (12) |
O26 | −0.6944 (4) | −1.1910 (3) | 0.3300 (3) | 0.0190 (10) | 0.7452 (12) |
O126 | −0.7099 (9) | −1.2544 (9) | 0.3669 (8) | 0.0190 (10) | 0.2548 (12) |
O14 | 0.1712 (3) | −0.9468 (3) | 0.2315 (3) | 0.0227 (11) | 0.7452 (12) |
O114 | −0.1764 (11) | −0.8019 (10) | 0.2623 (10) | 0.0227 (11) | 0.2548 (12) |
O23 | −0.7050 (3) | −0.8651 (3) | 0.2205 (3) | 0.0215 (11) | 0.7452 (12) |
O44 | −0.3526 (11) | −0.7716 (10) | 0.2517 (10) | 0.0221 (11) | 0.2548 (12) |
O21 | −0.4844 (3) | −0.9986 (3) | 0.2869 (3) | 0.0245 (8) | 0.7452 (12) |
O122 | −0.3824 (10) | −0.9825 (9) | 0.3071 (9) | 0.0245 (8) | 0.2548 (12) |
O25 | −0.5989 (3) | −1.1071 (3) | 0.3300 (3) | 0.0230 (11) | 0.7452 (12) |
O38 | −0.6906 (3) | −1.1444 (3) | 0.1689 (3) | 0.0245 (8) | 0.7452 (12) |
O138 | −0.6341 (10) | −1.1162 (9) | 0.1988 (10) | 0.0245 (8) | 0.2548 (12) |
O121 | −0.2984 (9) | −0.8832 (8) | 0.2780 (9) | 0.0215 (11) | 0.2548 (12) |
O30 | −0.8616 (4) | −1.1700 (4) | 0.1625 (4) | 0.0200 (14) | 0.7452 (12) |
O115 | 0.1208 (10) | −0.7679 (8) | 0.3093 (8) | 0.018 (3) | 0.2548 (12) |
O113 | −0.0245 (10) | −0.9996 (8) | 0.2061 (9) | 0.0193 (10) | 0.2548 (12) |
O112 | 0.1400 (10) | −0.9805 (9) | 0.2402 (9) | 0.0209 (11) | 0.2548 (12) |
O111 | 0.2009 (9) | −0.8690 (8) | 0.2757 (9) | 0.0209 (10) | 0.2548 (12) |
O33 | −1.1815 (5) | −1.3904 (5) | 0.0032 (4) | 0.0210 (15) | 0.7452 (12) |
O106 | −0.4024 (10) | −0.6398 (8) | 0.1678 (10) | 0.028 (4) | 0.2548 (12) |
O13 | −0.1234 (3) | −0.9829 (3) | 0.1897 (3) | 0.0193 (10) | 0.7452 (12) |
O108 | −0.3590 (11) | −0.4314 (9) | 0.1057 (10) | 0.0249 (11) | 0.2548 (12) |
O37 | −0.8311 (4) | −1.0330 (3) | 0.1035 (3) | 0.0274 (13) | 0.7452 (12) |
O109 | −0.662 (3) | −0.378 (2) | 0.013 (3) | 0.0259 (16) | 0.2548 (12) |
O31 | −0.7941 (3) | −1.2624 (3) | 0.1329 (3) | 0.0202 (10) | 0.7452 (12) |
O102 | −0.1373 (15) | −0.5813 (12) | 0.3373 (13) | 0.0222 (11) | 0.2548 (12) |
O3 | 0.0683 (3) | −0.6132 (3) | 0.3920 (3) | 0.0199 (11) | 0.7452 (12) |
O103 | 0.0258 (12) | −0.5771 (9) | 0.3778 (10) | 0.0199 (11) | 0.2548 (12) |
O11 | −0.1438 (4) | −0.7723 (3) | 0.2591 (3) | 0.0209 (11) | 0.7452 (12) |
O101 | −0.2058 (9) | −0.4908 (9) | 0.3677 (8) | 0.0194 (10) | 0.2548 (12) |
O18 | −0.3216 (4) | −0.8023 (3) | 0.2458 (3) | 0.0221 (11) | 0.7452 (12) |
O116 | −0.1262 (13) | −0.6380 (10) | 0.2063 (13) | 0.042 (5) | 0.2548 (12) |
O8 | −0.3670 (3) | −0.3770 (3) | 0.0743 (3) | 0.0249 (11) | 0.7452 (12) |
O119 | −0.1689 (16) | −0.7182 (13) | 0.3920 (13) | 0.035 (5) | 0.2548 (12) |
O22 | −0.6502 (4) | −0.9779 (3) | 0.2466 (3) | 0.0221 (11) | 0.7452 (12) |
O120 | −0.3106 (11) | −0.6062 (9) | 0.3304 (10) | 0.0240 (11) | 0.2548 (12) |
O117 | −0.2844 (13) | −0.7273 (12) | 0.1200 (12) | 0.0288 (14) | 0.2548 (12) |
O137 | −0.7880 (13) | −1.0252 (11) | 0.1120 (12) | 0.0274 (13) | 0.2548 (12) |
O125 | −0.6473 (16) | −1.1692 (12) | 0.3305 (13) | 0.0230 (11) | 0.2548 (12) |
O130 | −0.9075 (9) | −1.1118 (8) | 0.1603 (8) | 0.0200 (14) | 0.2548 (12) |
O2 | −0.0908 (3) | −0.6413 (3) | 0.3436 (3) | 0.0222 (11) | 0.7452 (12) |
O133 | −1.161 (2) | −1.3795 (18) | 0.0212 (17) | 0.0210 (15) | 0.2548 (12) |
C28 | −0.6418 (5) | −0.9117 (5) | 0.2353 (4) | 0.0157 (15) | 0.7452 (12) |
C138 | −0.944 (3) | −1.296 (3) | 0.094 (2) | 0.0197 (16) | 0.2548 (12) |
C139 | −1.0161 (16) | −1.3496 (14) | 0.0592 (13) | 0.0179 (14) | 0.2548 (12) |
H139 | −1.004547 | −1.398894 | 0.049961 | 0.021* | 0.2548 (12) |
C141 | −1.118 (2) | −1.2563 (18) | 0.064 (2) | 0.015 (2) | 0.2548 (12) |
H141 | −1.175324 | −1.242957 | 0.056420 | 0.018* | 0.2548 (12) |
C142 | −1.0455 (17) | −1.2067 (17) | 0.0972 (13) | 0.0138 (14) | 0.2548 (12) |
C9 | −0.4373 (4) | −0.4794 (4) | 0.1060 (4) | 0.0124 (14) | 0.7452 (12) |
C109 | −0.4586 (8) | −0.5263 (8) | 0.1114 (8) | 0.0124 (14) | 0.2548 (12) |
C114 | −0.4419 (8) | −0.4559 (9) | 0.0924 (9) | 0.0147 (13) | 0.2548 (12) |
C113 | −0.5104 (11) | −0.4063 (7) | 0.0594 (10) | 0.0198 (14) | 0.2548 (12) |
H113 | −0.499052 | −0.358216 | 0.046401 | 0.024* | 0.2548 (12) |
C112 | −0.5955 (9) | −0.4271 (9) | 0.0453 (12) | 0.019 (5) | 0.2548 (12) |
C111 | −0.6121 (8) | −0.4974 (9) | 0.0643 (12) | 0.0172 (16) | 0.2548 (12) |
H111 | −0.670308 | −0.511606 | 0.054687 | 0.021* | 0.2548 (12) |
C110 | −0.5437 (10) | −0.5470 (7) | 0.0973 (9) | 0.0135 (13) | 0.2548 (12) |
C31 | −0.4554 (5) | −1.2034 (5) | 0.4002 (4) | 0.0145 (13) | 0.7452 (12) |
C32 | −0.3876 (6) | −1.2522 (5) | 0.4321 (5) | 0.0148 (16) | 0.7452 (12) |
H32 | −0.329722 | −1.238670 | 0.439896 | 0.018* | 0.7452 (12) |
C132 | −0.4005 (19) | −1.280 (2) | 0.4331 (19) | 0.020 (4) | 0.2548 (12) |
H132 | −0.347423 | −1.259319 | 0.435595 | 0.024* | 0.2548 (12) |
C1 | −0.1064 (6) | −0.5748 (5) | 0.3567 (5) | 0.0176 (17) | 0.7452 (12) |
C101 | −0.1403 (14) | −0.5144 (13) | 0.3649 (11) | 0.0176 (17) | 0.2548 (12) |
C30 | −0.5425 (5) | −1.2225 (4) | 0.3865 (4) | 0.0134 (13) | 0.7452 (12) |
C130 | −0.560 (2) | −1.271 (2) | 0.395 (2) | 0.018 (4) | 0.2548 (12) |
C37 | −0.9470 (7) | −1.2747 (5) | 0.1017 (6) | 0.019 (3) | 0.7452 (12) |
C36 | −0.8622 (5) | −1.2337 (4) | 0.1338 (4) | 0.0140 (13) | 0.7452 (12) |
C136 | −0.888 (2) | −1.1743 (18) | 0.1463 (18) | 0.0140 (13) | 0.2548 (12) |
C125 | −0.5315 (9) | −0.9649 (6) | 0.2779 (9) | 0.0138 (13) | 0.2548 (12) |
H125 | −0.534707 | −1.014150 | 0.293078 | 0.017* | 0.2548 (12) |
C126 | −0.6057 (7) | −0.9207 (7) | 0.2524 (8) | 0.0121 (15) | 0.2548 (12) |
C127 | −0.6011 (7) | −0.8487 (7) | 0.2301 (8) | 0.0135 (13) | 0.2548 (12) |
H127 | −0.651787 | −0.818408 | 0.212672 | 0.016* | 0.2548 (12) |
C128 | −0.5223 (9) | −0.8209 (6) | 0.2334 (8) | 0.0139 (15) | 0.2548 (12) |
C123 | −0.4481 (7) | −0.8651 (8) | 0.2590 (8) | 0.0134 (13) | 0.2548 (12) |
C124 | −0.4528 (7) | −0.9371 (7) | 0.2812 (9) | 0.0139 (15) | 0.2548 (12) |
C33 | −0.4046 (7) | −1.3213 (6) | 0.4526 (6) | 0.018 (2) | 0.7452 (12) |
C133 | −0.403 (3) | −1.3478 (18) | 0.461 (2) | 0.023 (4) | 0.2548 (12) |
C39 | −1.0270 (5) | −1.3867 (5) | 0.0446 (4) | 0.0179 (14) | 0.7452 (12) |
H39 | −1.027493 | −1.435985 | 0.028122 | 0.021* | 0.7452 (12) |
C40 | −1.1053 (8) | −1.3525 (5) | 0.0379 (7) | 0.021 (2) | 0.7452 (12) |
C140 | −1.099 (3) | −1.326 (2) | 0.041 (3) | 0.021 (2) | 0.2548 (12) |
C14 | −0.4407 (4) | −0.4086 (4) | 0.0743 (4) | 0.0147 (13) | 0.7452 (12) |
C10 | −0.5164 (4) | −0.5083 (4) | 0.1021 (4) | 0.0135 (13) | 0.7452 (12) |
C15 | −0.1381 (5) | −0.8378 (4) | 0.2422 (4) | 0.0142 (14) | 0.7452 (12) |
C13 | −0.5192 (5) | −0.3691 (4) | 0.0416 (4) | 0.0198 (14) | 0.7452 (12) |
H13 | −0.520274 | −0.321458 | 0.020825 | 0.024* | 0.7452 (12) |
C34 | −0.4889 (5) | −1.3430 (5) | 0.4409 (4) | 0.0178 (13) | 0.7452 (12) |
H34 | −0.499528 | −1.390615 | 0.455587 | 0.021* | 0.7452 (12) |
C134 | −0.4800 (14) | −1.3833 (14) | 0.4570 (12) | 0.0178 (13) | 0.2548 (12) |
H134 | −0.478923 | −1.432329 | 0.474392 | 0.021* | 0.2548 (12) |
C6 | 0.0175 (3) | −0.4015 (2) | 0.4386 (3) | 0.0166 (14) | 0.7452 (12) |
H6 | 0.006189 | −0.352643 | 0.449446 | 0.020* | 0.7452 (12) |
C5 | 0.1028 (2) | −0.4233 (2) | 0.4545 (3) | 0.0133 (18) | 0.7452 (12) |
C4 | 0.1194 (2) | −0.4947 (2) | 0.4386 (3) | 0.0140 (14) | 0.7452 (12) |
H4 | 0.177671 | −0.509631 | 0.449421 | 0.017* | 0.7452 (12) |
C3 | 0.0508 (3) | −0.54440 (19) | 0.4068 (3) | 0.0151 (14) | 0.7452 (12) |
C2 | −0.0344 (2) | −0.5226 (2) | 0.3910 (3) | 0.0123 (12) | 0.7452 (12) |
C7 | −0.0511 (2) | −0.4512 (3) | 0.4068 (3) | 0.0189 (18) | 0.7452 (12) |
C8 | −0.3542 (5) | −0.5198 (4) | 0.1396 (4) | 0.0150 (13) | 0.7452 (12) |
C108 | −0.387 (2) | −0.5769 (15) | 0.1490 (16) | 0.0150 (13) | 0.2548 (12) |
C23 | −0.4038 (2) | −0.9016 (2) | 0.2675 (3) | 0.0135 (13) | 0.7452 (12) |
H23 | −0.353725 | −0.932624 | 0.284605 | 0.016* | 0.7452 (12) |
C22 | −0.3978 (2) | −0.8298 (2) | 0.2454 (3) | 0.0121 (15) | 0.7452 (12) |
C27 | −0.4711 (3) | −0.78449 (18) | 0.2203 (3) | 0.0138 (13) | 0.7452 (12) |
H27 | −0.466987 | −0.735392 | 0.205205 | 0.017* | 0.7452 (12) |
C26 | −0.5502 (2) | −0.8110 (2) | 0.2173 (3) | 0.0111 (14) | 0.7452 (12) |
C25 | −0.5562 (2) | −0.8828 (2) | 0.2394 (3) | 0.0134 (13) | 0.7452 (12) |
C24 | −0.4830 (3) | −0.92816 (18) | 0.2645 (3) | 0.0139 (15) | 0.7452 (12) |
C119 | −0.1017 (7) | −0.8306 (7) | 0.2588 (9) | 0.0132 (15) | 0.2548 (12) |
C118 | −0.0990 (7) | −0.9016 (7) | 0.2332 (9) | 0.0181 (14) | 0.2548 (12) |
H118 | −0.150000 | −0.931491 | 0.215974 | 0.022* | 0.2548 (12) |
C117 | −0.0217 (8) | −0.9290 (6) | 0.2328 (8) | 0.0119 (14) | 0.2548 (12) |
C116 | 0.0529 (7) | −0.8854 (7) | 0.2580 (8) | 0.0119 (12) | 0.2548 (12) |
C121 | 0.0503 (7) | −0.8143 (7) | 0.2836 (8) | 0.0111 (15) | 0.2548 (12) |
C120 | −0.0270 (9) | −0.7869 (6) | 0.2840 (8) | 0.0128 (12) | 0.2548 (12) |
H120 | −0.028859 | −0.738289 | 0.301500 | 0.015* | 0.2548 (12) |
C104 | 0.1031 (8) | −0.4684 (9) | 0.4347 (11) | 0.0140 (14) | 0.2548 (12) |
H104 | 0.156275 | −0.490074 | 0.438398 | 0.017* | 0.2548 (12) |
C105 | 0.1027 (8) | −0.3966 (9) | 0.4593 (11) | 0.0133 (18) | 0.2548 (12) |
C106 | 0.0249 (10) | −0.3649 (7) | 0.4539 (9) | 0.0166 (14) | 0.2548 (12) |
H106 | 0.024616 | −0.315770 | 0.470699 | 0.020* | 0.2548 (12) |
C107 | −0.0525 (8) | −0.4050 (9) | 0.4240 (9) | 0.0189 (18) | 0.2548 (12) |
C102 | −0.0521 (8) | −0.4769 (9) | 0.3995 (9) | 0.0123 (12) | 0.2548 (12) |
C103 | 0.0257 (11) | −0.5086 (7) | 0.4049 (9) | 0.0151 (14) | 0.2548 (12) |
C129 | −0.6452 (15) | −1.2309 (13) | 0.3624 (13) | 0.022 (3) | 0.2548 (12) |
C131 | −0.4815 (17) | −1.2422 (14) | 0.3997 (12) | 0.018 (3) | 0.2548 (12) |
C135 | −0.5603 (15) | −1.3415 (16) | 0.4250 (12) | 0.021 (3) | 0.2548 (12) |
C137 | −0.9634 (16) | −1.2265 (14) | 0.1099 (12) | 0.019 (3) | 0.2548 (12) |
C115 | 0.1374 (15) | −0.9141 (14) | 0.2596 (13) | 0.0142 (14) | 0.2548 (12) |
C41 | −1.1037 (6) | −1.2814 (5) | 0.0626 (6) | 0.015 (2) | 0.7452 (12) |
H41 | −1.156533 | −1.258336 | 0.057976 | 0.018* | 0.7452 (12) |
C29 | −0.6140 (6) | −1.1706 (5) | 0.3476 (5) | 0.0156 (16) | 0.7452 (12) |
C35 | −0.5570 (7) | −1.2934 (6) | 0.4073 (5) | 0.017 (2) | 0.7452 (12) |
C122 | −0.3606 (15) | −0.8372 (15) | 0.2647 (13) | 0.0157 (15) | 0.2548 (12) |
C11 | −0.5944 (5) | −0.4698 (4) | 0.0710 (4) | 0.0172 (16) | 0.7452 (12) |
H11 | −0.646571 | −0.490500 | 0.070926 | 0.021* | 0.7452 (12) |
C18 | 0.0236 (3) | −0.96355 (18) | 0.2119 (3) | 0.0181 (14) | 0.7452 (12) |
H18 | 0.024763 | −1.011611 | 0.192853 | 0.022* | 0.7452 (12) |
C17 | −0.0530 (2) | −0.9367 (2) | 0.2143 (3) | 0.0119 (14) | 0.7452 (12) |
C16 | −0.0547 (2) | −0.8664 (2) | 0.2421 (3) | 0.0119 (12) | 0.7452 (12) |
C21 | 0.0202 (3) | −0.82292 (19) | 0.2676 (3) | 0.0111 (15) | 0.7452 (12) |
C20 | 0.0967 (2) | −0.8498 (2) | 0.2651 (3) | 0.0128 (12) | 0.7452 (12) |
H20 | 0.147879 | −0.820116 | 0.282530 | 0.015* | 0.7452 (12) |
C19 | 0.0984 (2) | −0.9201 (2) | 0.2373 (3) | 0.0132 (15) | 0.7452 (12) |
C12 | −0.5956 (5) | −0.4008 (5) | 0.0399 (5) | 0.0186 (17) | 0.7452 (12) |
C38 | −0.9485 (5) | −1.3470 (5) | 0.0758 (4) | 0.0197 (16) | 0.7452 (12) |
C42 | −1.0253 (5) | −1.2432 (4) | 0.0943 (4) | 0.0138 (14) | 0.7452 (12) |
O140 | −0.1885 (13) | −0.3004 (11) | 0.5207 (11) | 0.039 (4) | 0.2548 (12) |
O43 | −0.3233 (4) | −0.5907 (4) | 0.5167 (4) | 0.0352 (14) | 0.7452 (12) |
O146 | −0.3236 (12) | −0.5553 (10) | 0.4623 (10) | 0.034 (4) | 0.2548 (12) |
O39 | −0.8086 (5) | −0.4490 (4) | −0.0269 (4) | 0.0428 (15) | 0.7452 (12) |
O139 | −0.8110 (14) | −0.4132 (12) | 0.0270 (12) | 0.0428 (15) | 0.2548 (12) |
O141 | −0.1794 (13) | −0.8411 (12) | 0.4826 (11) | 0.0383 (14) | 0.2548 (12) |
O41 | −0.1741 (4) | −0.8087 (4) | 0.5414 (4) | 0.0383 (14) | 0.7452 (12) |
O40 | −0.1916 (4) | −0.3372 (4) | 0.4700 (4) | 0.0376 (15) | 0.7452 (12) |
U11 | U22 | U33 | U12 | U13 | U23 | |
Ce2 | 0.0155 (2) | 0.0102 (2) | 0.0259 (2) | 0.00057 (9) | 0.01116 (15) | 0.00113 (10) |
Ce1 | 0.0139 (2) | 0.0106 (2) | 0.0254 (2) | −0.00034 (9) | 0.00975 (15) | −0.00130 (10) |
O123 | 0.021 (3) | 0.013 (2) | 0.040 (3) | 0.003 (2) | 0.020 (2) | −0.004 (2) |
O4 | 0.006 (5) | 0.026 (2) | 0.019 (4) | −0.002 (5) | −0.003 (4) | 0.000 (3) |
O104 | 0.006 (5) | 0.026 (2) | 0.019 (4) | −0.002 (5) | −0.003 (4) | 0.000 (3) |
O34 | 0.020 (3) | 0.008 (3) | 0.032 (3) | 0.002 (2) | 0.016 (2) | −0.007 (2) |
O134 | 0.020 (3) | 0.008 (3) | 0.032 (3) | 0.002 (2) | 0.016 (2) | −0.007 (2) |
O6 | 0.012 (3) | 0.019 (3) | 0.020 (3) | −0.001 (3) | 0.007 (2) | 0.001 (2) |
O15 | 0.018 (2) | 0.015 (2) | 0.027 (3) | −0.001 (2) | 0.010 (2) | −0.006 (2) |
O9 | 0.022 (4) | 0.021 (6) | 0.027 (4) | 0.009 (3) | 0.003 (3) | 0.009 (4) |
O28 | 0.024 (4) | 0.033 (4) | 0.010 (5) | 0.003 (3) | 0.003 (4) | 0.008 (4) |
O7 | 0.014 (2) | 0.016 (2) | 0.020 (2) | −0.0021 (19) | 0.0077 (19) | 0.0040 (19) |
O107 | 0.038 (9) | 0.014 (8) | 0.036 (10) | 0.014 (8) | 0.011 (8) | −0.002 (7) |
O36 | 0.024 (3) | 0.018 (3) | 0.036 (3) | −0.001 (2) | 0.019 (2) | −0.002 (2) |
O136 | 0.024 (3) | 0.018 (3) | 0.036 (3) | −0.001 (2) | 0.019 (2) | −0.002 (2) |
O1 | 0.016 (2) | 0.020 (3) | 0.021 (2) | 0.003 (2) | 0.006 (2) | −0.001 (2) |
O10 | 0.017 (3) | 0.013 (3) | 0.025 (3) | 0.003 (2) | 0.011 (2) | 0.005 (2) |
O110 | 0.025 (9) | 0.018 (8) | 0.046 (10) | −0.007 (7) | 0.010 (8) | −0.003 (7) |
O32 | 0.020 (3) | 0.027 (3) | 0.024 (3) | 0.008 (2) | 0.002 (2) | −0.004 (2) |
O27 | 0.017 (2) | 0.023 (3) | 0.028 (3) | −0.002 (2) | 0.005 (2) | 0.005 (2) |
O24 | 0.020 (2) | 0.015 (3) | 0.017 (2) | 0.002 (2) | 0.0079 (19) | 0.0008 (19) |
O124 | 0.020 (2) | 0.015 (3) | 0.017 (2) | 0.002 (2) | 0.0079 (19) | 0.0008 (19) |
O128 | 0.024 (4) | 0.033 (4) | 0.010 (5) | 0.003 (3) | 0.003 (4) | 0.008 (4) |
O29 | 0.014 (2) | 0.011 (2) | 0.032 (3) | −0.0026 (18) | 0.011 (2) | 0.004 (2) |
O127 | 0.017 (2) | 0.023 (3) | 0.028 (3) | −0.002 (2) | 0.005 (2) | 0.005 (2) |
O129 | 0.014 (2) | 0.011 (2) | 0.032 (3) | −0.0026 (18) | 0.011 (2) | 0.004 (2) |
O131 | 0.015 (2) | 0.025 (3) | 0.018 (2) | 0.007 (2) | 0.0050 (19) | −0.0019 (19) |
O5 | 0.018 (2) | 0.027 (3) | 0.021 (3) | 0.011 (2) | 0.001 (2) | −0.0017 (19) |
O132 | 0.032 (10) | 0.027 (10) | 0.038 (10) | −0.020 (7) | 0.014 (8) | −0.006 (7) |
O105 | 0.018 (2) | 0.027 (3) | 0.021 (3) | 0.011 (2) | 0.001 (2) | −0.0017 (19) |
O12 | 0.012 (2) | 0.017 (2) | 0.033 (3) | −0.0002 (19) | 0.009 (2) | −0.002 (2) |
O135 | 0.022 (3) | 0.017 (3) | 0.025 (3) | 0.004 (2) | 0.004 (3) | −0.001 (2) |
O35 | 0.022 (3) | 0.017 (3) | 0.025 (3) | 0.004 (2) | 0.004 (3) | −0.001 (2) |
O17 | 0.033 (4) | 0.026 (3) | 0.026 (2) | 0.003 (3) | 0.010 (3) | −0.006 (2) |
O20 | 0.025 (3) | 0.016 (3) | 0.041 (3) | 0.002 (2) | 0.023 (3) | 0.001 (2) |
O19 | 0.026 (4) | 0.015 (3) | 0.024 (3) | −0.002 (3) | 0.013 (3) | −0.004 (2) |
O16 | 0.024 (3) | 0.029 (3) | 0.036 (3) | −0.001 (2) | 0.024 (2) | 0.001 (2) |
O26 | 0.015 (2) | 0.023 (2) | 0.019 (2) | −0.003 (2) | 0.0071 (19) | 0.0063 (19) |
O126 | 0.015 (2) | 0.023 (2) | 0.019 (2) | −0.003 (2) | 0.0071 (19) | 0.0063 (19) |
O14 | 0.019 (3) | 0.014 (2) | 0.043 (3) | −0.003 (2) | 0.021 (2) | −0.002 (2) |
O114 | 0.019 (3) | 0.014 (2) | 0.043 (3) | −0.003 (2) | 0.021 (2) | −0.002 (2) |
O23 | 0.014 (2) | 0.017 (2) | 0.035 (3) | −0.002 (2) | 0.012 (2) | 0.002 (2) |
O44 | 0.018 (3) | 0.016 (3) | 0.038 (3) | −0.003 (2) | 0.017 (2) | 0.000 (2) |
O21 | 0.0229 (18) | 0.0204 (19) | 0.036 (2) | 0.0037 (15) | 0.0178 (16) | 0.0067 (15) |
O122 | 0.0229 (18) | 0.0204 (19) | 0.036 (2) | 0.0037 (15) | 0.0178 (16) | 0.0067 (15) |
O25 | 0.019 (2) | 0.015 (2) | 0.032 (3) | 0.0016 (19) | 0.008 (2) | 0.004 (2) |
O38 | 0.0229 (18) | 0.0204 (19) | 0.036 (2) | 0.0037 (15) | 0.0178 (16) | 0.0067 (15) |
O138 | 0.0229 (18) | 0.0204 (19) | 0.036 (2) | 0.0037 (15) | 0.0178 (16) | 0.0067 (15) |
O121 | 0.014 (2) | 0.017 (2) | 0.035 (3) | −0.002 (2) | 0.012 (2) | 0.002 (2) |
O30 | 0.017 (3) | 0.017 (3) | 0.026 (4) | −0.002 (3) | 0.008 (3) | −0.002 (2) |
O115 | 0.029 (8) | 0.011 (7) | 0.015 (7) | 0.004 (6) | 0.010 (6) | 0.003 (5) |
O113 | 0.019 (2) | 0.010 (2) | 0.031 (3) | −0.0043 (18) | 0.013 (2) | −0.0019 (19) |
O112 | 0.015 (2) | 0.016 (3) | 0.035 (3) | 0.002 (2) | 0.014 (2) | −0.003 (2) |
O111 | 0.012 (2) | 0.017 (2) | 0.033 (3) | −0.0002 (19) | 0.009 (2) | −0.002 (2) |
O33 | 0.018 (5) | 0.020 (4) | 0.015 (4) | −0.009 (3) | −0.002 (3) | −0.011 (3) |
O106 | 0.028 (8) | 0.009 (7) | 0.049 (10) | 0.007 (6) | 0.019 (8) | 0.002 (6) |
O13 | 0.019 (2) | 0.010 (2) | 0.031 (3) | −0.0043 (18) | 0.013 (2) | −0.0019 (19) |
O108 | 0.019 (2) | 0.026 (3) | 0.025 (3) | −0.007 (2) | 0.005 (2) | 0.009 (2) |
O37 | 0.026 (3) | 0.022 (3) | 0.032 (3) | 0.004 (3) | 0.010 (3) | 0.003 (2) |
O109 | 0.022 (4) | 0.021 (6) | 0.027 (4) | 0.009 (3) | 0.003 (3) | 0.009 (4) |
O31 | 0.015 (2) | 0.025 (3) | 0.018 (2) | 0.007 (2) | 0.0050 (19) | −0.0019 (19) |
O102 | 0.017 (2) | 0.011 (2) | 0.036 (3) | −0.0049 (19) | 0.008 (2) | −0.003 (2) |
O3 | 0.015 (3) | 0.016 (3) | 0.026 (3) | −0.0030 (19) | 0.005 (2) | −0.002 (2) |
O103 | 0.015 (3) | 0.016 (3) | 0.026 (3) | −0.0030 (19) | 0.005 (2) | −0.002 (2) |
O11 | 0.015 (2) | 0.016 (3) | 0.035 (3) | 0.002 (2) | 0.014 (2) | −0.003 (2) |
O101 | 0.016 (2) | 0.020 (3) | 0.021 (2) | 0.003 (2) | 0.006 (2) | −0.001 (2) |
O18 | 0.021 (3) | 0.013 (2) | 0.040 (3) | 0.003 (2) | 0.020 (2) | −0.004 (2) |
O116 | 0.041 (11) | 0.021 (9) | 0.092 (15) | 0.006 (8) | 0.054 (12) | 0.002 (10) |
O8 | 0.019 (2) | 0.026 (3) | 0.025 (3) | −0.007 (2) | 0.005 (2) | 0.009 (2) |
O119 | 0.038 (14) | 0.037 (13) | 0.028 (10) | −0.009 (11) | 0.013 (11) | −0.011 (8) |
O22 | 0.018 (3) | 0.016 (3) | 0.038 (3) | −0.003 (2) | 0.017 (2) | 0.000 (2) |
O120 | 0.025 (3) | 0.016 (3) | 0.041 (3) | 0.002 (2) | 0.023 (3) | 0.001 (2) |
O117 | 0.033 (4) | 0.026 (3) | 0.026 (2) | 0.003 (3) | 0.010 (3) | −0.006 (2) |
O137 | 0.026 (3) | 0.022 (3) | 0.032 (3) | 0.004 (3) | 0.010 (3) | 0.003 (2) |
O125 | 0.019 (2) | 0.015 (2) | 0.032 (3) | 0.0016 (19) | 0.008 (2) | 0.004 (2) |
O130 | 0.017 (3) | 0.017 (3) | 0.026 (4) | −0.002 (3) | 0.008 (3) | −0.002 (2) |
O2 | 0.017 (2) | 0.011 (2) | 0.036 (3) | −0.0049 (19) | 0.008 (2) | −0.003 (2) |
O133 | 0.018 (5) | 0.020 (4) | 0.015 (4) | −0.009 (3) | −0.002 (3) | −0.011 (3) |
C28 | 0.009 (3) | 0.025 (4) | 0.012 (3) | 0.002 (3) | 0.003 (3) | 0.001 (3) |
C138 | 0.023 (4) | 0.026 (5) | 0.006 (3) | 0.011 (3) | 0.002 (3) | 0.001 (3) |
C139 | 0.024 (3) | 0.009 (4) | 0.015 (3) | 0.002 (3) | 0.004 (3) | 0.002 (3) |
C141 | 0.012 (5) | 0.020 (7) | 0.012 (3) | 0.004 (4) | 0.004 (3) | 0.000 (5) |
C142 | 0.022 (4) | 0.010 (4) | 0.012 (3) | 0.000 (3) | 0.011 (3) | −0.003 (3) |
C9 | 0.015 (3) | 0.014 (4) | 0.006 (3) | −0.001 (3) | 0.002 (2) | 0.004 (3) |
C109 | 0.015 (3) | 0.014 (4) | 0.006 (3) | −0.001 (3) | 0.002 (2) | 0.004 (3) |
C114 | 0.016 (3) | 0.016 (3) | 0.013 (3) | −0.004 (3) | 0.006 (3) | −0.002 (3) |
C113 | 0.025 (3) | 0.018 (4) | 0.015 (3) | 0.001 (3) | 0.006 (3) | 0.003 (3) |
C112 | 0.024 (7) | 0.016 (9) | 0.016 (8) | −0.001 (7) | 0.006 (7) | 0.002 (8) |
C111 | 0.022 (4) | 0.015 (5) | 0.019 (3) | 0.001 (3) | 0.012 (3) | −0.002 (4) |
C110 | 0.016 (3) | 0.015 (4) | 0.013 (3) | −0.003 (3) | 0.010 (3) | −0.002 (3) |
C31 | 0.017 (3) | 0.017 (4) | 0.007 (3) | 0.003 (3) | 0.002 (3) | −0.002 (3) |
C32 | 0.015 (3) | 0.017 (4) | 0.011 (3) | 0.003 (3) | 0.004 (2) | 0.001 (3) |
C132 | 0.021 (6) | 0.019 (7) | 0.021 (6) | −0.002 (6) | 0.010 (5) | −0.001 (6) |
C1 | 0.016 (4) | 0.025 (4) | 0.013 (3) | 0.000 (3) | 0.007 (3) | 0.007 (3) |
C101 | 0.016 (4) | 0.025 (4) | 0.013 (3) | 0.000 (3) | 0.007 (3) | 0.007 (3) |
C30 | 0.016 (3) | 0.016 (3) | 0.010 (3) | 0.000 (3) | 0.007 (2) | −0.001 (2) |
C130 | 0.018 (6) | 0.018 (7) | 0.021 (7) | 0.004 (7) | 0.012 (6) | 0.003 (6) |
C37 | 0.023 (4) | 0.021 (7) | 0.018 (4) | 0.004 (5) | 0.014 (3) | 0.004 (5) |
C36 | 0.019 (3) | 0.014 (3) | 0.011 (3) | 0.002 (3) | 0.008 (3) | 0.003 (2) |
C136 | 0.019 (3) | 0.014 (3) | 0.011 (3) | 0.002 (3) | 0.008 (3) | 0.003 (2) |
C125 | 0.015 (3) | 0.010 (3) | 0.017 (3) | −0.009 (3) | 0.007 (3) | −0.004 (2) |
C126 | 0.007 (3) | 0.013 (3) | 0.016 (4) | −0.003 (3) | 0.004 (3) | −0.004 (3) |
C127 | 0.009 (3) | 0.015 (3) | 0.016 (3) | −0.005 (3) | 0.005 (2) | −0.004 (3) |
C128 | 0.020 (4) | 0.014 (3) | 0.007 (3) | 0.004 (3) | 0.005 (3) | 0.001 (2) |
C123 | 0.011 (3) | 0.017 (3) | 0.012 (3) | −0.004 (3) | 0.005 (2) | −0.005 (2) |
C124 | 0.020 (4) | 0.014 (3) | 0.007 (3) | 0.004 (3) | 0.005 (3) | 0.001 (2) |
C33 | 0.020 (3) | 0.021 (5) | 0.011 (4) | 0.006 (4) | 0.005 (3) | −0.003 (4) |
C133 | 0.026 (7) | 0.021 (8) | 0.018 (7) | 0.001 (7) | 0.007 (6) | −0.002 (7) |
C39 | 0.024 (3) | 0.009 (4) | 0.015 (3) | 0.002 (3) | 0.004 (3) | 0.002 (3) |
C40 | 0.023 (4) | 0.021 (7) | 0.017 (3) | −0.011 (5) | 0.006 (3) | 0.006 (5) |
C140 | 0.023 (4) | 0.021 (7) | 0.017 (3) | −0.011 (5) | 0.006 (3) | 0.006 (5) |
C14 | 0.016 (3) | 0.016 (3) | 0.013 (3) | −0.004 (3) | 0.006 (3) | −0.002 (3) |
C10 | 0.016 (3) | 0.015 (4) | 0.013 (3) | −0.003 (3) | 0.010 (3) | −0.002 (3) |
C15 | 0.007 (3) | 0.017 (3) | 0.018 (4) | 0.000 (3) | 0.004 (3) | 0.001 (3) |
C13 | 0.025 (3) | 0.018 (4) | 0.015 (3) | 0.001 (3) | 0.006 (3) | 0.003 (3) |
C34 | 0.020 (3) | 0.020 (3) | 0.012 (3) | 0.002 (3) | 0.005 (2) | −0.002 (3) |
C134 | 0.020 (3) | 0.020 (3) | 0.012 (3) | 0.002 (3) | 0.005 (2) | −0.002 (3) |
C6 | 0.026 (3) | 0.011 (4) | 0.012 (3) | 0.002 (3) | 0.007 (3) | −0.002 (3) |
C5 | 0.020 (3) | 0.008 (5) | 0.011 (3) | −0.002 (3) | 0.005 (2) | −0.001 (3) |
C4 | 0.014 (3) | 0.009 (4) | 0.022 (3) | 0.001 (3) | 0.010 (3) | 0.001 (3) |
C3 | 0.016 (3) | 0.015 (4) | 0.013 (3) | 0.001 (3) | 0.004 (3) | 0.003 (3) |
C2 | 0.016 (3) | 0.012 (3) | 0.004 (2) | 0.000 (3) | 0.000 (2) | 0.000 (2) |
C7 | 0.023 (4) | 0.021 (5) | 0.012 (3) | 0.014 (4) | 0.007 (3) | 0.008 (3) |
C8 | 0.014 (3) | 0.019 (3) | 0.016 (3) | −0.004 (3) | 0.011 (3) | −0.006 (3) |
C108 | 0.014 (3) | 0.019 (3) | 0.016 (3) | −0.004 (3) | 0.011 (3) | −0.006 (3) |
C23 | 0.009 (3) | 0.015 (3) | 0.016 (3) | −0.005 (3) | 0.005 (2) | −0.004 (3) |
C22 | 0.007 (3) | 0.013 (3) | 0.016 (4) | −0.003 (3) | 0.004 (3) | −0.004 (3) |
C27 | 0.015 (3) | 0.010 (3) | 0.017 (3) | −0.009 (3) | 0.007 (3) | −0.004 (2) |
C26 | 0.009 (3) | 0.008 (3) | 0.015 (3) | 0.003 (3) | 0.003 (3) | −0.003 (2) |
C25 | 0.011 (3) | 0.017 (3) | 0.012 (3) | −0.004 (3) | 0.005 (2) | −0.005 (2) |
C24 | 0.020 (4) | 0.014 (3) | 0.007 (3) | 0.004 (3) | 0.005 (3) | 0.001 (2) |
C119 | 0.010 (3) | 0.014 (3) | 0.016 (4) | 0.000 (3) | 0.005 (3) | 0.005 (3) |
C118 | 0.018 (3) | 0.011 (3) | 0.028 (4) | 0.010 (3) | 0.013 (3) | 0.001 (3) |
C117 | 0.006 (4) | 0.017 (3) | 0.008 (3) | −0.004 (3) | −0.001 (3) | 0.000 (2) |
C116 | 0.013 (3) | 0.014 (3) | 0.013 (3) | 0.002 (3) | 0.010 (2) | 0.003 (2) |
C121 | 0.016 (4) | 0.008 (3) | 0.008 (3) | 0.000 (3) | 0.003 (3) | 0.003 (2) |
C120 | 0.009 (3) | 0.019 (3) | 0.011 (3) | 0.002 (3) | 0.004 (2) | 0.003 (2) |
C104 | 0.014 (3) | 0.009 (4) | 0.022 (3) | 0.001 (3) | 0.010 (3) | 0.001 (3) |
C105 | 0.020 (3) | 0.008 (5) | 0.011 (3) | −0.002 (3) | 0.005 (2) | −0.001 (3) |
C106 | 0.026 (3) | 0.011 (4) | 0.012 (3) | 0.002 (3) | 0.007 (3) | −0.002 (3) |
C107 | 0.023 (4) | 0.021 (5) | 0.012 (3) | 0.014 (4) | 0.007 (3) | 0.008 (3) |
C102 | 0.016 (3) | 0.012 (3) | 0.004 (2) | 0.000 (3) | 0.000 (2) | 0.000 (2) |
C103 | 0.016 (3) | 0.015 (4) | 0.013 (3) | 0.001 (3) | 0.004 (3) | 0.003 (3) |
C129 | 0.025 (6) | 0.015 (7) | 0.023 (6) | 0.006 (6) | 0.008 (5) | 0.002 (6) |
C131 | 0.024 (7) | 0.016 (7) | 0.020 (6) | −0.005 (7) | 0.013 (6) | 0.001 (6) |
C135 | 0.022 (6) | 0.021 (7) | 0.016 (6) | 0.006 (6) | 0.004 (5) | 0.002 (6) |
C137 | 0.023 (4) | 0.021 (7) | 0.018 (4) | 0.004 (5) | 0.014 (3) | 0.004 (5) |
C115 | 0.007 (3) | 0.017 (3) | 0.018 (4) | 0.000 (3) | 0.004 (3) | 0.001 (3) |
C41 | 0.012 (5) | 0.020 (7) | 0.012 (3) | 0.004 (4) | 0.004 (3) | 0.000 (5) |
C29 | 0.008 (3) | 0.021 (4) | 0.018 (3) | 0.002 (3) | 0.006 (3) | −0.003 (3) |
C35 | 0.021 (3) | 0.018 (5) | 0.008 (4) | −0.002 (4) | 0.003 (3) | −0.005 (3) |
C122 | 0.009 (3) | 0.025 (4) | 0.012 (3) | 0.002 (3) | 0.003 (3) | 0.001 (3) |
C11 | 0.022 (4) | 0.015 (5) | 0.019 (3) | 0.001 (3) | 0.012 (3) | −0.002 (4) |
C18 | 0.018 (3) | 0.011 (3) | 0.028 (4) | 0.010 (3) | 0.013 (3) | 0.001 (3) |
C17 | 0.006 (4) | 0.017 (3) | 0.008 (3) | −0.004 (3) | −0.001 (3) | 0.000 (2) |
C16 | 0.013 (3) | 0.014 (3) | 0.013 (3) | 0.002 (3) | 0.010 (2) | 0.003 (2) |
C21 | 0.016 (4) | 0.008 (3) | 0.008 (3) | 0.000 (3) | 0.003 (3) | 0.003 (2) |
C20 | 0.009 (3) | 0.019 (3) | 0.011 (3) | 0.002 (3) | 0.004 (2) | 0.003 (2) |
C19 | 0.010 (3) | 0.014 (3) | 0.016 (4) | 0.000 (3) | 0.005 (3) | 0.005 (3) |
C12 | 0.022 (4) | 0.019 (4) | 0.009 (3) | 0.009 (3) | 0.001 (3) | 0.004 (3) |
C38 | 0.023 (4) | 0.026 (5) | 0.006 (3) | 0.011 (3) | 0.002 (3) | 0.001 (3) |
C42 | 0.022 (4) | 0.010 (4) | 0.012 (3) | 0.000 (3) | 0.011 (3) | −0.003 (3) |
O140 | 0.045 (11) | 0.034 (10) | 0.045 (11) | −0.016 (9) | 0.026 (9) | −0.023 (9) |
O43 | 0.041 (3) | 0.025 (3) | 0.050 (4) | 0.002 (3) | 0.029 (3) | 0.002 (3) |
O146 | 0.045 (11) | 0.021 (9) | 0.038 (10) | −0.013 (8) | 0.019 (8) | −0.009 (8) |
O39 | 0.045 (4) | 0.039 (4) | 0.052 (4) | −0.006 (3) | 0.027 (3) | −0.009 (3) |
O139 | 0.045 (4) | 0.039 (4) | 0.052 (4) | −0.006 (3) | 0.027 (3) | −0.009 (3) |
O141 | 0.045 (3) | 0.039 (3) | 0.037 (3) | −0.006 (3) | 0.023 (3) | −0.007 (3) |
O41 | 0.045 (3) | 0.039 (3) | 0.037 (3) | −0.006 (3) | 0.023 (3) | −0.007 (3) |
O40 | 0.043 (4) | 0.027 (3) | 0.055 (4) | 0.007 (3) | 0.033 (3) | 0.007 (3) |
Ce2—O123 | 2.540 (17) | C109—C114 | 1.3900 |
Ce2—O136 | 2.431 (15) | C109—C110 | 1.3900 |
Ce2—O135 | 2.524 (18) | C109—C108 | 1.44 (3) |
Ce2—O35 | 2.520 (5) | C114—C113 | 1.3900 |
Ce2—O25 | 2.514 (5) | C113—H113 | 0.9500 |
Ce2—O38 | 2.457 (5) | C113—C112 | 1.3900 |
Ce2—O30 | 2.518 (6) | C112—C111 | 1.3900 |
Ce2—O112i | 2.436 (15) | C111—H111 | 0.9500 |
Ce2—O37 | 2.539 (6) | C111—C110 | 1.3900 |
Ce2—O22 | 2.465 (5) | C31—C32 | 1.371 (11) |
Ce2—O137 | 2.49 (2) | C31—C30 | 1.417 (11) |
Ce2—O130 | 2.486 (14) | C32—H32 | 0.9500 |
Ce1—O6 | 2.509 (6) | C32—C33 | 1.382 (12) |
Ce1—O17 | 2.516 (6) | C132—H132 | 0.9500 |
Ce1—O20 | 2.560 (5) | C132—C133 | 1.35 (4) |
Ce1—O19 | 2.539 (7) | C132—C131 | 1.42 (4) |
Ce1—O16 | 2.441 (5) | C1—C2 | 1.460 (10) |
Ce1—O44 | 2.453 (15) | C101—C102 | 1.51 (2) |
Ce1—O106 | 2.526 (16) | C30—C29 | 1.465 (11) |
Ce1—O102 | 2.524 (19) | C30—C35 | 1.401 (12) |
Ce1—O11 | 2.464 (5) | C130—C129 | 1.49 (4) |
Ce1—O119 | 2.47 (2) | C130—C131 | 1.37 (5) |
Ce1—O120 | 2.418 (15) | C130—C135 | 1.42 (4) |
Ce1—O2 | 2.538 (5) | C37—C36 | 1.494 (13) |
O123—C126 | 1.398 (18) | C37—C38 | 1.402 (12) |
O4—C5 | 1.353 (12) | C37—C42 | 1.385 (13) |
O104—C105 | 1.38 (3) | C136—C137 | 1.50 (4) |
O34—C42 | 1.380 (9) | C125—H125 | 0.9500 |
O134—C142 | 1.36 (3) | C125—C126 | 1.3900 |
O6—C8 | 1.295 (10) | C125—C124 | 1.3900 |
O15—C21 | 1.356 (6) | C126—C127 | 1.3900 |
O9—C12 | 1.362 (10) | C127—H127 | 0.9500 |
O28—C33 | 1.380 (15) | C127—C128 | 1.3900 |
O7—C8 | 1.263 (8) | C128—C123 | 1.3900 |
O107—C108 | 1.29 (4) | C123—C124 | 1.3900 |
O1—C1 | 1.293 (11) | C123—C122 | 1.51 (3) |
O10—C10 | 1.377 (8) | C33—C34 | 1.393 (14) |
O110—C110 | 1.33 (2) | C133—C134 | 1.41 (5) |
O32—C38 | 1.353 (9) | C39—H39 | 0.9500 |
O27—C35 | 1.345 (13) | C39—C40 | 1.409 (16) |
O24—C26 | 1.362 (6) | C39—C38 | 1.400 (12) |
O124—C128 | 1.358 (18) | C40—C41 | 1.374 (14) |
O128—C133 | 1.30 (5) | C14—C13 | 1.398 (10) |
O29—C31 | 1.368 (11) | C10—C11 | 1.383 (10) |
O127—C135 | 1.29 (3) | C15—C16 | 1.492 (8) |
O129—C131 | 1.39 (3) | C13—H13 | 0.9500 |
O131—C136 | 1.24 (4) | C13—C12 | 1.392 (11) |
O5—C7 | 1.367 (6) | C34—H34 | 0.9500 |
O132—C138 | 1.33 (5) | C34—C35 | 1.387 (13) |
O105—C107 | 1.337 (18) | C134—H134 | 0.9500 |
O12—C15 | 1.298 (9) | C134—C135 | 1.44 (3) |
O26—C29 | 1.300 (10) | C6—H6 | 0.9500 |
O126—C129 | 1.20 (3) | C6—C5 | 1.3900 |
O14—C19 | 1.357 (6) | C6—C7 | 1.3900 |
O114—C119 | 1.382 (18) | C5—C4 | 1.3900 |
O23—C28 | 1.293 (9) | C4—H4 | 0.9500 |
O44—C122 | 1.24 (3) | C4—C3 | 1.3900 |
O21—C24 | 1.354 (6) | C3—C2 | 1.3900 |
O122—C124 | 1.355 (19) | C2—C7 | 1.3900 |
O25—C29 | 1.258 (10) | C23—H23 | 0.9500 |
O121—C122 | 1.28 (3) | C23—C22 | 1.3900 |
O30—C36 | 1.279 (10) | C23—C24 | 1.3900 |
O115—C121 | 1.369 (18) | C22—C27 | 1.3900 |
O113—C117 | 1.375 (18) | C27—H27 | 0.9500 |
O112—C115 | 1.27 (3) | C27—C26 | 1.3900 |
O111—C115 | 1.28 (3) | C26—C25 | 1.3900 |
O33—C40 | 1.360 (10) | C25—C24 | 1.3900 |
O106—C108 | 1.26 (3) | C119—C118 | 1.3900 |
O13—C17 | 1.365 (6) | C119—C120 | 1.3900 |
O108—C114 | 1.38 (2) | C118—H118 | 0.9500 |
O109—C112 | 1.354 (19) | C118—C117 | 1.3900 |
O31—C36 | 1.261 (9) | C117—C116 | 1.3900 |
O102—C101 | 1.33 (3) | C116—C121 | 1.3900 |
O3—C3 | 1.343 (6) | C116—C115 | 1.50 (3) |
O103—C103 | 1.35 (2) | C121—C120 | 1.3900 |
O11—C15 | 1.249 (9) | C120—H120 | 0.9500 |
O101—C101 | 1.20 (3) | C104—H104 | 0.9500 |
O18—C22 | 1.368 (6) | C104—C105 | 1.3900 |
O8—C14 | 1.361 (8) | C104—C103 | 1.3900 |
O22—C28 | 1.244 (10) | C105—C106 | 1.3900 |
O125—C129 | 1.27 (3) | C106—H106 | 0.9500 |
O130—C136 | 1.24 (4) | C106—C107 | 1.3900 |
O2—C1 | 1.285 (10) | C107—C102 | 1.3900 |
O133—C140 | 1.359 (19) | C102—C103 | 1.3900 |
C28—C25 | 1.499 (8) | C41—H41 | 0.9500 |
C138—C139 | 1.48 (6) | C41—C42 | 1.385 (13) |
C138—C137 | 1.37 (4) | C11—H11 | 0.9500 |
C139—H139 | 0.9500 | C11—C12 | 1.385 (10) |
C139—C140 | 1.35 (6) | C18—H18 | 0.9500 |
C141—H141 | 0.9500 | C18—C17 | 1.3900 |
C141—C142 | 1.43 (5) | C18—C19 | 1.3900 |
C141—C140 | 1.42 (5) | C17—C16 | 1.3900 |
C142—C137 | 1.34 (3) | C16—C21 | 1.3900 |
C9—C14 | 1.415 (9) | C21—C20 | 1.3900 |
C9—C10 | 1.398 (9) | C20—H20 | 0.9500 |
C9—C8 | 1.468 (10) | C20—C19 | 1.3900 |
O136—Ce2—O123 | 133.8 (5) | C32—C33—C34 | 121.7 (9) |
O136—Ce2—O135 | 70.5 (6) | O128—C133—C132 | 118 (4) |
O136—Ce2—O112i | 82.2 (6) | O128—C133—C134 | 117 (3) |
O136—Ce2—O137 | 144.4 (6) | C132—C133—C134 | 125 (3) |
O136—Ce2—O130 | 71.2 (5) | C40—C39—H39 | 120.4 |
O135—Ce2—O123 | 69.0 (6) | C38—C39—H39 | 120.4 |
O35—Ce2—O37 | 137.17 (18) | C38—C39—C40 | 119.1 (8) |
O25—Ce2—O35 | 71.29 (18) | O33—C40—C39 | 118.2 (9) |
O25—Ce2—O30 | 121.2 (2) | O33—C40—C41 | 121.7 (12) |
O25—Ce2—O37 | 133.61 (19) | C41—C40—C39 | 120.0 (9) |
O38—Ce2—O35 | 141.79 (19) | O133—C140—C141 | 119 (5) |
O38—Ce2—O25 | 70.55 (18) | C139—C140—O133 | 116 (4) |
O38—Ce2—O30 | 70.0 (2) | C139—C140—C141 | 122 (3) |
O38—Ce2—O37 | 72.79 (19) | O8—C14—C9 | 120.5 (6) |
O38—Ce2—O22 | 84.77 (18) | O8—C14—C13 | 118.0 (6) |
O30—Ce2—O35 | 134.9 (2) | C13—C14—C9 | 121.6 (6) |
O30—Ce2—O37 | 69.0 (2) | O10—C10—C9 | 120.6 (6) |
O112i—Ce2—O123 | 72.1 (6) | O10—C10—C11 | 116.7 (6) |
O112i—Ce2—O135 | 83.5 (6) | C11—C10—C9 | 122.7 (6) |
O112i—Ce2—O137 | 81.8 (6) | O12—C15—C16 | 118.2 (6) |
O112i—Ce2—O130 | 68.3 (5) | O11—C15—O12 | 121.5 (7) |
O22—Ce2—O35 | 79.04 (19) | O11—C15—C16 | 120.2 (6) |
O22—Ce2—O25 | 67.47 (18) | C14—C13—H13 | 120.5 |
O22—Ce2—O30 | 145.8 (2) | C12—C13—C14 | 119.0 (7) |
O22—Ce2—O37 | 81.91 (19) | C12—C13—H13 | 120.5 |
O137—Ce2—O123 | 69.2 (6) | C33—C34—H34 | 120.8 |
O137—Ce2—O135 | 138.2 (6) | C35—C34—C33 | 118.5 (9) |
O137—Ce2—O130 | 73.4 (6) | C35—C34—H34 | 120.8 |
O130—Ce2—O123 | 128.3 (5) | C133—C134—H134 | 121.6 |
O130—Ce2—O135 | 134.8 (6) | C133—C134—C135 | 117 (3) |
O6—Ce1—O17 | 68.2 (2) | C135—C134—H134 | 121.6 |
O6—Ce1—O20 | 65.35 (19) | C5—C6—H6 | 120.0 |
O6—Ce1—O19 | 136.4 (2) | C5—C6—C7 | 120.0 |
O6—Ce1—O2 | 121.46 (19) | C7—C6—H6 | 120.0 |
O17—Ce1—O20 | 108.4 (2) | O4—C5—C6 | 115.3 (6) |
O17—Ce1—O19 | 136.4 (2) | O4—C5—C4 | 124.7 (6) |
O17—Ce1—O2 | 134.2 (2) | C6—C5—C4 | 120.0 |
O19—Ce1—O20 | 71.7 (2) | C5—C4—H4 | 120.0 |
O16—Ce1—O6 | 70.6 (2) | C5—C4—C3 | 120.0 |
O16—Ce1—O17 | 73.0 (2) | C3—C4—H4 | 120.0 |
O16—Ce1—O20 | 130.63 (19) | O3—C3—C4 | 119.1 (4) |
O16—Ce1—O19 | 141.2 (2) | O3—C3—C2 | 120.9 (4) |
O16—Ce1—O11 | 83.1 (2) | C2—C3—C4 | 120.0 |
O16—Ce1—O2 | 70.23 (18) | C3—C2—C1 | 119.7 (5) |
O44—Ce1—O106 | 68.7 (6) | C7—C2—C1 | 120.3 (5) |
O44—Ce1—O102 | 147.6 (7) | C7—C2—C3 | 120.0 |
O44—Ce1—O119 | 83.5 (7) | O5—C7—C6 | 119.0 (4) |
O102—Ce1—O106 | 121.5 (7) | O5—C7—C2 | 120.9 (4) |
O11—Ce1—O6 | 143.97 (19) | C2—C7—C6 | 120.0 |
O11—Ce1—O17 | 81.1 (2) | O6—C8—C9 | 117.3 (6) |
O11—Ce1—O20 | 146.22 (18) | O7—C8—O6 | 122.9 (7) |
O11—Ce1—O19 | 79.2 (2) | O7—C8—C9 | 119.8 (7) |
O11—Ce1—O2 | 68.26 (18) | O107—C108—Ce1 | 60.8 (14) |
O119—Ce1—O106 | 137.3 (7) | O107—C108—C109 | 123 (2) |
O119—Ce1—O102 | 69.1 (8) | O106—C108—Ce1 | 56.6 (14) |
O120—Ce1—O44 | 85.5 (6) | O106—C108—O107 | 117 (3) |
O120—Ce1—O106 | 71.2 (5) | O106—C108—C109 | 120 (2) |
O120—Ce1—O102 | 71.4 (7) | C109—C108—Ce1 | 167.6 (17) |
O120—Ce1—O119 | 75.1 (7) | C22—C23—H23 | 120.0 |
O2—Ce1—O20 | 116.05 (18) | C22—C23—C24 | 120.0 |
O2—Ce1—O19 | 71.2 (2) | C24—C23—H23 | 120.0 |
C126—O123—Ce2 | 138.9 (12) | O18—C22—C23 | 121.7 (4) |
C8—O6—Ce1 | 139.3 (5) | O18—C22—C27 | 118.3 (4) |
C108—O107—Ce1 | 93.7 (16) | C23—C22—C27 | 120.0 |
C1—O1—Ce1 | 93.5 (5) | C22—C27—H27 | 120.0 |
C136—O131—Ce2 | 89.9 (17) | C26—C27—C22 | 120.0 |
C29—O26—Ce2 | 91.2 (5) | C26—C27—H27 | 120.0 |
C19—O14—Ce2ii | 136.4 (4) | O24—C26—C27 | 117.8 (4) |
C119—O114—Ce1 | 138.5 (13) | O24—C26—C25 | 122.2 (4) |
C122—O44—Ce1 | 144.6 (16) | C27—C26—C25 | 120.0 |
C29—O25—Ce2 | 96.9 (5) | C26—C25—C28 | 120.0 (4) |
C36—O30—Ce2 | 140.1 (5) | C24—C25—C28 | 120.0 (4) |
C108—O106—Ce1 | 98.8 (16) | C24—C25—C26 | 120.0 |
C101—O102—Ce1 | 136.2 (18) | O21—C24—C23 | 117.1 (3) |
C15—O11—Ce1 | 143.7 (5) | O21—C24—C25 | 122.9 (4) |
C22—O18—Ce1 | 137.9 (4) | C25—C24—C23 | 120.0 |
C28—O22—Ce2 | 144.8 (5) | O114—C119—C118 | 121.9 (11) |
C129—O125—Ce2 | 141 (2) | O114—C119—C120 | 118.1 (11) |
C136—O130—Ce2 | 95.6 (17) | C118—C119—C120 | 120.0 |
C1—O2—Ce1 | 96.8 (5) | C119—C118—H118 | 120.0 |
O23—C28—C25 | 117.4 (7) | C119—C118—C117 | 120.0 |
O22—C28—O23 | 122.2 (7) | C117—C118—H118 | 120.0 |
O22—C28—C25 | 120.3 (6) | O113—C117—C118 | 116.5 (10) |
O132—C138—C139 | 114 (3) | O113—C117—C116 | 123.5 (10) |
O132—C138—C137 | 127 (4) | C116—C117—C118 | 120.0 |
C137—C138—C139 | 119 (3) | C117—C116—C115 | 121.0 (12) |
C138—C139—H139 | 121.0 | C121—C116—C117 | 120.0 |
C140—C139—C138 | 118 (3) | C121—C116—C115 | 119.0 (12) |
C140—C139—H139 | 121.0 | O115—C121—C116 | 123.5 (11) |
C142—C141—H141 | 121.7 | O115—C121—C120 | 116.5 (11) |
C140—C141—H141 | 121.7 | C116—C121—C120 | 120.0 |
C140—C141—C142 | 117 (3) | C119—C120—H120 | 120.0 |
O134—C142—C141 | 117 (2) | C121—C120—C119 | 120.0 |
C137—C142—O134 | 122 (3) | C121—C120—H120 | 120.0 |
C137—C142—C141 | 122 (3) | C105—C104—H104 | 120.0 |
C14—C9—C8 | 120.5 (6) | C105—C104—C103 | 120.0 |
C10—C9—C14 | 116.6 (6) | C103—C104—H104 | 120.0 |
C10—C9—C8 | 122.9 (6) | O104—C105—C104 | 110 (2) |
C114—C109—C110 | 120.0 | O104—C105—C106 | 130 (2) |
C114—C109—C108 | 120.2 (15) | C106—C105—C104 | 120.0 |
C110—C109—C108 | 119.7 (15) | C105—C106—H106 | 120.0 |
O108—C114—C109 | 123.0 (13) | C105—C106—C107 | 120.0 |
O108—C114—C113 | 117.0 (13) | C107—C106—H106 | 120.0 |
C113—C114—C109 | 120.0 | O105—C107—C106 | 116.1 (13) |
C114—C113—H113 | 120.0 | O105—C107—C102 | 123.9 (13) |
C114—C113—C112 | 120.0 | C102—C107—C106 | 120.0 |
C112—C113—H113 | 120.0 | C107—C102—C101 | 115.7 (14) |
O109—C112—C113 | 119 (3) | C103—C102—C101 | 124.2 (14) |
O109—C112—C111 | 121 (3) | C103—C102—C107 | 120.0 |
C111—C112—C113 | 120.0 | O103—C103—C104 | 119.7 (13) |
C112—C111—H111 | 120.0 | O103—C103—C102 | 120.2 (13) |
C112—C111—C110 | 120.0 | C102—C103—C104 | 120.0 |
C110—C111—H111 | 120.0 | O126—C129—O125 | 120 (2) |
O110—C110—C109 | 121.9 (13) | O126—C129—C130 | 123 (2) |
O110—C110—C111 | 118.1 (13) | O125—C129—C130 | 117 (3) |
C111—C110—C109 | 120.0 | O129—C131—C132 | 116 (2) |
O29—C31—C32 | 119.4 (7) | C130—C131—O129 | 120 (3) |
O29—C31—C30 | 118.9 (7) | C130—C131—C132 | 124 (3) |
C32—C31—C30 | 121.7 (9) | O127—C135—C130 | 123 (3) |
C31—C32—H32 | 120.5 | O127—C135—C134 | 117 (2) |
C31—C32—C33 | 119.1 (9) | C130—C135—C134 | 119 (3) |
C33—C32—H32 | 120.5 | C138—C137—C136 | 117 (3) |
C133—C132—H132 | 121.9 | C142—C137—C138 | 122 (3) |
C133—C132—C131 | 116 (3) | C142—C137—C136 | 121 (3) |
C131—C132—H132 | 121.9 | O112—C115—O111 | 124 (2) |
O1—C1—C2 | 122.0 (7) | O112—C115—C116 | 118.1 (19) |
O2—C1—O1 | 117.7 (8) | O111—C115—C116 | 118 (2) |
O2—C1—C2 | 120.2 (7) | C40—C41—H41 | 119.9 |
O102—C101—C102 | 113.3 (19) | C40—C41—C42 | 120.2 (9) |
O101—C101—O102 | 122 (2) | C42—C41—H41 | 119.9 |
O101—C101—C102 | 125 (2) | O26—C29—C30 | 119.3 (8) |
C31—C30—C29 | 120.0 (7) | O25—C29—O26 | 119.7 (8) |
C35—C30—C31 | 117.3 (8) | O25—C29—C30 | 121.0 (7) |
C35—C30—C29 | 122.5 (8) | O27—C35—C30 | 119.7 (9) |
C131—C130—C129 | 125 (3) | O27—C35—C34 | 118.6 (9) |
C131—C130—C135 | 119 (3) | C34—C35—C30 | 121.7 (9) |
C135—C130—C129 | 116 (3) | O44—C122—O121 | 122 (2) |
C38—C37—C36 | 119.3 (8) | O44—C122—C123 | 119 (2) |
C42—C37—C36 | 122.4 (7) | O121—C122—C123 | 119 (2) |
C42—C37—C38 | 118.3 (9) | C10—C11—H11 | 120.5 |
O30—C36—C37 | 117.8 (7) | C10—C11—C12 | 119.1 (7) |
O31—C36—O30 | 122.2 (7) | C12—C11—H11 | 120.5 |
O31—C36—C37 | 120.0 (7) | C17—C18—H18 | 120.0 |
O131—C136—Ce2 | 64.6 (16) | C17—C18—C19 | 120.0 |
O131—C136—C137 | 120 (3) | C19—C18—H18 | 120.0 |
O130—C136—Ce2 | 59.1 (14) | O13—C17—C18 | 116.8 (4) |
O130—C136—O131 | 124 (3) | O13—C17—C16 | 123.2 (4) |
O130—C136—C137 | 116 (3) | C16—C17—C18 | 120.0 |
C137—C136—Ce2 | 168 (2) | C17—C16—C15 | 119.1 (4) |
C126—C125—H125 | 120.0 | C17—C16—C21 | 120.0 |
C126—C125—C124 | 120.0 | C21—C16—C15 | 120.8 (4) |
C124—C125—H125 | 120.0 | O15—C21—C16 | 122.1 (3) |
C125—C126—O123 | 118.3 (11) | O15—C21—C20 | 117.9 (3) |
C125—C126—C127 | 120.0 | C16—C21—C20 | 120.0 |
C127—C126—O123 | 121.7 (11) | C21—C20—H20 | 120.0 |
C126—C127—H127 | 120.0 | C19—C20—C21 | 120.0 |
C128—C127—C126 | 120.0 | C19—C20—H20 | 120.0 |
C128—C127—H127 | 120.0 | O14—C19—C18 | 118.6 (4) |
O124—C128—C127 | 117.3 (11) | O14—C19—C20 | 121.3 (4) |
O124—C128—C123 | 122.7 (11) | C20—C19—C18 | 120.0 |
C127—C128—C123 | 120.0 | O9—C12—C13 | 117.8 (10) |
C128—C123—C122 | 122.0 (13) | O9—C12—C11 | 121.2 (9) |
C124—C123—C128 | 120.0 | C11—C12—C13 | 121.0 (7) |
C124—C123—C122 | 118.0 (13) | O32—C38—C37 | 121.2 (8) |
O122—C124—C125 | 117.5 (11) | O32—C38—C39 | 118.1 (7) |
O122—C124—C123 | 122.5 (11) | C39—C38—C37 | 120.7 (8) |
C123—C124—C125 | 120.0 | O34—C42—C37 | 119.8 (7) |
O28—C33—C32 | 121.3 (10) | O34—C42—C41 | 118.5 (7) |
O28—C33—C34 | 116.7 (10) | C41—C42—C37 | 121.6 (8) |
Ce2—O123—C126—C125 | −26 (2) | C36—C37—C42—O34 | −2.4 (12) |
Ce2—O123—C126—C127 | 156.3 (11) | C36—C37—C42—C41 | 178.4 (8) |
Ce2—O131—C136—O130 | 4 (3) | C125—C126—C127—C128 | 0.0 |
Ce2—O131—C136—C137 | −167 (3) | C126—C125—C124—O122 | 179.4 (15) |
Ce2—O26—C29—O25 | 10.4 (8) | C126—C125—C124—C123 | 0.0 |
Ce2—O26—C29—C30 | −168.6 (6) | C126—C127—C128—O124 | 179.9 (13) |
Ce2ii—O14—C19—C18 | −34.9 (7) | C126—C127—C128—C123 | 0.0 |
Ce2ii—O14—C19—C20 | 147.6 (4) | C127—C128—C123—C124 | 0.0 |
Ce2—O25—C29—O26 | −10.9 (8) | C127—C128—C123—C122 | −179.1 (16) |
Ce2—O25—C29—C30 | 168.1 (6) | C128—C123—C124—O122 | −179.4 (16) |
Ce2—O30—C36—O31 | −11.7 (13) | C128—C123—C124—C125 | 0.0 |
Ce2—O30—C36—C37 | 167.5 (7) | C128—C123—C122—O44 | 5 (3) |
Ce2ii—O112—C115—O111 | 17 (4) | C128—C123—C122—O121 | −170.3 (15) |
Ce2ii—O112—C115—C116 | −167.9 (14) | C124—C125—C126—O123 | −178.1 (14) |
Ce2—O22—C28—O23 | 7.4 (13) | C124—C125—C126—C127 | 0.0 |
Ce2—O22—C28—C25 | −173.4 (5) | C124—C123—C122—O44 | −173.8 (17) |
Ce2—O125—C129—O126 | −15 (4) | C124—C123—C122—O121 | 11 (3) |
Ce2—O125—C129—C130 | 166 (2) | C33—C34—C35—O27 | 177.3 (8) |
Ce2—O130—C136—O131 | −5 (3) | C33—C34—C35—C30 | −1.2 (13) |
Ce2—O130—C136—C137 | 167 (2) | C133—C132—C131—O129 | 179 (3) |
Ce2—C136—C137—C138 | −117 (10) | C133—C132—C131—C130 | 0 (4) |
Ce2—C136—C137—C142 | 60 (11) | C133—C134—C135—O127 | −176 (2) |
Ce1—O6—C8—O7 | 12.5 (11) | C133—C134—C135—C130 | 5 (4) |
Ce1—O6—C8—C9 | −168.7 (5) | C39—C40—C41—C42 | −0.1 (16) |
Ce1—O107—C108—O106 | −8 (2) | C40—C39—C38—O32 | −178.7 (8) |
Ce1—O107—C108—C109 | 166 (2) | C40—C39—C38—C37 | 1.3 (12) |
Ce1—O1—C1—O2 | −10.8 (7) | C40—C41—C42—O34 | −178.8 (9) |
Ce1—O1—C1—C2 | 166.6 (6) | C40—C41—C42—C37 | 0.4 (14) |
Ce1—O114—C119—C118 | −153.7 (12) | C140—C141—C142—O134 | 174 (3) |
Ce1—O114—C119—C120 | 28 (2) | C140—C141—C142—C137 | −3 (5) |
Ce1—O44—C122—O121 | −13 (4) | C14—C9—C10—O10 | −179.8 (6) |
Ce1—O44—C122—C123 | 171.6 (15) | C14—C9—C10—C11 | −1.7 (10) |
Ce1—O106—C108—O107 | 9 (3) | C14—C9—C8—O6 | 175.6 (6) |
Ce1—O106—C108—C109 | −166.0 (19) | C14—C9—C8—O7 | −5.5 (10) |
Ce1—O102—C101—O101 | 16 (4) | C14—C13—C12—O9 | −177.8 (11) |
Ce1—O102—C101—C102 | −170.3 (16) | C14—C13—C12—C11 | 1.0 (11) |
Ce1—O11—C15—O12 | −14.5 (13) | C10—C9—C14—O8 | −178.8 (6) |
Ce1—O11—C15—C16 | 167.2 (5) | C10—C9—C14—C13 | 0.8 (10) |
Ce1—O18—C22—C23 | −155.1 (4) | C10—C9—C8—O6 | −5.6 (10) |
Ce1—O18—C22—C27 | 26.4 (7) | C10—C9—C8—O7 | 173.3 (6) |
Ce1—O2—C1—O1 | 11.2 (7) | C10—C11—C12—O9 | 176.9 (11) |
Ce1—O2—C1—C2 | −166.2 (6) | C10—C11—C12—C13 | −1.8 (11) |
O123—C126—C127—C128 | 178.0 (15) | C15—C16—C21—O15 | 0.3 (6) |
O4—C5—C4—C3 | −177.7 (9) | C15—C16—C21—C20 | −178.3 (5) |
O104—C105—C106—C107 | −174 (3) | C6—C5—C4—C3 | 0.0 |
O134—C142—C137—C138 | −178 (3) | C5—C6—C7—O5 | −177.4 (5) |
O134—C142—C137—C136 | 5 (3) | C5—C6—C7—C2 | 0.0 |
O15—C21—C20—C19 | −178.6 (5) | C5—C4—C3—O3 | −180.0 (5) |
O28—C33—C34—C35 | −174.1 (9) | C5—C4—C3—C2 | 0.0 |
O1—C1—C2—C3 | −175.0 (6) | C4—C3—C2—C1 | 179.2 (5) |
O1—C1—C2—C7 | 4.2 (9) | C4—C3—C2—C7 | 0.0 |
O10—C10—C11—C12 | −179.6 (7) | C3—C2—C7—O5 | 177.3 (5) |
O24—C26—C25—C28 | 2.4 (5) | C3—C2—C7—C6 | 0.0 |
O24—C26—C25—C24 | −178.3 (5) | C7—C6—C5—O4 | 177.9 (8) |
O124—C128—C123—C124 | −179.9 (14) | C7—C6—C5—C4 | 0.0 |
O124—C128—C123—C122 | 1.0 (18) | C8—C9—C14—O8 | 0.1 (10) |
O128—C133—C134—C135 | 172 (3) | C8—C9—C14—C13 | 179.7 (6) |
O29—C31—C32—C33 | 178.7 (7) | C8—C9—C10—O10 | 1.3 (10) |
O29—C31—C30—C29 | 4.3 (10) | C8—C9—C10—C11 | 179.5 (7) |
O29—C31—C30—C35 | −179.5 (7) | C108—C109—C114—O108 | 2 (2) |
O131—C136—C137—C138 | −8 (4) | C108—C109—C114—C113 | −177.1 (18) |
O131—C136—C137—C142 | 169 (2) | C108—C109—C110—O110 | −2 (2) |
O132—C138—C139—C140 | 179 (3) | C108—C109—C110—C111 | 177.1 (18) |
O132—C138—C137—C142 | −173 (3) | C23—C22—C27—C26 | 0.0 |
O132—C138—C137—C136 | 4 (5) | C22—C23—C24—O21 | −179.9 (5) |
O105—C107—C102—C101 | 0.9 (17) | C22—C23—C24—C25 | 0.0 |
O105—C107—C102—C103 | 178.4 (15) | C22—C27—C26—O24 | 178.4 (4) |
O12—C15—C16—C17 | 9.2 (8) | C22—C27—C26—C25 | 0.0 |
O12—C15—C16—C21 | −172.4 (5) | C27—C26—C25—C28 | −179.3 (5) |
O114—C119—C118—C117 | −178.1 (15) | C27—C26—C25—C24 | 0.0 |
O114—C119—C120—C121 | 178.2 (15) | C26—C25—C24—O21 | 179.9 (5) |
O23—C28—C25—C26 | −8.7 (8) | C26—C25—C24—C23 | 0.0 |
O23—C28—C25—C24 | 172.0 (5) | C24—C23—C22—O18 | −178.5 (5) |
O115—C121—C120—C119 | −180.0 (14) | C24—C23—C22—C27 | 0.0 |
O113—C117—C116—C121 | 179.5 (15) | C119—C118—C117—O113 | −179.5 (14) |
O113—C117—C116—C115 | −1.8 (18) | C119—C118—C117—C116 | 0.0 |
O33—C40—C41—C42 | −176.9 (10) | C118—C119—C120—C121 | 0.0 |
O13—C17—C16—C15 | −2.9 (6) | C118—C117—C116—C121 | 0.0 |
O13—C17—C16—C21 | 178.7 (5) | C118—C117—C116—C115 | 178.7 (16) |
O108—C114—C113—C112 | −179.1 (16) | C117—C116—C121—O115 | 180.0 (15) |
O109—C112—C111—C110 | −180 (4) | C117—C116—C121—C120 | 0.0 |
O102—C101—C102—C107 | 175.6 (15) | C117—C116—C115—O112 | −3 (3) |
O102—C101—C102—C103 | −2 (2) | C117—C116—C115—O111 | 172.9 (15) |
O3—C3—C2—C1 | −0.8 (6) | C116—C121—C120—C119 | 0.0 |
O3—C3—C2—C7 | 180.0 (5) | C121—C116—C115—O112 | 176.1 (16) |
O11—C15—C16—C17 | −172.4 (5) | C121—C116—C115—O111 | −8 (3) |
O11—C15—C16—C21 | 6.0 (8) | C120—C119—C118—C117 | 0.0 |
O101—C101—C102—C107 | −11 (2) | C104—C105—C106—C107 | 0.0 |
O101—C101—C102—C103 | 171.4 (16) | C105—C104—C103—O103 | 176.9 (16) |
O18—C22—C27—C26 | 178.5 (5) | C105—C104—C103—C102 | 0.0 |
O8—C14—C13—C12 | 179.1 (7) | C105—C106—C107—O105 | −178.5 (14) |
O22—C28—C25—C26 | 172.0 (5) | C105—C106—C107—C102 | 0.0 |
O22—C28—C25—C24 | −7.3 (8) | C106—C107—C102—C101 | −177.5 (15) |
O130—C136—C137—C138 | 180 (3) | C106—C107—C102—C103 | 0.0 |
O130—C136—C137—C142 | −3 (4) | C107—C102—C103—O103 | −176.9 (16) |
O2—C1—C2—C3 | 2.3 (9) | C107—C102—C103—C104 | 0.0 |
O2—C1—C2—C7 | −178.4 (5) | C103—C104—C105—O104 | 175 (3) |
C28—C25—C24—O21 | −0.8 (6) | C103—C104—C105—C106 | 0.0 |
C28—C25—C24—C23 | 179.3 (5) | C129—C130—C131—O129 | −1 (5) |
C138—C139—C140—O133 | −170 (4) | C129—C130—C131—C132 | 178 (3) |
C138—C139—C140—C141 | −9 (6) | C129—C130—C135—O127 | 1 (4) |
C139—C138—C137—C142 | 2 (5) | C129—C130—C135—C134 | 180 (2) |
C139—C138—C137—C136 | 179 (3) | C131—C132—C133—O128 | −174 (3) |
C141—C142—C137—C138 | −2 (4) | C131—C132—C133—C134 | 2 (5) |
C141—C142—C137—C136 | −179 (3) | C131—C130—C129—O126 | −171 (3) |
C142—C141—C140—O133 | 169 (3) | C131—C130—C129—O125 | 7 (5) |
C142—C141—C140—C139 | 8 (6) | C131—C130—C135—O127 | 178 (2) |
C9—C14—C13—C12 | −0.5 (10) | C131—C130—C135—C134 | −3 (4) |
C9—C10—C11—C12 | 2.2 (10) | C135—C130—C129—O126 | 6 (4) |
C109—C114—C113—C112 | 0.0 | C135—C130—C129—O125 | −176 (3) |
C114—C109—C110—O110 | −179.0 (16) | C135—C130—C131—O129 | −179 (2) |
C114—C109—C110—C111 | 0.0 | C135—C130—C131—C132 | 1 (5) |
C114—C109—C108—Ce1 | 108 (8) | C137—C138—C139—C140 | 4 (5) |
C114—C109—C108—O107 | 4 (3) | C115—C116—C121—O115 | 1.2 (17) |
C114—C109—C108—O106 | 178.2 (18) | C115—C116—C121—C120 | −178.8 (16) |
C114—C113—C112—O109 | 180 (4) | C29—C30—C35—O27 | −1.5 (12) |
C114—C113—C112—C111 | 0.0 | C29—C30—C35—C34 | 177.0 (7) |
C113—C112—C111—C110 | 0.0 | C35—C30—C29—O26 | −1.4 (12) |
C112—C111—C110—O110 | 179.0 (16) | C35—C30—C29—O25 | 179.7 (8) |
C112—C111—C110—C109 | 0.0 | C122—C123—C124—O122 | −0.2 (18) |
C110—C109—C114—O108 | 179.1 (17) | C122—C123—C124—C125 | 179.2 (16) |
C110—C109—C114—C113 | 0.0 | C18—C17—C16—C15 | 178.4 (5) |
C110—C109—C108—Ce1 | −69 (9) | C18—C17—C16—C21 | 0.0 |
C110—C109—C108—O107 | −173.1 (19) | C17—C18—C19—O14 | −177.5 (5) |
C110—C109—C108—O106 | 1 (3) | C17—C18—C19—C20 | 0.0 |
C31—C32—C33—O28 | 175.0 (9) | C17—C16—C21—O15 | 178.6 (5) |
C31—C32—C33—C34 | 0.8 (13) | C17—C16—C21—C20 | 0.0 |
C31—C30—C29—O26 | 174.6 (6) | C16—C21—C20—C19 | 0.0 |
C31—C30—C29—O25 | −4.3 (11) | C21—C20—C19—O14 | 177.5 (5) |
C31—C30—C35—O27 | −177.6 (7) | C21—C20—C19—C18 | 0.0 |
C31—C30—C35—C34 | 0.9 (12) | C19—C18—C17—O13 | −178.8 (5) |
C32—C31—C30—C29 | −175.8 (7) | C19—C18—C17—C16 | 0.0 |
C32—C31—C30—C35 | 0.4 (10) | C38—C37—C36—O30 | −174.6 (8) |
C32—C33—C34—C35 | 0.4 (13) | C38—C37—C36—O31 | 4.6 (12) |
C132—C133—C134—C135 | −4 (5) | C38—C37—C42—O34 | 179.4 (7) |
C1—C2—C7—O5 | −1.9 (6) | C38—C37—C42—C41 | 0.2 (13) |
C1—C2—C7—C6 | −179.2 (5) | C38—C39—C40—O33 | 176.2 (9) |
C101—C102—C103—O103 | 0.4 (18) | C38—C39—C40—C41 | −0.7 (14) |
C101—C102—C103—C104 | 177.3 (16) | C42—C37—C36—O30 | 7.2 (12) |
C30—C31—C32—C33 | −1.2 (11) | C42—C37—C36—O31 | −173.6 (7) |
C36—C37—C38—O32 | 0.7 (12) | C42—C37—C38—O32 | 178.9 (7) |
C36—C37—C38—C39 | −179.3 (7) | C42—C37—C38—C39 | −1.1 (12) |
Symmetry codes: (i) x−1, y, z; (ii) x+1, y, z. |
[Mn(C7H5O5)2(H2O)4]·4H2O | F(000) = 558 |
Mr = 537.29 | Dx = 1.664 Mg m−3 |
Monoclinic, P21/n | Cu Kα radiation, λ = 1.54184 Å |
a = 6.9747 (1) Å | Cell parameters from 5767 reflections |
b = 12.7242 (2) Å | θ = 5.0–77.1° |
c = 12.4073 (2) Å | µ = 5.85 mm−1 |
β = 103.102 (2)° | T = 100 K |
V = 1072.45 (3) Å3 | Irregular, clear colourless |
Z = 2 | 0.57 × 0.12 × 0.10 mm |
XtaLAB Synergy, Dualflex, HyPix diffractometer | 2248 independent reflections |
Radiation source: micro-focus sealed X-ray tube, PhotonJet (Cu) X-ray Source | 2087 reflections with I > 2σ(I) |
Mirror monochromator | Rint = 0.044 |
Detector resolution: 10.0000 pixels mm-1 | θmax = 77.8°, θmin = 5.1° |
ω scans | h = −8→8 |
Absorption correction: multi-scan (CrysAlis PRO; Rigaku OD, 2018) | k = −15→15 |
Tmin = 0.431, Tmax = 1.000 | l = −15→10 |
8616 measured reflections |
Refinement on F2 | Hydrogen site location: mixed |
Least-squares matrix: full | H atoms treated by a mixture of independent and constrained refinement |
R[F2 > 2σ(F2)] = 0.032 | w = 1/[σ2(Fo2) + (0.0509P)2 + 0.3954P] where P = (Fo2 + 2Fc2)/3 |
wR(F2) = 0.089 | (Δ/σ)max < 0.001 |
S = 1.07 | Δρmax = 0.44 e Å−3 |
2248 reflections | Δρmin = −0.33 e Å−3 |
185 parameters | Extinction correction: SHELXL2018 (Sheldrick, 2015b), Fc*=kFc[1+0.001xFc2λ3/sin(2θ)]-1/4 |
11 restraints | Extinction coefficient: 0.0027 (4) |
Primary atom site location: dual |
Geometry. All esds (except the esd in the dihedral angle between two l.s. planes) are estimated using the full covariance matrix. The cell esds are taken into account individually in the estimation of esds in distances, angles and torsion angles; correlations between esds in cell parameters are only used when they are defined by crystal symmetry. An approximate (isotropic) treatment of cell esds is used for estimating esds involving l.s. planes. |
Refinement. The O-H distances were fixed at 0.85 and Uiso(H) = 1.5Ueq(O). |
x | y | z | Uiso*/Ueq | ||
Mn1 | 0.500000 | 0.500000 | 1.000000 | 0.01035 (14) | |
O1 | 0.39410 (19) | 0.51478 (9) | 0.82419 (10) | 0.0147 (3) | |
O2 | 0.2826 (2) | 0.35133 (10) | 0.78736 (10) | 0.0194 (3) | |
O3 | 0.15219 (18) | 0.29069 (10) | 0.59370 (10) | 0.0158 (3) | |
O4 | 0.16077 (19) | 0.51963 (11) | 0.29810 (10) | 0.0158 (3) | |
O5 | 0.41464 (19) | 0.63937 (9) | 0.66672 (9) | 0.0150 (3) | |
O6 | 0.23938 (18) | 0.57909 (10) | 1.02841 (10) | 0.0162 (3) | |
O7 | 0.64583 (18) | 0.65526 (9) | 0.99511 (10) | 0.0137 (3) | |
C1 | 0.3234 (2) | 0.44141 (14) | 0.75585 (13) | 0.0135 (3) | |
C2 | 0.2895 (2) | 0.46311 (13) | 0.63676 (13) | 0.0115 (3) | |
C3 | 0.2014 (2) | 0.38633 (13) | 0.55868 (13) | 0.0123 (3) | |
C4 | 0.1603 (2) | 0.40594 (13) | 0.44643 (13) | 0.0125 (3) | |
H4A | 0.102309 | 0.354531 | 0.396247 | 0.015* | |
C5 | 0.2069 (3) | 0.50402 (12) | 0.40945 (15) | 0.0123 (4) | |
C6 | 0.2959 (2) | 0.58176 (13) | 0.48293 (13) | 0.0121 (3) | |
H6 | 0.329112 | 0.646201 | 0.456828 | 0.015* | |
C7 | 0.3342 (2) | 0.56170 (13) | 0.59527 (13) | 0.0119 (3) | |
H3 | 0.184 (3) | 0.2942 (18) | 0.6629 (13) | 0.018* | |
H4 | 0.183 (3) | 0.5829 (14) | 0.2820 (17) | 0.018* | |
H5 | 0.426 (3) | 0.6122 (17) | 0.7306 (14) | 0.018* | |
H6A | 0.243 (3) | 0.6221 (16) | 1.0787 (16) | 0.018* | |
H6B | 0.156 (3) | 0.6027 (18) | 0.9748 (15) | 0.018* | |
H7A | 0.678 (3) | 0.6667 (17) | 1.0631 (13) | 0.018* | |
H7B | 0.569 (3) | 0.7048 (15) | 0.9712 (17) | 0.018* | |
H8A | 0.338 (3) | 0.8644 (18) | 0.4004 (17) | 0.018* | |
H8B | 0.398 (3) | 0.9062 (15) | 0.3137 (16) | 0.018* | |
H9A | 0.296 (3) | 0.7487 (16) | 0.2534 (16) | 0.018* | |
H9B | 0.120 (3) | 0.7464 (17) | 0.1907 (17) | 0.018* | |
O8 | 0.41931 (19) | 0.85787 (10) | 0.35964 (10) | 0.0171 (3) | |
O9 | 0.21638 (19) | 0.70674 (10) | 0.21337 (10) | 0.0163 (3) |
U11 | U22 | U33 | U12 | U13 | U23 | |
Mn1 | 0.0106 (2) | 0.0100 (2) | 0.0109 (2) | 0.00012 (12) | 0.00333 (14) | 0.00005 (12) |
O1 | 0.0175 (6) | 0.0137 (6) | 0.0127 (6) | −0.0016 (5) | 0.0026 (5) | −0.0016 (4) |
O2 | 0.0283 (7) | 0.0144 (6) | 0.0145 (6) | −0.0053 (5) | 0.0025 (5) | 0.0017 (5) |
O3 | 0.0212 (6) | 0.0114 (6) | 0.0138 (5) | −0.0043 (5) | 0.0022 (5) | 0.0004 (4) |
O4 | 0.0217 (7) | 0.0142 (6) | 0.0118 (6) | −0.0016 (5) | 0.0041 (5) | 0.0014 (5) |
O5 | 0.0211 (6) | 0.0113 (6) | 0.0122 (5) | −0.0037 (5) | 0.0033 (5) | −0.0011 (4) |
O6 | 0.0156 (6) | 0.0176 (6) | 0.0155 (5) | 0.0051 (5) | 0.0036 (5) | −0.0010 (5) |
O7 | 0.0147 (6) | 0.0118 (6) | 0.0145 (5) | 0.0011 (4) | 0.0032 (4) | 0.0008 (4) |
C1 | 0.0110 (7) | 0.0143 (8) | 0.0155 (7) | 0.0000 (6) | 0.0036 (6) | −0.0002 (6) |
C2 | 0.0107 (7) | 0.0120 (8) | 0.0124 (7) | 0.0004 (6) | 0.0035 (6) | 0.0000 (6) |
C3 | 0.0100 (7) | 0.0112 (8) | 0.0164 (7) | 0.0008 (6) | 0.0045 (6) | 0.0008 (6) |
C4 | 0.0113 (7) | 0.0111 (8) | 0.0159 (7) | −0.0012 (6) | 0.0045 (6) | −0.0035 (6) |
C5 | 0.0103 (8) | 0.0145 (9) | 0.0128 (8) | 0.0025 (5) | 0.0042 (6) | −0.0002 (6) |
C6 | 0.0119 (7) | 0.0099 (7) | 0.0158 (7) | −0.0004 (6) | 0.0058 (6) | 0.0002 (6) |
C7 | 0.0079 (7) | 0.0118 (8) | 0.0170 (7) | 0.0006 (6) | 0.0051 (6) | −0.0015 (6) |
O8 | 0.0170 (6) | 0.0176 (6) | 0.0178 (6) | 0.0009 (5) | 0.0063 (5) | 0.0023 (5) |
O9 | 0.0170 (6) | 0.0135 (6) | 0.0183 (6) | 0.0017 (5) | 0.0038 (5) | 0.0004 (5) |
Mn1—O1 | 2.1468 (12) | O7—H7A | 0.835 (16) |
Mn1—O1i | 2.1468 (12) | O7—H7B | 0.837 (16) |
Mn1—O6i | 2.1752 (12) | C1—C2 | 1.469 (2) |
Mn1—O6 | 2.1752 (12) | C2—C3 | 1.414 (2) |
Mn1—O7i | 2.2291 (12) | C2—C7 | 1.417 (2) |
Mn1—O7 | 2.2291 (12) | C3—C4 | 1.380 (2) |
O1—C1 | 1.282 (2) | C4—H4A | 0.9300 |
O2—C1 | 1.264 (2) | C4—C5 | 1.393 (2) |
O3—C3 | 1.362 (2) | C5—C6 | 1.392 (2) |
O3—H3 | 0.838 (16) | C6—H6 | 0.9300 |
O4—C5 | 1.360 (2) | C6—C7 | 1.382 (2) |
O4—H4 | 0.852 (16) | O8—H8A | 0.848 (16) |
O5—C7 | 1.361 (2) | O8—H8B | 0.829 (16) |
O5—H5 | 0.851 (16) | O9—H9A | 0.844 (16) |
O6—H6A | 0.827 (16) | O9—H9B | 0.834 (16) |
O6—H6B | 0.833 (16) | ||
O1—Mn1—O1i | 180.0 | H7A—O7—H7B | 103 (2) |
O1i—Mn1—O6i | 90.95 (5) | O1—C1—C2 | 118.58 (15) |
O1i—Mn1—O6 | 89.06 (5) | O2—C1—O1 | 122.38 (15) |
O1—Mn1—O6i | 89.06 (5) | O2—C1—C2 | 119.04 (15) |
O1—Mn1—O6 | 90.94 (5) | C3—C2—C1 | 120.33 (15) |
O1—Mn1—O7i | 92.94 (4) | C3—C2—C7 | 117.37 (14) |
O1—Mn1—O7 | 87.06 (4) | C7—C2—C1 | 122.24 (15) |
O1i—Mn1—O7i | 87.06 (4) | O3—C3—C2 | 120.03 (14) |
O1i—Mn1—O7 | 92.94 (4) | O3—C3—C4 | 118.28 (15) |
O6i—Mn1—O6 | 180.0 | C4—C3—C2 | 121.68 (15) |
O6—Mn1—O7 | 89.86 (5) | C3—C4—H4A | 120.5 |
O6—Mn1—O7i | 90.14 (5) | C3—C4—C5 | 118.93 (15) |
O6i—Mn1—O7i | 89.86 (5) | C5—C4—H4A | 120.5 |
O6i—Mn1—O7 | 90.14 (5) | O4—C5—C4 | 116.50 (15) |
O7i—Mn1—O7 | 180.00 (6) | O4—C5—C6 | 121.94 (15) |
C1—O1—Mn1 | 126.89 (11) | C6—C5—C4 | 121.56 (16) |
C3—O3—H3 | 104.6 (16) | C5—C6—H6 | 120.5 |
C5—O4—H4 | 111.3 (14) | C7—C6—C5 | 118.99 (15) |
C7—O5—H5 | 104.5 (15) | C7—C6—H6 | 120.5 |
Mn1—O6—H6A | 123.3 (16) | O5—C7—C2 | 119.89 (14) |
Mn1—O6—H6B | 119.6 (15) | O5—C7—C6 | 118.66 (15) |
H6A—O6—H6B | 105 (2) | C6—C7—C2 | 121.45 (15) |
Mn1—O7—H7A | 98.4 (16) | H8A—O8—H8B | 107 (2) |
Mn1—O7—H7B | 114.6 (16) | H9A—O9—H9B | 101 (2) |
Mn1—O1—C1—O2 | 9.9 (2) | C1—C2—C7—C6 | −178.05 (15) |
Mn1—O1—C1—C2 | −169.86 (11) | C2—C3—C4—C5 | 0.0 (2) |
O1—C1—C2—C3 | −176.43 (15) | C3—C2—C7—O5 | 178.41 (14) |
O1—C1—C2—C7 | 0.6 (2) | C3—C2—C7—C6 | −0.9 (2) |
O2—C1—C2—C3 | 3.8 (2) | C3—C4—C5—O4 | −179.16 (15) |
O2—C1—C2—C7 | −179.10 (15) | C3—C4—C5—C6 | 0.8 (2) |
O3—C3—C4—C5 | 178.97 (15) | C4—C5—C6—C7 | −1.6 (2) |
O4—C5—C6—C7 | 178.33 (15) | C5—C6—C7—O5 | −177.64 (14) |
C1—C2—C3—O3 | −1.7 (2) | C5—C6—C7—C2 | 1.7 (2) |
C1—C2—C3—C4 | 177.25 (15) | C7—C2—C3—O3 | −178.91 (14) |
C1—C2—C7—O5 | 1.3 (2) | C7—C2—C3—C4 | 0.1 (2) |
Symmetry code: (i) −x+1, −y+1, −z+2. |
[Mn(C7H5O5)2(H2O)4]·4H2O | Z = 1 |
Mr = 537.29 | F(000) = 279 |
Triclinic, P1 | Dx = 1.616 Mg m−3 |
a = 7.4216 (1) Å | Cu Kα radiation, λ = 1.54184 Å |
b = 7.6597 (1) Å | Cell parameters from 5640 reflections |
c = 11.1934 (1) Å | θ = 4.0–77.3° |
α = 100.017 (1)° | µ = 5.68 mm−1 |
β = 90.262 (1)° | T = 100 K |
γ = 117.689 (2)° | Irregular, clear colourless |
V = 552.19 (2) Å3 | 0.28 × 0.19 × 0.08 mm |
XtaLAB Synergy, Dualflex, HyPix diffractometer | 2300 independent reflections |
Radiation source: micro-focus sealed X-ray tube, PhotonJet (Cu) X-ray Source | 2295 reflections with I > 2σ(I) |
Mirror monochromator | Rint = 0.030 |
Detector resolution: 10.0000 pixels mm-1 | θmax = 78.0°, θmin = 4.0° |
ω scans | h = −9→9 |
Absorption correction: multi-scan (CrysAlis PRO; Rigaku OD, 2018) | k = −9→9 |
Tmin = 0.617, Tmax = 1.000 | l = −14→12 |
6840 measured reflections |
Refinement on F2 | Hydrogen site location: mixed |
Least-squares matrix: full | H atoms treated by a mixture of independent and constrained refinement |
R[F2 > 2σ(F2)] = 0.028 | w = 1/[σ2(Fo2) + (0.0562P)2 + 0.0584P] where P = (Fo2 + 2Fc2)/3 |
wR(F2) = 0.081 | (Δ/σ)max < 0.001 |
S = 1.07 | Δρmax = 0.40 e Å−3 |
2300 reflections | Δρmin = −0.36 e Å−3 |
185 parameters | Extinction correction: SHELXL2018 (Sheldrick, 2015b), Fc*=kFc[1+0.001xFc2λ3/sin(2θ)]-1/4 |
13 restraints | Extinction coefficient: 0.0081 (13) |
Primary atom site location: dual |
Geometry. All esds (except the esd in the dihedral angle between two l.s. planes) are estimated using the full covariance matrix. The cell esds are taken into account individually in the estimation of esds in distances, angles and torsion angles; correlations between esds in cell parameters are only used when they are defined by crystal symmetry. An approximate (isotropic) treatment of cell esds is used for estimating esds involving l.s. planes. |
Refinement. The O-H distances were fixed at 0.85 and Uiso(H) = 1.5Ueq(O). |
x | y | z | Uiso*/Ueq | ||
Mn1 | 0.500000 | 0.000000 | 0.000000 | 0.01154 (13) | |
O1 | 0.35211 (16) | −0.01006 (15) | 0.28407 (9) | 0.0173 (2) | |
O2 | 0.58296 (16) | 0.19534 (15) | 0.17722 (9) | 0.0158 (2) | |
O3 | 0.85889 (16) | 0.54483 (15) | 0.28531 (9) | 0.0155 (2) | |
O4 | 0.87388 (17) | 0.71949 (15) | 0.71579 (9) | 0.0171 (2) | |
O5 | 0.36515 (15) | 0.08929 (15) | 0.51026 (9) | 0.0146 (2) | |
O6 | 0.6623 (2) | −0.14639 (19) | 0.06068 (11) | 0.0261 (3) | |
O7 | 0.22237 (16) | −0.23280 (15) | 0.06269 (10) | 0.0170 (2) | |
C1 | 0.5081 (2) | 0.1538 (2) | 0.27805 (13) | 0.0134 (3) | |
C2 | 0.6101 (2) | 0.3037 (2) | 0.39134 (12) | 0.0118 (3) | |
C3 | 0.7805 (2) | 0.4928 (2) | 0.39127 (12) | 0.0126 (3) | |
C4 | 0.8722 (2) | 0.6339 (2) | 0.49814 (12) | 0.0127 (3) | |
H4A | 0.984388 | 0.757771 | 0.496712 | 0.015* | |
H3 | 0.794 (3) | 0.451 (3) | 0.2264 (16) | 0.019* | |
H4 | 0.956 (3) | 0.834 (2) | 0.7104 (18) | 0.019* | |
H5 | 0.328 (3) | 0.024 (3) | 0.4353 (14) | 0.019* | |
H6A | 0.709 (3) | −0.124 (3) | 0.1328 (14) | 0.019* | |
H6B | 0.704 (3) | −0.221 (3) | 0.0169 (16) | 0.019* | |
H7A | 0.234 (3) | −0.184 (3) | 0.1357 (14) | 0.019* | |
H7B | 0.105 (3) | −0.268 (3) | 0.0336 (18) | 0.019* | |
H8A | 0.783 (3) | 0.911 (3) | 0.3548 (15) | 0.019* | |
H8B | 0.865 (3) | 0.810 (3) | 0.2889 (17) | 0.019* | |
H9A | 0.844 (3) | 0.644 (3) | 0.8744 (14) | 0.019* | |
H9B | 0.796 (3) | 0.505 (2) | 0.9400 (17) | 0.019* | |
C5 | 0.7934 (2) | 0.5869 (2) | 0.60772 (12) | 0.0133 (3) | |
C6 | 0.6269 (2) | 0.4021 (2) | 0.61238 (13) | 0.0136 (3) | |
H6 | 0.578272 | 0.371694 | 0.686512 | 0.016* | |
C7 | 0.5347 (2) | 0.2643 (2) | 0.50450 (13) | 0.0123 (3) | |
O8 | 0.84375 (16) | 0.90905 (15) | 0.29135 (9) | 0.0160 (2) | |
O9 | 0.83754 (17) | 0.62821 (16) | 0.94523 (9) | 0.0172 (2) |
U11 | U22 | U33 | U12 | U13 | U23 | |
Mn1 | 0.01360 (18) | 0.00876 (17) | 0.01057 (18) | 0.00462 (13) | −0.00058 (11) | −0.00022 (11) |
O1 | 0.0188 (5) | 0.0108 (5) | 0.0153 (5) | 0.0021 (4) | −0.0007 (4) | 0.0000 (4) |
O2 | 0.0202 (5) | 0.0118 (5) | 0.0111 (5) | 0.0052 (4) | 0.0009 (4) | −0.0010 (4) |
O3 | 0.0184 (5) | 0.0109 (5) | 0.0116 (5) | 0.0027 (4) | 0.0018 (4) | 0.0012 (4) |
O4 | 0.0219 (5) | 0.0088 (5) | 0.0119 (5) | 0.0009 (4) | −0.0007 (4) | −0.0002 (4) |
O5 | 0.0146 (5) | 0.0083 (5) | 0.0153 (5) | 0.0013 (4) | 0.0019 (4) | 0.0006 (4) |
O6 | 0.0405 (7) | 0.0344 (7) | 0.0157 (5) | 0.0307 (6) | −0.0052 (5) | −0.0035 (5) |
O7 | 0.0161 (5) | 0.0142 (5) | 0.0141 (5) | 0.0029 (4) | −0.0010 (4) | −0.0010 (4) |
C1 | 0.0162 (7) | 0.0113 (6) | 0.0136 (6) | 0.0079 (5) | 0.0004 (5) | 0.0008 (5) |
C2 | 0.0130 (7) | 0.0092 (6) | 0.0130 (6) | 0.0056 (5) | −0.0002 (5) | 0.0006 (5) |
C3 | 0.0147 (7) | 0.0113 (6) | 0.0141 (6) | 0.0077 (5) | 0.0023 (5) | 0.0030 (5) |
C4 | 0.0122 (6) | 0.0081 (6) | 0.0155 (7) | 0.0030 (5) | 0.0007 (5) | 0.0024 (5) |
C5 | 0.0161 (7) | 0.0109 (6) | 0.0122 (7) | 0.0071 (5) | −0.0015 (5) | −0.0007 (5) |
C6 | 0.0163 (7) | 0.0114 (6) | 0.0127 (6) | 0.0063 (6) | 0.0017 (5) | 0.0023 (5) |
C7 | 0.0130 (6) | 0.0081 (6) | 0.0159 (7) | 0.0052 (5) | 0.0010 (5) | 0.0020 (5) |
O8 | 0.0196 (5) | 0.0120 (5) | 0.0143 (5) | 0.0058 (4) | 0.0023 (4) | 0.0027 (4) |
O9 | 0.0231 (5) | 0.0135 (5) | 0.0138 (5) | 0.0082 (4) | 0.0006 (4) | 0.0014 (4) |
Mn1—O2 | 2.1571 (10) | O7—H7A | 0.823 (15) |
Mn1—O2i | 2.1572 (10) | O7—H7B | 0.828 (15) |
Mn1—O6 | 2.1642 (11) | C1—C2 | 1.4753 (18) |
Mn1—O6i | 2.1642 (11) | C2—C3 | 1.412 (2) |
Mn1—O7 | 2.2252 (11) | C2—C7 | 1.4110 (19) |
Mn1—O7i | 2.2252 (11) | C3—C4 | 1.3863 (19) |
O1—C1 | 1.2649 (18) | C4—H4A | 0.9300 |
O2—C1 | 1.2845 (18) | C4—C5 | 1.3932 (19) |
O3—C3 | 1.3635 (17) | C5—C6 | 1.391 (2) |
O3—H3 | 0.832 (15) | C6—H6 | 0.9300 |
O4—H4 | 0.817 (16) | C6—C7 | 1.3851 (19) |
O4—C5 | 1.3616 (16) | O8—H8A | 0.843 (15) |
O5—H5 | 0.870 (15) | O8—H8B | 0.838 (15) |
O5—C7 | 1.3593 (17) | O9—H9A | 0.821 (15) |
O6—H6A | 0.835 (15) | O9—H9B | 0.839 (15) |
O6—H6B | 0.854 (15) | ||
O2—Mn1—O2i | 180.0 | H7A—O7—H7B | 109 (2) |
O2i—Mn1—O6 | 91.13 (4) | O1—C1—O2 | 122.78 (12) |
O2i—Mn1—O6i | 88.87 (4) | O1—C1—C2 | 118.94 (13) |
O2—Mn1—O6 | 88.87 (4) | O2—C1—C2 | 118.28 (13) |
O2—Mn1—O6i | 91.13 (4) | C3—C2—C1 | 122.13 (12) |
O2—Mn1—O7 | 91.82 (4) | C7—C2—C1 | 120.39 (13) |
O2—Mn1—O7i | 88.18 (4) | C7—C2—C3 | 117.45 (12) |
O2i—Mn1—O7 | 88.18 (4) | O3—C3—C2 | 121.08 (12) |
O2i—Mn1—O7i | 91.82 (4) | O3—C3—C4 | 117.39 (12) |
O6—Mn1—O6i | 180.0 | C4—C3—C2 | 121.53 (13) |
O6i—Mn1—O7i | 86.81 (5) | C3—C4—H4A | 120.6 |
O6i—Mn1—O7 | 93.19 (5) | C3—C4—C5 | 118.83 (13) |
O6—Mn1—O7 | 86.81 (5) | C5—C4—H4A | 120.6 |
O6—Mn1—O7i | 93.19 (5) | O4—C5—C4 | 121.94 (13) |
O7—Mn1—O7i | 180.00 (5) | O4—C5—C6 | 116.38 (12) |
C1—O2—Mn1 | 128.26 (9) | C6—C5—C4 | 121.67 (12) |
C3—O3—H3 | 110.5 (14) | C5—C6—H6 | 120.6 |
C5—O4—H4 | 115.3 (14) | C7—C6—C5 | 118.74 (13) |
C7—O5—H5 | 105.2 (14) | C7—C6—H6 | 120.6 |
Mn1—O6—H6A | 123.5 (14) | O5—C7—C2 | 120.44 (12) |
Mn1—O6—H6B | 127.8 (13) | O5—C7—C6 | 117.80 (12) |
H6A—O6—H6B | 108.2 (18) | C6—C7—C2 | 121.75 (13) |
Mn1—O7—H7A | 101.9 (14) | H8A—O8—H8B | 103.7 (19) |
Mn1—O7—H7B | 122.8 (14) | H9A—O9—H9B | 104.6 (18) |
Mn1—O2—C1—O1 | −8.3 (2) | C1—C2—C7—C6 | −179.89 (12) |
Mn1—O2—C1—C2 | 171.22 (9) | C2—C3—C4—C5 | 0.0 (2) |
O1—C1—C2—C3 | −177.76 (12) | C3—C2—C7—O5 | 176.82 (12) |
O1—C1—C2—C7 | 0.2 (2) | C3—C2—C7—C6 | −1.9 (2) |
O2—C1—C2—C3 | 2.7 (2) | C3—C4—C5—O4 | −178.98 (12) |
O2—C1—C2—C7 | −179.41 (12) | C3—C4—C5—C6 | 0.5 (2) |
O3—C3—C4—C5 | 178.77 (12) | C4—C5—C6—C7 | −1.7 (2) |
O4—C5—C6—C7 | 177.83 (12) | C5—C6—C7—O5 | −176.32 (12) |
C1—C2—C3—O3 | −0.1 (2) | C5—C6—C7—C2 | 2.4 (2) |
C1—C2—C3—C4 | 178.62 (12) | C7—C2—C3—O3 | −178.09 (12) |
C1—C2—C7—O5 | −1.2 (2) | C7—C2—C3—C4 | 0.63 (19) |
Symmetry code: (i) −x+1, −y, −z. |
[Co(C7H5O5)2(H2O)4]·4H2O | F(000) = 562 |
Mr = 541.28 | Dx = 1.710 Mg m−3 |
Monoclinic, P21/n | Cu Kα radiation, λ = 1.54184 Å |
a = 6.9262 (1) Å | Cell parameters from 5845 reflections |
b = 12.6128 (1) Å | θ = 5.1–76.8° |
c = 12.3289 (1) Å | µ = 7.26 mm−1 |
β = 102.524 (1)° | T = 100 K |
V = 1051.41 (2) Å3 | Irregular, clear colourless |
Z = 2 | 0.25 × 0.21 × 0.16 mm |
XtaLAB Synergy, Dualflex, HyPix diffractometer | 2135 independent reflections |
Radiation source: micro-focus sealed X-ray tube, PhotonJet (Cu) X-ray Source | 2037 reflections with I > 2σ(I) |
Mirror monochromator | Rint = 0.018 |
Detector resolution: 10.0000 pixels mm-1 | θmax = 77.0°, θmin = 5.1° |
ω scans | h = −8→8 |
Absorption correction: multi-scan (CrysAlis PRO; Rigaku OD, 2018) | k = −6→15 |
Tmin = 0.745, Tmax = 1.000 | l = −15→14 |
6725 measured reflections |
Refinement on F2 | Hydrogen site location: mixed |
Least-squares matrix: full | H atoms treated by a mixture of independent and constrained refinement |
R[F2 > 2σ(F2)] = 0.025 | w = 1/[σ2(Fo2) + (0.0432P)2 + 0.566P] where P = (Fo2 + 2Fc2)/3 |
wR(F2) = 0.069 | (Δ/σ)max < 0.001 |
S = 1.04 | Δρmax = 0.33 e Å−3 |
2135 reflections | Δρmin = −0.28 e Å−3 |
182 parameters | Extinction correction: SHELXL2018 (Sheldrick, 2015b), Fc*=kFc[1+0.001xFc2λ3/sin(2θ)]-1/4 |
11 restraints | Extinction coefficient: 0.0086 (5) |
Primary atom site location: dual |
Geometry. All esds (except the esd in the dihedral angle between two l.s. planes) are estimated using the full covariance matrix. The cell esds are taken into account individually in the estimation of esds in distances, angles and torsion angles; correlations between esds in cell parameters are only used when they are defined by crystal symmetry. An approximate (isotropic) treatment of cell esds is used for estimating esds involving l.s. planes. |
Refinement. The O-H distances were fixed at 0.85 and Uiso(H) = 1.5Ueq(O). |
x | y | z | Uiso*/Ueq | ||
Co1 | 0.500000 | 0.500000 | 1.000000 | 0.00584 (12) | |
O4 | 0.16182 (16) | 0.52086 (9) | 0.30066 (9) | 0.0119 (2) | |
H4 | 0.191 (3) | 0.5829 (13) | 0.2847 (16) | 0.018* | |
O7 | 0.75121 (15) | 0.42374 (8) | 0.97269 (9) | 0.0112 (2) | |
H7A | 0.739 (3) | 0.3807 (15) | 0.9235 (14) | 0.017* | |
H7B | 0.835 (3) | 0.4012 (16) | 1.0253 (14) | 0.017* | |
O5 | 0.42088 (15) | 0.63980 (8) | 0.67053 (8) | 0.0108 (2) | |
H5 | 0.432 (3) | 0.6128 (15) | 0.7336 (13) | 0.016* | |
O6 | 0.35941 (14) | 0.35108 (8) | 1.00718 (8) | 0.0090 (2) | |
H6A | 0.439 (3) | 0.3039 (14) | 1.0332 (15) | 0.014* | |
H6B | 0.320 (3) | 0.3391 (15) | 0.9382 (13) | 0.014* | |
O3 | 0.15005 (15) | 0.28968 (8) | 0.59731 (8) | 0.0114 (2) | |
H3 | 0.187 (3) | 0.2920 (16) | 0.6676 (13) | 0.017* | |
O1 | 0.39716 (16) | 0.51435 (8) | 0.82853 (9) | 0.0097 (2) | |
O2 | 0.28344 (16) | 0.34967 (8) | 0.79161 (8) | 0.0150 (2) | |
C5 | 0.2084 (2) | 0.50482 (10) | 0.41233 (13) | 0.0086 (3) | |
C1 | 0.32531 (19) | 0.44066 (11) | 0.75976 (11) | 0.0089 (3) | |
C2 | 0.29105 (19) | 0.46287 (11) | 0.64032 (11) | 0.0077 (3) | |
C7 | 0.33792 (19) | 0.56207 (11) | 0.59857 (11) | 0.0079 (3) | |
C3 | 0.20152 (19) | 0.38594 (11) | 0.56207 (11) | 0.0082 (3) | |
C4 | 0.1599 (2) | 0.40614 (11) | 0.44943 (11) | 0.0088 (3) | |
H4A | 0.099179 | 0.353576 | 0.398035 | 0.011* | |
C6 | 0.29881 (19) | 0.58312 (11) | 0.48587 (11) | 0.0087 (3) | |
H6 | 0.332861 | 0.649638 | 0.459070 | 0.010* | |
O9 | 0.77411 (16) | 0.29286 (8) | 0.78694 (9) | 0.0123 (2) | |
H9A | 0.697 (3) | 0.2505 (14) | 0.7440 (15) | 0.018* | |
H9B | 0.872 (3) | 0.2555 (15) | 0.8082 (16) | 0.018* | |
O8 | 0.92648 (15) | 0.63881 (8) | 0.86055 (9) | 0.0130 (2) | |
H8A | 0.905604 | 0.585304 | 0.817694 | 0.020* | |
H8B | 0.840837 | 0.633521 | 0.900303 | 0.020* |
U11 | U22 | U33 | U12 | U13 | U23 | |
Co1 | 0.00797 (18) | 0.00444 (18) | 0.00542 (18) | 0.00026 (10) | 0.00214 (12) | 0.00024 (10) |
O4 | 0.0193 (5) | 0.0104 (5) | 0.0060 (5) | −0.0021 (4) | 0.0029 (4) | 0.0011 (4) |
O7 | 0.0126 (5) | 0.0111 (5) | 0.0099 (5) | 0.0039 (4) | 0.0024 (4) | −0.0013 (4) |
O5 | 0.0177 (5) | 0.0071 (5) | 0.0076 (5) | −0.0035 (4) | 0.0024 (4) | −0.0012 (4) |
O6 | 0.0117 (5) | 0.0073 (5) | 0.0079 (5) | 0.0009 (4) | 0.0016 (4) | 0.0007 (4) |
O3 | 0.0181 (5) | 0.0067 (5) | 0.0083 (5) | −0.0044 (4) | 0.0003 (4) | 0.0006 (4) |
O1 | 0.0145 (5) | 0.0083 (5) | 0.0060 (5) | −0.0012 (4) | 0.0015 (4) | −0.0003 (3) |
O2 | 0.0261 (6) | 0.0094 (5) | 0.0081 (5) | −0.0062 (4) | 0.0010 (4) | 0.0016 (4) |
C5 | 0.0073 (7) | 0.0106 (7) | 0.0084 (7) | 0.0022 (4) | 0.0031 (5) | −0.0003 (4) |
C1 | 0.0090 (6) | 0.0083 (6) | 0.0092 (6) | 0.0001 (5) | 0.0018 (5) | −0.0007 (5) |
C2 | 0.0087 (6) | 0.0071 (7) | 0.0077 (6) | 0.0006 (5) | 0.0026 (5) | 0.0005 (5) |
C7 | 0.0064 (6) | 0.0071 (6) | 0.0107 (6) | 0.0006 (5) | 0.0031 (5) | −0.0019 (5) |
C3 | 0.0081 (6) | 0.0056 (6) | 0.0113 (7) | 0.0004 (5) | 0.0029 (5) | 0.0003 (5) |
C4 | 0.0101 (6) | 0.0080 (6) | 0.0087 (6) | −0.0005 (5) | 0.0024 (5) | −0.0026 (5) |
C6 | 0.0096 (6) | 0.0072 (6) | 0.0104 (6) | 0.0010 (5) | 0.0043 (5) | 0.0006 (5) |
O9 | 0.0149 (5) | 0.0087 (5) | 0.0131 (5) | 0.0024 (4) | 0.0028 (4) | 0.0004 (4) |
O8 | 0.0142 (5) | 0.0133 (5) | 0.0125 (5) | −0.0015 (4) | 0.0050 (4) | −0.0020 (4) |
Co1—O7 | 2.0785 (10) | O1—C1 | 1.2835 (17) |
Co1—O7i | 2.0785 (10) | O2—C1 | 1.2669 (18) |
Co1—O6 | 2.1264 (10) | C5—C4 | 1.3921 (19) |
Co1—O6i | 2.1264 (10) | C5—C6 | 1.394 (2) |
Co1—O1 | 2.0872 (10) | C1—C2 | 1.4669 (19) |
Co1—O1i | 2.0872 (10) | C2—C7 | 1.4171 (19) |
O4—H4 | 0.842 (15) | C2—C3 | 1.4132 (19) |
O4—C5 | 1.3593 (19) | C7—C6 | 1.3825 (19) |
O7—H7A | 0.805 (15) | C3—C4 | 1.3795 (19) |
O7—H7B | 0.821 (15) | C4—H4A | 0.9500 |
O5—H5 | 0.837 (15) | C6—H6 | 0.9500 |
O5—C7 | 1.3628 (17) | O9—H9A | 0.854 (15) |
O6—H6A | 0.829 (15) | O9—H9B | 0.821 (15) |
O6—H6B | 0.848 (15) | O8—H8A | 0.8500 |
O3—H3 | 0.849 (15) | O8—H8B | 0.8500 |
O3—C3 | 1.3627 (16) | ||
O7—Co1—O7i | 180.0 | C1—O1—Co1 | 127.20 (9) |
O7i—Co1—O6i | 90.29 (4) | O4—C5—C4 | 116.40 (13) |
O7—Co1—O6 | 90.29 (4) | O4—C5—C6 | 121.86 (12) |
O7—Co1—O6i | 89.71 (4) | C4—C5—C6 | 121.73 (14) |
O7i—Co1—O6 | 89.71 (4) | O1—C1—C2 | 118.69 (12) |
O7—Co1—O1 | 89.42 (4) | O2—C1—O1 | 122.23 (12) |
O7i—Co1—O1i | 89.42 (4) | O2—C1—C2 | 119.08 (12) |
O7—Co1—O1i | 90.58 (4) | C7—C2—C1 | 122.22 (12) |
O7i—Co1—O1 | 90.58 (4) | C3—C2—C1 | 120.38 (12) |
O6i—Co1—O6 | 180.0 | C3—C2—C7 | 117.35 (12) |
O1—Co1—O6 | 93.44 (4) | O5—C7—C2 | 119.75 (12) |
O1—Co1—O6i | 86.56 (4) | O5—C7—C6 | 118.63 (12) |
O1i—Co1—O6i | 93.44 (4) | C6—C7—C2 | 121.61 (12) |
O1i—Co1—O6 | 86.56 (4) | O3—C3—C2 | 120.04 (12) |
O1—Co1—O1i | 180.00 (8) | O3—C3—C4 | 118.26 (12) |
C5—O4—H4 | 111.1 (13) | C4—C3—C2 | 121.69 (12) |
Co1—O7—H7A | 118.7 (14) | C5—C4—H4A | 120.5 |
Co1—O7—H7B | 120.2 (14) | C3—C4—C5 | 118.91 (13) |
H7A—O7—H7B | 108 (2) | C3—C4—H4A | 120.5 |
C7—O5—H5 | 104.7 (14) | C5—C6—H6 | 120.7 |
Co1—O6—H6A | 112.1 (13) | C7—C6—C5 | 118.70 (13) |
Co1—O6—H6B | 99.6 (13) | C7—C6—H6 | 120.6 |
H6A—O6—H6B | 107.7 (18) | H9A—O9—H9B | 101.8 (19) |
C3—O3—H3 | 104.7 (14) | H8A—O8—H8B | 104.5 |
Co1—O1—C1—O2 | 9.72 (19) | C1—C2—C7—C6 | −177.82 (12) |
Co1—O1—C1—C2 | −170.19 (9) | C1—C2—C3—O3 | −1.32 (19) |
O4—C5—C4—C3 | −179.18 (12) | C1—C2—C3—C4 | 177.26 (12) |
O4—C5—C6—C7 | 178.57 (13) | C2—C7—C6—C5 | 0.9 (2) |
O5—C7—C6—C5 | −178.07 (12) | C2—C3—C4—C5 | 0.3 (2) |
O3—C3—C4—C5 | 178.86 (12) | C7—C2—C3—O3 | −178.91 (11) |
O1—C1—C2—C7 | 1.2 (2) | C7—C2—C3—C4 | −0.3 (2) |
O1—C1—C2—C3 | −176.30 (12) | C3—C2—C7—O5 | 178.72 (11) |
O2—C1—C2—C7 | −178.74 (13) | C3—C2—C7—C6 | −0.3 (2) |
O2—C1—C2—C3 | 3.79 (19) | C4—C5—C6—C7 | −1.0 (2) |
C1—C2—C7—O5 | 1.2 (2) | C6—C5—C4—C3 | 0.4 (2) |
Symmetry code: (i) −x+1, −y+1, −z+2. |
[Ni(C7H5O5)2(H2O)4]·4H2O | F(000) = 564 |
Mr = 541.06 | Dx = 1.721 Mg m−3 |
Monoclinic, P21/n | Cu Kα radiation, λ = 1.54184 Å |
a = 6.9107 (1) Å | Cell parameters from 5117 reflections |
b = 12.5958 (2) Å | θ = 5.1–76.4° |
c = 12.2782 (2) Å | µ = 2.20 mm−1 |
β = 102.279 (1)° | T = 100 K |
V = 1044.32 (3) Å3 | Irregular, clear colourless |
Z = 2 | 0.2 × 0.18 × 0.08 mm |
XtaLAB Synergy, Dualflex, HyPix diffractometer | 2073 independent reflections |
Radiation source: micro-focus sealed X-ray tube, PhotonJet (Cu) X-ray Source | 1928 reflections with I > 2σ(I) |
Mirror monochromator | Rint = 0.028 |
Detector resolution: 10.0000 pixels mm-1 | θmax = 76.6°, θmin = 5.1° |
ω scans | h = −8→8 |
Absorption correction: multi-scan (CrysAlis PRO; Rigaku OD, 2018) | k = −15→15 |
Tmin = 0.910, Tmax = 1.000 | l = −15→10 |
7237 measured reflections |
Refinement on F2 | Primary atom site location: dual |
Least-squares matrix: full | Hydrogen site location: mixed |
R[F2 > 2σ(F2)] = 0.030 | H atoms treated by a mixture of independent and constrained refinement |
wR(F2) = 0.084 | w = 1/[σ2(Fo2) + (0.0521P)2 + 0.4739P] where P = (Fo2 + 2Fc2)/3 |
S = 1.04 | (Δ/σ)max < 0.001 |
2073 reflections | Δρmax = 0.38 e Å−3 |
184 parameters | Δρmin = −0.70 e Å−3 |
0 restraints |
Geometry. All esds (except the esd in the dihedral angle between two l.s. planes) are estimated using the full covariance matrix. The cell esds are taken into account individually in the estimation of esds in distances, angles and torsion angles; correlations between esds in cell parameters are only used when they are defined by crystal symmetry. An approximate (isotropic) treatment of cell esds is used for estimating esds involving l.s. planes. |
Refinement. The O-H distances were fixed at 0.85 and Uiso(H) = 1.5Ueq(O). |
x | y | z | Uiso*/Ueq | ||
Ni1 | 0.500000 | 0.500000 | 1.000000 | 0.00972 (13) | |
O1 | 0.40024 (16) | 0.51349 (8) | 0.83139 (9) | 0.0133 (2) | |
O2 | 0.28564 (18) | 0.34881 (9) | 0.79399 (9) | 0.0193 (3) | |
O3 | 0.15298 (17) | 0.28873 (8) | 0.59934 (9) | 0.0159 (2) | |
O4 | 0.16184 (17) | 0.52135 (10) | 0.30216 (9) | 0.0156 (2) | |
O5 | 0.42312 (17) | 0.63961 (8) | 0.67295 (9) | 0.0147 (2) | |
O6 | 0.75147 (17) | 0.42672 (9) | 0.97245 (10) | 0.0143 (2) | |
O7 | 0.63633 (16) | 0.64645 (8) | 0.99029 (9) | 0.0122 (2) | |
C1 | 0.3277 (2) | 0.44009 (12) | 0.76228 (12) | 0.0129 (3) | |
C2 | 0.2928 (2) | 0.46275 (12) | 0.64245 (12) | 0.0118 (3) | |
C3 | 0.2033 (2) | 0.38558 (11) | 0.56413 (12) | 0.0127 (3) | |
C4 | 0.1617 (2) | 0.40626 (12) | 0.45123 (12) | 0.0128 (3) | |
H4A | 0.102608 | 0.354745 | 0.400693 | 0.015* | |
H3 | 0.197 (3) | 0.2891 (16) | 0.6692 (18) | 0.019* | |
H4 | 0.186 (3) | 0.5785 (18) | 0.2885 (17) | 0.019* | |
H5 | 0.436 (3) | 0.6143 (16) | 0.7346 (18) | 0.019* | |
H6A | 0.742 (3) | 0.3876 (18) | 0.9295 (18) | 0.019* | |
H6B | 0.834 (3) | 0.4052 (16) | 1.0229 (18) | 0.019* | |
H7A | 0.555 (3) | 0.6936 (17) | 0.9629 (17) | 0.019* | |
H7B | 0.672 (3) | 0.6599 (16) | 1.0544 (19) | 0.019* | |
H8A | 0.094 (3) | 0.4139 (17) | 0.1810 (18) | 0.019* | |
H8B | 0.153 (3) | 0.3691 (16) | 0.0981 (18) | 0.019* | |
H9A | 0.308 (3) | 0.7485 (16) | 0.2555 (17) | 0.019* | |
H9B | 0.135 (3) | 0.7442 (17) | 0.1926 (17) | 0.019* | |
C5 | 0.2092 (2) | 0.50518 (11) | 0.41399 (13) | 0.0127 (3) | |
C6 | 0.2996 (2) | 0.58352 (11) | 0.48793 (12) | 0.0123 (3) | |
H6 | 0.332550 | 0.648917 | 0.461744 | 0.015* | |
C7 | 0.3392 (2) | 0.56195 (11) | 0.60106 (12) | 0.0123 (3) | |
O8 | 0.07238 (17) | 0.36210 (9) | 0.14029 (10) | 0.0165 (2) | |
O9 | 0.22808 (18) | 0.70692 (9) | 0.21346 (9) | 0.0159 (2) |
U11 | U22 | U33 | U12 | U13 | U23 | |
Ni1 | 0.0128 (2) | 0.0098 (2) | 0.0060 (2) | 0.00048 (12) | 0.00077 (14) | 0.00014 (11) |
O1 | 0.0187 (6) | 0.0136 (5) | 0.0069 (5) | −0.0011 (4) | 0.0010 (4) | −0.0006 (4) |
O2 | 0.0313 (6) | 0.0142 (5) | 0.0102 (5) | −0.0060 (4) | −0.0008 (4) | 0.0014 (4) |
O3 | 0.0232 (6) | 0.0124 (5) | 0.0100 (5) | −0.0047 (4) | −0.0014 (4) | 0.0002 (4) |
O4 | 0.0240 (6) | 0.0147 (5) | 0.0072 (5) | −0.0015 (4) | 0.0017 (4) | 0.0008 (4) |
O5 | 0.0227 (6) | 0.0121 (5) | 0.0083 (5) | −0.0035 (4) | 0.0012 (4) | −0.0014 (4) |
O6 | 0.0157 (5) | 0.0164 (5) | 0.0101 (5) | 0.0042 (4) | 0.0012 (4) | −0.0021 (4) |
O7 | 0.0161 (5) | 0.0114 (5) | 0.0081 (5) | 0.0013 (4) | 0.0006 (4) | 0.0009 (4) |
C1 | 0.0131 (7) | 0.0147 (7) | 0.0099 (7) | 0.0008 (5) | 0.0003 (5) | −0.0008 (5) |
C2 | 0.0142 (7) | 0.0122 (7) | 0.0088 (7) | 0.0013 (6) | 0.0017 (5) | 0.0001 (5) |
C3 | 0.0141 (7) | 0.0111 (7) | 0.0126 (7) | 0.0008 (5) | 0.0023 (5) | 0.0012 (5) |
C4 | 0.0150 (7) | 0.0130 (7) | 0.0095 (7) | −0.0012 (5) | 0.0006 (5) | −0.0036 (5) |
C5 | 0.0146 (7) | 0.0151 (7) | 0.0085 (7) | 0.0026 (5) | 0.0026 (6) | 0.0003 (5) |
C6 | 0.0144 (7) | 0.0116 (7) | 0.0110 (7) | 0.0006 (5) | 0.0027 (5) | 0.0004 (5) |
C7 | 0.0129 (7) | 0.0121 (7) | 0.0116 (7) | 0.0005 (5) | 0.0021 (5) | −0.0021 (5) |
O8 | 0.0184 (6) | 0.0180 (6) | 0.0129 (5) | −0.0018 (4) | 0.0032 (4) | −0.0015 (4) |
O9 | 0.0194 (6) | 0.0140 (5) | 0.0135 (5) | 0.0021 (4) | 0.0019 (4) | −0.0002 (4) |
Ni1—O1i | 2.0452 (10) | O7—H7A | 0.84 (2) |
Ni1—O1 | 2.0452 (10) | O7—H7B | 0.79 (2) |
Ni1—O6 | 2.0583 (11) | C1—C2 | 1.467 (2) |
Ni1—O6i | 2.0583 (11) | C2—C3 | 1.414 (2) |
Ni1—O7 | 2.0863 (10) | C2—C7 | 1.411 (2) |
Ni1—O7i | 2.0863 (10) | C3—C4 | 1.379 (2) |
O1—C1 | 1.2827 (18) | C4—H4A | 0.9300 |
O2—C1 | 1.2673 (19) | C4—C5 | 1.390 (2) |
O3—C3 | 1.3637 (18) | C5—C6 | 1.395 (2) |
O3—H3 | 0.85 (2) | C6—H6 | 0.9300 |
O4—H4 | 0.76 (2) | C6—C7 | 1.384 (2) |
O4—C5 | 1.3576 (19) | O8—H8A | 0.82 (2) |
O5—H5 | 0.81 (2) | O8—H8B | 0.84 (2) |
O5—C7 | 1.3618 (18) | O9—H9A | 0.85 (2) |
O6—H6A | 0.71 (2) | O9—H9B | 0.79 (2) |
O6—H6B | 0.80 (2) | ||
O1i—Ni1—O1 | 180.0 | H7A—O7—H7B | 107 (2) |
O1—Ni1—O6 | 89.17 (5) | O1—C1—C2 | 118.74 (13) |
O1—Ni1—O6i | 90.83 (5) | O2—C1—O1 | 122.24 (13) |
O1i—Ni1—O6 | 90.83 (5) | O2—C1—C2 | 119.01 (13) |
O1i—Ni1—O6i | 89.17 (5) | C3—C2—C1 | 120.20 (13) |
O1i—Ni1—O7 | 94.14 (4) | C7—C2—C1 | 122.12 (13) |
O1i—Ni1—O7i | 85.86 (4) | C7—C2—C3 | 117.64 (13) |
O1—Ni1—O7 | 85.86 (4) | O3—C3—C2 | 120.23 (13) |
O1—Ni1—O7i | 94.14 (4) | O3—C3—C4 | 118.35 (13) |
O6—Ni1—O6i | 180.0 | C4—C3—C2 | 121.41 (13) |
O6i—Ni1—O7i | 88.84 (4) | C3—C4—H4A | 120.4 |
O6i—Ni1—O7 | 91.16 (4) | C3—C4—C5 | 119.10 (13) |
O6—Ni1—O7 | 88.84 (4) | C5—C4—H4A | 120.4 |
O6—Ni1—O7i | 91.16 (4) | O4—C5—C4 | 116.36 (13) |
O7—Ni1—O7i | 180.0 | O4—C5—C6 | 122.02 (13) |
C1—O1—Ni1 | 127.59 (9) | C4—C5—C6 | 121.61 (14) |
C3—O3—H3 | 104.9 (14) | C5—C6—H6 | 120.7 |
C5—O4—H4 | 110.2 (15) | C7—C6—C5 | 118.67 (14) |
C7—O5—H5 | 105.8 (14) | C7—C6—H6 | 120.7 |
Ni1—O6—H6A | 118.6 (18) | O5—C7—C2 | 120.04 (13) |
Ni1—O6—H6B | 121.2 (15) | O5—C7—C6 | 118.39 (13) |
H6A—O6—H6B | 106 (2) | C6—C7—C2 | 121.56 (13) |
Ni1—O7—H7A | 112.1 (14) | H8A—O8—H8B | 104 (2) |
Ni1—O7—H7B | 100.4 (15) | H9A—O9—H9B | 102.2 (19) |
Ni1—O1—C1—O2 | 9.0 (2) | C1—C2—C7—C6 | −177.85 (13) |
Ni1—O1—C1—C2 | −170.80 (9) | C2—C3—C4—C5 | 0.1 (2) |
O1—C1—C2—C3 | −176.64 (13) | C3—C2—C7—O5 | 179.11 (13) |
O1—C1—C2—C7 | 1.0 (2) | C3—C2—C7—C6 | −0.2 (2) |
O2—C1—C2—C3 | 3.5 (2) | C3—C4—C5—O4 | −178.99 (14) |
O2—C1—C2—C7 | −178.88 (14) | C3—C4—C5—C6 | 0.6 (2) |
O3—C3—C4—C5 | 179.03 (13) | C4—C5—C6—C7 | −1.1 (2) |
O4—C5—C6—C7 | 178.52 (14) | C5—C6—C7—O5 | −178.46 (13) |
C1—C2—C3—O3 | −1.5 (2) | C5—C6—C7—C2 | 0.8 (2) |
C1—C2—C3—C4 | 177.42 (13) | C7—C2—C3—O3 | −179.23 (13) |
C1—C2—C7—O5 | 1.4 (2) | C7—C2—C3—C4 | −0.3 (2) |
Symmetry code: (i) −x+1, −y+1, −z+2. |
[Zn(C7H5O5)2(H2O)4]·4H2O | F(000) = 568 |
Mr = 547.72 | Dx = 1.727 Mg m−3 |
Monoclinic, P21/n | Cu Kα radiation, λ = 1.54184 Å |
a = 6.9305 (1) Å | Cell parameters from 5598 reflections |
b = 12.6412 (1) Å | θ = 5.1–76.8° |
c = 12.3144 (1) Å | µ = 2.48 mm−1 |
β = 102.542 (1)° | T = 100 K |
V = 1053.12 (2) Å3 | Irregular, clear colourless |
Z = 2 | 0.17 × 0.09 × 0.08 mm |
XtaLAB Synergy, Dualflex, HyPix diffractometer | 2067 independent reflections |
Radiation source: micro-focus sealed X-ray tube, PhotonJet (Cu) X-ray Source | 1975 reflections with I > 2σ(I) |
Mirror monochromator | Rint = 0.019 |
Detector resolution: 10.0000 pixels mm-1 | θmax = 76.9°, θmin = 5.1° |
ω scans | h = −4→8 |
Absorption correction: gaussian (CrysAlis PRO; Rigaku OD, 2020) | k = −14→15 |
Tmin = 0.562, Tmax = 1.000 | l = −15→14 |
6622 measured reflections |
Refinement on F2 | Hydrogen site location: mixed |
Least-squares matrix: full | H atoms treated by a mixture of independent and constrained refinement |
R[F2 > 2σ(F2)] = 0.022 | w = 1/[σ2(Fo2) + (0.0305P)2 + 0.6248P] where P = (Fo2 + 2Fc2)/3 |
wR(F2) = 0.061 | (Δ/σ)max < 0.001 |
S = 1.07 | Δρmax = 0.39 e Å−3 |
2067 reflections | Δρmin = −0.32 e Å−3 |
185 parameters | Extinction correction: SHELXL2018 (Sheldrick, 2015b), Fc*=kFc[1+0.001xFc2λ3/sin(2θ)]-1/4 |
11 restraints | Extinction coefficient: 0.0016 (2) |
Primary atom site location: dual |
Geometry. All esds (except the esd in the dihedral angle between two l.s. planes) are estimated using the full covariance matrix. The cell esds are taken into account individually in the estimation of esds in distances, angles and torsion angles; correlations between esds in cell parameters are only used when they are defined by crystal symmetry. An approximate (isotropic) treatment of cell esds is used for estimating esds involving l.s. planes. |
Refinement. The O-H distances were fixed at 0.85 and Uiso(H) = 1.5Ueq(O). |
x | y | z | Uiso*/Ueq | ||
Zn1 | 0.500000 | 0.500000 | 0.000000 | 0.00933 (10) | |
O5 | 0.57921 (15) | 0.63961 (8) | 0.32864 (8) | 0.0133 (2) | |
H5 | 0.570 (3) | 0.6157 (15) | 0.2662 (13) | 0.020* | |
O8 | 0.36018 (14) | 0.64918 (8) | 0.00865 (8) | 0.0116 (2) | |
H8A | 0.440 (2) | 0.6969 (13) | 0.0342 (15) | 0.017* | |
H8B | 0.319 (3) | 0.6596 (15) | −0.0601 (12) | 0.017* | |
O6 | 0.24598 (14) | 0.42456 (8) | 0.02813 (8) | 0.0138 (2) | |
H6A | 0.256 (3) | 0.3805 (14) | 0.0766 (14) | 0.021* | |
H6B | 0.162 (3) | 0.4022 (15) | −0.0229 (14) | 0.021* | |
O3 | 0.84740 (15) | 0.28956 (8) | 0.40240 (8) | 0.0140 (2) | |
H3 | 0.810 (3) | 0.2917 (16) | 0.3332 (13) | 0.021* | |
O1 | 0.60215 (15) | 0.51390 (7) | 0.17047 (8) | 0.0124 (2) | |
O4 | 0.83860 (15) | 0.52117 (8) | 0.69896 (8) | 0.0143 (2) | |
H4 | 0.814 (3) | 0.5824 (13) | 0.7141 (16) | 0.021* | |
O2 | 0.71500 (16) | 0.34954 (8) | 0.20773 (8) | 0.0174 (2) | |
C3 | 0.79760 (19) | 0.38598 (11) | 0.43746 (11) | 0.0105 (3) | |
C5 | 0.7915 (2) | 0.50497 (10) | 0.58716 (12) | 0.0109 (3) | |
C2 | 0.70816 (19) | 0.46294 (11) | 0.35916 (11) | 0.0101 (3) | |
C6 | 0.70157 (19) | 0.58311 (11) | 0.51340 (11) | 0.0108 (3) | |
H6 | 0.668029 | 0.649658 | 0.540046 | 0.013* | |
C4 | 0.83914 (19) | 0.40637 (11) | 0.55027 (11) | 0.0113 (3) | |
H4A | 0.899314 | 0.353906 | 0.601869 | 0.014* | |
C7 | 0.66220 (19) | 0.56167 (11) | 0.40045 (11) | 0.0105 (3) | |
C1 | 0.67368 (19) | 0.44037 (11) | 0.23931 (11) | 0.0116 (3) | |
O7 | 0.07440 (15) | 0.63919 (8) | 0.14042 (9) | 0.0155 (2) | |
H7A | 0.156 (3) | 0.6328 (16) | 0.1007 (15) | 0.023* | |
H7B | 0.090 (3) | 0.5861 (14) | 0.1811 (15) | 0.023* | |
O9 | 0.22496 (15) | 0.29299 (8) | 0.21366 (8) | 0.0147 (2) | |
H9A | 0.307 (3) | 0.2518 (14) | 0.2541 (15) | 0.022* | |
H9B | 0.128 (2) | 0.2551 (15) | 0.1907 (16) | 0.022* |
U11 | U22 | U33 | U12 | U13 | U23 | |
Zn1 | 0.01025 (15) | 0.00926 (15) | 0.00812 (15) | 0.00000 (8) | 0.00122 (10) | −0.00008 (8) |
O5 | 0.0185 (5) | 0.0111 (5) | 0.0097 (5) | 0.0035 (4) | 0.0015 (4) | 0.0013 (4) |
O8 | 0.0130 (5) | 0.0110 (5) | 0.0100 (5) | −0.0009 (4) | 0.0007 (4) | −0.0005 (4) |
O6 | 0.0135 (5) | 0.0154 (5) | 0.0118 (5) | −0.0046 (4) | 0.0011 (4) | 0.0010 (4) |
O3 | 0.0193 (5) | 0.0108 (5) | 0.0102 (5) | 0.0045 (4) | −0.0006 (4) | −0.0011 (4) |
O1 | 0.0169 (5) | 0.0115 (5) | 0.0082 (5) | 0.0019 (4) | 0.0012 (4) | 0.0012 (4) |
O4 | 0.0211 (5) | 0.0131 (5) | 0.0082 (5) | 0.0018 (4) | 0.0022 (4) | −0.0009 (4) |
O2 | 0.0271 (6) | 0.0127 (5) | 0.0104 (5) | 0.0062 (4) | −0.0002 (4) | −0.0014 (4) |
C3 | 0.0092 (6) | 0.0096 (6) | 0.0129 (6) | −0.0007 (5) | 0.0025 (5) | 0.0000 (5) |
C5 | 0.0088 (6) | 0.0142 (7) | 0.0100 (6) | −0.0027 (5) | 0.0027 (5) | 0.0003 (5) |
C2 | 0.0096 (6) | 0.0114 (6) | 0.0092 (6) | −0.0013 (5) | 0.0020 (5) | 0.0000 (5) |
C6 | 0.0102 (6) | 0.0107 (6) | 0.0119 (6) | −0.0008 (5) | 0.0033 (5) | −0.0016 (5) |
C4 | 0.0109 (6) | 0.0118 (6) | 0.0111 (6) | 0.0003 (5) | 0.0020 (5) | 0.0018 (5) |
C7 | 0.0078 (6) | 0.0110 (6) | 0.0127 (6) | −0.0010 (5) | 0.0025 (5) | 0.0026 (5) |
C1 | 0.0100 (6) | 0.0127 (6) | 0.0116 (6) | −0.0003 (5) | 0.0010 (5) | −0.0005 (5) |
O7 | 0.0160 (5) | 0.0169 (5) | 0.0143 (5) | 0.0015 (4) | 0.0048 (4) | 0.0020 (4) |
O9 | 0.0161 (5) | 0.0125 (5) | 0.0150 (5) | −0.0022 (4) | 0.0021 (4) | −0.0006 (4) |
Zn1—O8 | 2.1335 (10) | O4—C5 | 1.3597 (17) |
Zn1—O8i | 2.1334 (10) | O2—C1 | 1.2649 (17) |
Zn1—O6 | 2.0961 (10) | C3—C2 | 1.4145 (19) |
Zn1—O6i | 2.0961 (10) | C3—C4 | 1.3803 (19) |
Zn1—O1 | 2.0721 (10) | C5—C6 | 1.3940 (19) |
Zn1—O1i | 2.0721 (10) | C5—C4 | 1.3908 (19) |
O5—H5 | 0.815 (15) | C2—C7 | 1.4099 (19) |
O5—C7 | 1.3648 (16) | C2—C1 | 1.4710 (18) |
O8—H8A | 0.834 (15) | C6—H6 | 0.9500 |
O8—H8B | 0.844 (15) | C6—C7 | 1.3848 (19) |
O6—H6A | 0.808 (15) | C4—H4A | 0.9500 |
O6—H6B | 0.808 (15) | O7—H7A | 0.829 (15) |
O3—H3 | 0.835 (15) | O7—H7B | 0.830 (15) |
O3—C3 | 1.3623 (16) | O9—H9A | 0.848 (15) |
O1—C1 | 1.2828 (17) | O9—H9B | 0.823 (15) |
O4—H4 | 0.823 (15) | ||
O8i—Zn1—O8 | 180.00 (5) | C5—O4—H4 | 110.8 (14) |
O6—Zn1—O8 | 89.26 (4) | O3—C3—C2 | 120.20 (12) |
O6i—Zn1—O8i | 89.26 (4) | O3—C3—C4 | 118.31 (12) |
O6i—Zn1—O8 | 90.74 (4) | C4—C3—C2 | 121.49 (12) |
O6—Zn1—O8i | 90.74 (4) | O4—C5—C6 | 121.88 (12) |
O6i—Zn1—O6 | 180.0 | O4—C5—C4 | 116.35 (12) |
O1—Zn1—O8 | 86.18 (4) | C4—C5—C6 | 121.77 (13) |
O1—Zn1—O8i | 93.82 (4) | C3—C2—C1 | 120.15 (12) |
O1i—Zn1—O8i | 86.18 (4) | C7—C2—C3 | 117.57 (12) |
O1i—Zn1—O8 | 93.82 (4) | C7—C2—C1 | 122.23 (12) |
O1—Zn1—O6i | 90.83 (4) | C5—C6—H6 | 120.7 |
O1—Zn1—O6 | 89.17 (4) | C7—C6—C5 | 118.58 (12) |
O1i—Zn1—O6 | 90.83 (4) | C7—C6—H6 | 120.7 |
O1i—Zn1—O6i | 89.17 (4) | C3—C4—C5 | 118.92 (12) |
O1—Zn1—O1i | 180.0 | C3—C4—H4A | 120.5 |
C7—O5—H5 | 106.2 (14) | C5—C4—H4A | 120.5 |
Zn1—O8—H8A | 112.7 (13) | O5—C7—C2 | 120.12 (12) |
Zn1—O8—H8B | 98.5 (13) | O5—C7—C6 | 118.22 (12) |
H8A—O8—H8B | 108.7 (18) | C6—C7—C2 | 121.66 (12) |
Zn1—O6—H6A | 119.6 (14) | O1—C1—C2 | 118.54 (12) |
Zn1—O6—H6B | 121.1 (14) | O2—C1—O1 | 122.37 (12) |
H6A—O6—H6B | 105.4 (19) | O2—C1—C2 | 119.09 (12) |
C3—O3—H3 | 104.5 (14) | H7A—O7—H7B | 105.1 (19) |
C1—O1—Zn1 | 127.30 (9) | H9A—O9—H9B | 103.7 (19) |
Zn1—O1—C1—O2 | 9.58 (19) | C5—C6—C7—O5 | −178.20 (11) |
Zn1—O1—C1—C2 | −170.29 (8) | C5—C6—C7—C2 | 0.91 (19) |
O3—C3—C2—C7 | −179.25 (11) | C2—C3—C4—C5 | 0.0 (2) |
O3—C3—C2—C1 | −1.77 (19) | C6—C5—C4—C3 | 0.6 (2) |
O3—C3—C4—C5 | 179.16 (12) | C4—C3—C2—C7 | −0.14 (19) |
O4—C5—C6—C7 | 178.51 (12) | C4—C3—C2—C1 | 177.35 (12) |
O4—C5—C4—C3 | −179.00 (12) | C4—C5—C6—C7 | −1.0 (2) |
C3—C2—C7—O5 | 178.75 (11) | C7—C2—C1—O1 | 1.09 (19) |
C3—C2—C7—C6 | −0.35 (19) | C7—C2—C1—O2 | −178.79 (12) |
C3—C2—C1—O1 | −176.27 (12) | C1—C2—C7—O5 | 1.32 (19) |
C3—C2—C1—O2 | 3.85 (19) | C1—C2—C7—C6 | −177.77 (12) |
Symmetry code: (i) −x+1, −y+1, −z. |
[Cu(C7H5O5)2(H2O)2] | F(000) = 446 |
Mr = 437.79 | Dx = 1.989 Mg m−3 |
Monoclinic, P21/c | Cu Kα radiation, λ = 1.54184 Å |
a = 14.2175 (2) Å | Cell parameters from 2992 reflections |
b = 3.5856 (1) Å | θ = 3.1–77.4° |
c = 14.4724 (2) Å | µ = 2.84 mm−1 |
β = 97.782 (1)° | T = 100 K |
V = 730.98 (3) Å3 | Rect. Prism, clear blue |
Z = 2 | 0.39 × 0.06 × 0.02 mm |
XtaLAB Synergy, Dualflex, HyPix diffractometer | 1541 independent reflections |
Radiation source: micro-focus sealed X-ray tube, PhotonJet (Cu) X-ray Source | 1435 reflections with I > 2σ(I) |
Mirror monochromator | Rint = 0.036 |
Detector resolution: 10.0000 pixels mm-1 | θmax = 77.8°, θmin = 3.1° |
ω scans | h = −15→18 |
Absorption correction: gaussian (CrysAlis PRO; Rigaku OD, 2021) | k = −4→4 |
Tmin = 0.553, Tmax = 1.000 | l = −18→18 |
4609 measured reflections |
Refinement on F2 | Primary atom site location: dual |
Least-squares matrix: full | Hydrogen site location: mixed |
R[F2 > 2σ(F2)] = 0.037 | H atoms treated by a mixture of independent and constrained refinement |
wR(F2) = 0.107 | w = 1/[σ2(Fo2) + (0.064P)2 + 0.5007P] where P = (Fo2 + 2Fc2)/3 |
S = 1.11 | (Δ/σ)max < 0.001 |
1541 reflections | Δρmax = 0.50 e Å−3 |
139 parameters | Δρmin = −0.76 e Å−3 |
8 restraints |
Geometry. All esds (except the esd in the dihedral angle between two l.s. planes) are estimated using the full covariance matrix. The cell esds are taken into account individually in the estimation of esds in distances, angles and torsion angles; correlations between esds in cell parameters are only used when they are defined by crystal symmetry. An approximate (isotropic) treatment of cell esds is used for estimating esds involving l.s. planes. |
Refinement. The O-H distances were fixed at 0.85 and Uiso(H) = 1.5Ueq(O). |
x | y | z | Uiso*/Ueq | ||
Cu1 | 0.500000 | 0.500000 | 0.500000 | 0.00998 (18) | |
O1 | 0.40871 (11) | 0.4910 (4) | 0.38797 (11) | 0.0129 (3) | |
O2 | 0.37962 (10) | 0.2334 (4) | 0.22385 (10) | 0.0132 (3) | |
O3 | 0.06985 (11) | 0.2494 (5) | 0.06303 (10) | 0.0167 (3) | |
O4 | 0.12073 (10) | 0.7425 (4) | 0.36980 (10) | 0.0134 (3) | |
O5 | 0.29229 (10) | 0.7554 (4) | 0.45409 (10) | 0.0129 (3) | |
O6 | 0.43058 (10) | 0.1029 (5) | 0.55802 (10) | 0.0123 (3) | |
C1 | 0.32080 (14) | 0.5883 (6) | 0.38639 (14) | 0.0114 (4) | |
C2 | 0.25491 (16) | 0.4994 (5) | 0.30273 (15) | 0.0108 (4) | |
C3 | 0.28560 (14) | 0.3297 (6) | 0.22351 (14) | 0.0114 (4) | |
C4 | 0.22449 (15) | 0.2510 (6) | 0.14336 (14) | 0.0122 (4) | |
H4A | 0.246512 | 0.141859 | 0.092085 | 0.015* | |
C5 | 0.12843 (15) | 0.3404 (6) | 0.14157 (14) | 0.0125 (4) | |
H2 | 0.404 (2) | 0.301 (8) | 0.2761 (15) | 0.019* | |
H3 | 0.0126 (14) | 0.271 (9) | 0.069 (2) | 0.019* | |
H4 | 0.1686 (16) | 0.778 (8) | 0.4110 (17) | 0.019* | |
H6A | 0.3806 (15) | 0.014 (8) | 0.5294 (19) | 0.019* | |
H6B | 0.420 (2) | 0.145 (9) | 0.6127 (11) | 0.019* | |
C6 | 0.09463 (16) | 0.5089 (5) | 0.21717 (16) | 0.0123 (4) | |
H6 | 0.030707 | 0.569784 | 0.214177 | 0.015* | |
C7 | 0.15711 (14) | 0.5852 (6) | 0.29694 (14) | 0.0114 (4) |
U11 | U22 | U33 | U12 | U13 | U23 | |
Cu1 | 0.0093 (3) | 0.0136 (3) | 0.0065 (3) | −0.00052 (14) | −0.00092 (16) | 0.00075 (14) |
O1 | 0.0110 (7) | 0.0191 (8) | 0.0081 (7) | 0.0007 (5) | −0.0005 (6) | 0.0001 (5) |
O2 | 0.0109 (7) | 0.0210 (8) | 0.0075 (6) | 0.0017 (6) | 0.0000 (5) | −0.0009 (6) |
O3 | 0.0133 (7) | 0.0233 (8) | 0.0118 (7) | −0.0008 (6) | −0.0043 (6) | −0.0026 (6) |
O4 | 0.0113 (7) | 0.0193 (8) | 0.0093 (7) | 0.0021 (6) | 0.0000 (5) | −0.0030 (6) |
O5 | 0.0137 (7) | 0.0157 (7) | 0.0089 (6) | −0.0006 (6) | −0.0004 (5) | −0.0019 (5) |
O6 | 0.0120 (7) | 0.0161 (7) | 0.0085 (7) | −0.0009 (6) | 0.0002 (5) | −0.0007 (6) |
C1 | 0.0121 (9) | 0.0120 (9) | 0.0098 (9) | −0.0015 (8) | 0.0003 (7) | 0.0032 (8) |
C2 | 0.0116 (10) | 0.0122 (10) | 0.0083 (10) | −0.0011 (7) | 0.0003 (8) | 0.0007 (7) |
C3 | 0.0115 (9) | 0.0122 (9) | 0.0103 (9) | −0.0008 (8) | 0.0008 (7) | 0.0024 (7) |
C4 | 0.0148 (10) | 0.0125 (9) | 0.0092 (9) | 0.0003 (8) | 0.0006 (7) | 0.0001 (7) |
C5 | 0.0139 (9) | 0.0131 (9) | 0.0094 (9) | −0.0022 (8) | −0.0028 (7) | 0.0018 (7) |
C6 | 0.0099 (10) | 0.0135 (10) | 0.0131 (10) | −0.0006 (7) | −0.0002 (8) | 0.0005 (7) |
C7 | 0.0132 (10) | 0.0110 (8) | 0.0100 (9) | −0.0012 (8) | 0.0013 (7) | 0.0006 (8) |
Cu1—O1 | 1.9351 (16) | O6—H6A | 0.835 (13) |
Cu1—O1i | 1.9352 (16) | O6—H6B | 0.837 (13) |
Cu1—O6i | 1.9827 (15) | C1—C2 | 1.462 (3) |
Cu1—O6 | 1.9827 (15) | C2—C3 | 1.418 (3) |
O1—C1 | 1.295 (3) | C2—C7 | 1.415 (3) |
O2—C3 | 1.380 (2) | C3—C4 | 1.381 (3) |
O2—H2 | 0.822 (18) | C4—H4A | 0.9300 |
O3—C5 | 1.355 (2) | C4—C5 | 1.400 (3) |
O3—H3 | 0.835 (18) | C5—C6 | 1.391 (3) |
O4—H4 | 0.852 (18) | C6—H6 | 0.9300 |
O4—C7 | 1.358 (3) | C6—C7 | 1.385 (3) |
O5—C1 | 1.261 (3) | ||
O1—Cu1—O1i | 180.0 | C7—C2—C1 | 121.05 (19) |
O1i—Cu1—O6 | 88.46 (6) | C7—C2—C3 | 116.92 (19) |
O1i—Cu1—O6i | 91.54 (6) | O2—C3—C2 | 120.56 (18) |
O1—Cu1—O6 | 91.54 (6) | O2—C3—C4 | 116.80 (18) |
O1—Cu1—O6i | 88.46 (6) | C4—C3—C2 | 122.64 (19) |
O6—Cu1—O6i | 180.0 | C3—C4—H4A | 121.0 |
C1—O1—Cu1 | 123.13 (14) | C3—C4—C5 | 118.04 (18) |
C3—O2—H2 | 102 (2) | C5—C4—H4A | 121.0 |
C5—O3—H3 | 113 (2) | O3—C5—C4 | 116.61 (18) |
C7—O4—H4 | 105 (2) | O3—C5—C6 | 121.72 (19) |
Cu1—O6—H6A | 120 (2) | C6—C5—C4 | 121.67 (19) |
Cu1—O6—H6B | 115 (2) | C5—C6—H6 | 120.3 |
H6A—O6—H6B | 107 (3) | C7—C6—C5 | 119.4 (2) |
O1—C1—C2 | 117.69 (19) | C7—C6—H6 | 120.3 |
O5—C1—O1 | 121.69 (19) | O4—C7—C2 | 121.23 (18) |
O5—C1—C2 | 120.62 (19) | O4—C7—C6 | 117.40 (18) |
C3—C2—C1 | 122.02 (19) | C6—C7—C2 | 121.4 (2) |
Cu1—O1—C1—O5 | 12.3 (3) | C1—C2—C7—C6 | 178.64 (19) |
Cu1—O1—C1—C2 | −168.02 (13) | C2—C3—C4—C5 | −0.7 (3) |
O1—C1—C2—C3 | −3.1 (3) | C3—C2—C7—O4 | 178.91 (19) |
O1—C1—C2—C7 | 177.82 (18) | C3—C2—C7—C6 | −0.5 (3) |
O2—C3—C4—C5 | 179.04 (18) | C3—C4—C5—O3 | −178.06 (18) |
O3—C5—C6—C7 | 177.93 (19) | C3—C4—C5—C6 | 1.0 (3) |
O5—C1—C2—C3 | 176.59 (19) | C4—C5—C6—C7 | −1.1 (3) |
O5—C1—C2—C7 | −2.5 (3) | C5—C6—C7—O4 | −178.61 (18) |
C1—C2—C3—O2 | 1.6 (3) | C5—C6—C7—C2 | 0.8 (3) |
C1—C2—C3—C4 | −178.68 (19) | C7—C2—C3—O2 | −179.28 (18) |
C1—C2—C7—O4 | −2.0 (3) | C7—C2—C3—C4 | 0.4 (3) |
Symmetry code: (i) −x+1, −y+1, −z+1. |
[Cd(C7H5O5)2(H2O)2]·3H2O | Dx = 2.004 Mg m−3 |
Mr = 540.70 | Cu Kα radiation, λ = 1.54184 Å |
Orthorhombic, P212121 | Cell parameters from 6070 reflections |
a = 3.61408 (4) Å | θ = 2.9–77.6° |
b = 18.51333 (18) Å | µ = 10.57 mm−1 |
c = 26.7820 (2) Å | T = 103 K |
V = 1791.95 (3) Å3 | Rect. Prism, clear colourless |
Z = 4 | 0.16 × 0.08 × 0.04 mm |
F(000) = 1088 |
XtaLAB Synergy, Dualflex, HyPix diffractometer | 3452 independent reflections |
Radiation source: micro-focus sealed X-ray tube, PhotonJet (Cu) X-ray Source | 3330 reflections with I > 2σ(I) |
Mirror monochromator | Rint = 0.047 |
Detector resolution: 10.0000 pixels mm-1 | θmax = 77.9°, θmin = 2.9° |
ω scans | h = −4→4 |
Absorption correction: multi-scan (CrysAlis PRO; Rigaku OD, 2018) | k = −22→23 |
Tmin = 0.680, Tmax = 1.000 | l = −33→25 |
8185 measured reflections |
Refinement on F2 | Hydrogen site location: mixed |
Least-squares matrix: full | H atoms treated by a mixture of independent and constrained refinement |
R[F2 > 2σ(F2)] = 0.031 | w = 1/[σ2(Fo2) + (0.0448P)2] where P = (Fo2 + 2Fc2)/3 |
wR(F2) = 0.077 | (Δ/σ)max = 0.001 |
S = 1.03 | Δρmax = 1.15 e Å−3 |
3452 reflections | Δρmin = −0.98 e Å−3 |
311 parameters | Absolute structure: Flack x determined using 1096 quotients [(I+)-(I-)]/[(I+)+(I-)] (Parsons et al., 2013) |
21 restraints | Absolute structure parameter: −0.008 (6) |
Primary atom site location: dual |
Geometry. All esds (except the esd in the dihedral angle between two l.s. planes) are estimated using the full covariance matrix. The cell esds are taken into account individually in the estimation of esds in distances, angles and torsion angles; correlations between esds in cell parameters are only used when they are defined by crystal symmetry. An approximate (isotropic) treatment of cell esds is used for estimating esds involving l.s. planes. |
Refinement. The O-H distances were fixed at 0.85 and Uiso(H) = 1.5Ueq(O). |
x | y | z | Uiso*/Ueq | ||
Cd1 | 0.43967 (9) | 0.60256 (2) | 0.62351 (2) | 0.00900 (11) | |
O1 | 0.4334 (12) | 0.62601 (19) | 0.70797 (11) | 0.0118 (6) | |
O2 | 0.6466 (11) | 0.7381 (2) | 0.69750 (12) | 0.0146 (8) | |
O3 | 0.5792 (12) | 0.83176 (19) | 0.76447 (12) | 0.0140 (7) | |
H3 | 0.610187 | 0.815660 | 0.736255 | 0.021* | |
O4 | 0.1353 (11) | 0.76504 (19) | 0.92227 (12) | 0.0135 (8) | |
O5 | 0.2083 (11) | 0.58605 (19) | 0.79526 (11) | 0.0110 (7) | |
H5 | 0.205527 | 0.584170 | 0.764673 | 0.017* | |
O6 | 0.5706 (12) | 0.5491 (2) | 0.55034 (11) | 0.0145 (7) | |
O7 | 0.3893 (12) | 0.6597 (2) | 0.53004 (12) | 0.0151 (8) | |
O8 | 0.4171 (12) | 0.70153 (18) | 0.43968 (11) | 0.0124 (7) | |
H8 | 0.359172 | 0.701590 | 0.469280 | 0.019* | |
O9 | 0.9128 (12) | 0.5456 (2) | 0.31759 (12) | 0.0141 (7) | |
O10 | 0.8493 (11) | 0.4658 (2) | 0.48586 (12) | 0.0139 (8) | |
H10 | 0.802489 | 0.481655 | 0.513750 | 0.021* | |
O11 | −0.0450 (12) | 0.52381 (18) | 0.64277 (11) | 0.0106 (6) | |
O12 | −0.0543 (10) | 0.68106 (17) | 0.62012 (11) | 0.0096 (6) | |
C1 | 0.4995 (13) | 0.6890 (3) | 0.72418 (16) | 0.0104 (10) | |
C2 | 0.4073 (15) | 0.7074 (3) | 0.77669 (15) | 0.0088 (9) | |
C3 | 0.4519 (16) | 0.7789 (3) | 0.79457 (16) | 0.0110 (9) | |
C4 | 0.3650 (15) | 0.7973 (3) | 0.84333 (16) | 0.0127 (11) | |
H4A | 0.399141 | 0.844269 | 0.854685 | 0.015* | |
C5 | 0.2263 (13) | 0.7444 (3) | 0.87494 (18) | 0.0116 (9) | |
C6 | 0.1752 (15) | 0.6733 (3) | 0.85885 (16) | 0.0103 (9) | |
H6 | 0.081263 | 0.638499 | 0.880413 | 0.012* | |
C7 | 0.2670 (14) | 0.6558 (3) | 0.81017 (17) | 0.0103 (9) | |
C8 | 0.5222 (13) | 0.5991 (3) | 0.51739 (16) | 0.0107 (9) | |
C9 | 0.6229 (14) | 0.5842 (3) | 0.46539 (16) | 0.0109 (10) | |
H4 | 0.03 (2) | 0.732 (3) | 0.940 (2) | 0.016* | |
H9 | 1.084 (15) | 0.515 (3) | 0.317 (2) | 0.016* | |
H11A | 0.00 (2) | 0.489 (2) | 0.6228 (16) | 0.016* | |
H11B | −0.02 (2) | 0.504 (3) | 0.6713 (12) | 0.016* | |
H12A | −0.09 (2) | 0.709 (3) | 0.5959 (15) | 0.016* | |
H12B | −0.156 (19) | 0.704 (3) | 0.6442 (15) | 0.016* | |
H13A | −0.097 (15) | 0.462 (4) | 0.7532 (18) | 0.016* | |
H13B | 0.166 (18) | 0.425 (2) | 0.727 (2) | 0.016* | |
H14A | −0.980 (19) | 0.373 (2) | 0.573 (2) | 0.016* | |
H14B | −0.759 (18) | 0.425 (3) | 0.5553 (17) | 0.016* | |
H15A | 0.660 (17) | 0.3676 (19) | 0.485 (2) | 0.016* | |
H15B | 0.57 (2) | 0.311 (3) | 0.515 (2) | 0.016* | |
C10 | 0.5687 (15) | 0.6367 (3) | 0.42766 (16) | 0.0099 (8) | |
C11 | 0.6620 (14) | 0.6232 (3) | 0.37831 (17) | 0.0115 (9) | |
H11 | 0.624431 | 0.658147 | 0.353867 | 0.014* | |
C12 | 0.8128 (14) | 0.5564 (3) | 0.36613 (15) | 0.0089 (9) | |
C13 | 0.8695 (14) | 0.5030 (3) | 0.40199 (17) | 0.0121 (10) | |
H13 | 0.966911 | 0.458298 | 0.393041 | 0.014* | |
C14 | 0.7782 (14) | 0.5175 (3) | 0.45111 (17) | 0.0101 (9) | |
O13 | 0.0570 (13) | 0.4640 (2) | 0.72961 (12) | 0.0155 (7) | |
O14 | −0.8822 (14) | 0.4124 (2) | 0.58148 (13) | 0.0205 (9) | |
O15 | 0.5181 (13) | 0.3312 (2) | 0.49043 (13) | 0.0215 (9) |
U11 | U22 | U33 | U12 | U13 | U23 | |
Cd1 | 0.01012 (16) | 0.01132 (16) | 0.00555 (16) | −0.00022 (12) | 0.00071 (12) | −0.00142 (11) |
O1 | 0.0190 (16) | 0.0113 (15) | 0.0051 (12) | −0.0009 (16) | 0.0011 (15) | −0.0016 (11) |
O2 | 0.021 (2) | 0.0145 (17) | 0.0081 (14) | −0.0009 (15) | 0.0032 (14) | 0.0021 (13) |
O3 | 0.0219 (18) | 0.0132 (16) | 0.0070 (13) | −0.0039 (17) | 0.0048 (15) | −0.0008 (12) |
O4 | 0.024 (2) | 0.0105 (16) | 0.0063 (14) | −0.0001 (15) | 0.0048 (14) | −0.0012 (12) |
O5 | 0.0206 (18) | 0.0088 (17) | 0.0037 (12) | −0.0028 (14) | −0.0005 (13) | −0.0003 (11) |
O6 | 0.0200 (18) | 0.0193 (17) | 0.0040 (13) | −0.0007 (17) | 0.0018 (15) | 0.0011 (12) |
O7 | 0.018 (2) | 0.0181 (17) | 0.0096 (14) | 0.0026 (16) | 0.0037 (15) | −0.0026 (13) |
O8 | 0.0204 (17) | 0.0081 (15) | 0.0087 (14) | 0.0012 (16) | 0.0036 (15) | −0.0002 (12) |
O9 | 0.0192 (18) | 0.0156 (16) | 0.0074 (13) | 0.0022 (17) | 0.0008 (15) | −0.0013 (12) |
O10 | 0.025 (2) | 0.0115 (16) | 0.0055 (13) | 0.0037 (15) | −0.0004 (14) | 0.0026 (12) |
O11 | 0.0145 (16) | 0.0096 (15) | 0.0076 (13) | −0.0019 (15) | −0.0017 (14) | −0.0007 (11) |
O12 | 0.0126 (14) | 0.0104 (14) | 0.0058 (13) | 0.0002 (13) | 0.0010 (16) | −0.0003 (12) |
C1 | 0.012 (3) | 0.012 (2) | 0.0070 (18) | 0.0035 (19) | −0.0007 (17) | −0.0009 (16) |
C2 | 0.010 (2) | 0.012 (2) | 0.0049 (17) | 0.000 (2) | 0.0011 (18) | −0.0013 (16) |
C3 | 0.012 (2) | 0.013 (2) | 0.0081 (18) | 0.003 (2) | −0.0007 (19) | −0.0016 (16) |
C4 | 0.023 (3) | 0.009 (2) | 0.0064 (19) | 0.000 (2) | 0.0002 (19) | −0.0019 (16) |
C5 | 0.012 (2) | 0.016 (2) | 0.0062 (19) | 0.0011 (18) | −0.002 (2) | −0.0018 (19) |
C6 | 0.013 (2) | 0.011 (2) | 0.0071 (18) | −0.0001 (19) | 0.0002 (17) | −0.0008 (16) |
C7 | 0.011 (2) | 0.010 (2) | 0.010 (2) | 0.0020 (19) | −0.0022 (18) | −0.0001 (17) |
C8 | 0.008 (2) | 0.013 (2) | 0.0108 (19) | −0.003 (2) | 0.0007 (17) | −0.0015 (17) |
C9 | 0.011 (3) | 0.012 (2) | 0.0097 (19) | −0.0015 (18) | 0.0001 (18) | −0.0024 (16) |
C10 | 0.0099 (19) | 0.011 (2) | 0.0083 (18) | −0.001 (2) | −0.0037 (19) | −0.0028 (16) |
C11 | 0.015 (2) | 0.012 (2) | 0.0068 (18) | −0.0035 (18) | 0.0020 (19) | 0.0029 (17) |
C12 | 0.0089 (19) | 0.014 (2) | 0.0043 (18) | −0.0005 (18) | 0.0021 (17) | −0.0011 (17) |
C13 | 0.012 (3) | 0.015 (2) | 0.0087 (19) | 0.005 (2) | −0.0016 (18) | −0.0034 (17) |
C14 | 0.011 (2) | 0.012 (2) | 0.0071 (19) | −0.0005 (19) | −0.0030 (18) | 0.0018 (17) |
O13 | 0.0230 (18) | 0.0138 (16) | 0.0098 (14) | 0.0048 (17) | 0.0039 (16) | 0.0022 (12) |
O14 | 0.036 (3) | 0.0108 (17) | 0.0147 (15) | 0.0010 (17) | 0.0056 (17) | 0.0004 (13) |
O15 | 0.036 (3) | 0.0160 (17) | 0.0127 (15) | −0.0008 (19) | −0.0070 (18) | 0.0032 (14) |
Cd1—O1 | 2.303 (3) | O12—H12B | 0.85 (2) |
Cd1—O6 | 2.246 (3) | C1—C2 | 1.485 (6) |
Cd1—O11 | 2.336 (4) | C2—C3 | 1.416 (7) |
Cd1—O11i | 2.421 (4) | C2—C7 | 1.404 (7) |
Cd1—O12i | 2.338 (4) | C3—C4 | 1.386 (6) |
Cd1—O12 | 2.304 (3) | C4—H4A | 0.9300 |
O1—C1 | 1.266 (6) | C4—C5 | 1.388 (7) |
O2—C1 | 1.273 (6) | C5—C6 | 1.397 (7) |
O3—H3 | 0.8200 | C6—H6 | 0.9300 |
O3—C3 | 1.349 (6) | C6—C7 | 1.384 (6) |
O4—C5 | 1.364 (6) | C8—C9 | 1.466 (6) |
O4—H4 | 0.85 (3) | C9—C10 | 1.416 (7) |
O5—H5 | 0.8200 | C9—C14 | 1.408 (7) |
O5—C7 | 1.369 (6) | C10—C11 | 1.387 (6) |
O6—C8 | 1.291 (6) | C11—H11 | 0.9300 |
O7—C8 | 1.267 (6) | C11—C12 | 1.391 (7) |
O8—H8 | 0.8200 | C12—C13 | 1.394 (7) |
O8—C10 | 1.358 (6) | C13—H13 | 0.9300 |
O9—H9 | 0.84 (3) | C13—C14 | 1.383 (6) |
O9—C12 | 1.364 (5) | O13—H13A | 0.84 (2) |
O10—H10 | 0.8200 | O13—H13B | 0.83 (2) |
O10—C14 | 1.359 (6) | O14—H14A | 0.84 (2) |
O11—H11A | 0.84 (2) | O14—H14B | 0.86 (2) |
O11—H11B | 0.85 (2) | O15—H15A | 0.86 (2) |
O12—H12A | 0.84 (2) | O15—H15B | 0.78 (6) |
O1—Cd1—O11i | 84.95 (13) | C7—C2—C3 | 117.4 (4) |
O1—Cd1—O11 | 83.89 (13) | O3—C3—C2 | 121.0 (4) |
O1—Cd1—O12 | 84.97 (13) | O3—C3—C4 | 117.5 (4) |
O1—Cd1—O12i | 85.92 (13) | C4—C3—C2 | 121.5 (5) |
O6—Cd1—O1 | 160.40 (14) | C3—C4—H4A | 120.5 |
O6—Cd1—O11 | 94.33 (13) | C3—C4—C5 | 118.9 (5) |
O6—Cd1—O11i | 76.02 (13) | C5—C4—H4A | 120.5 |
O6—Cd1—O12 | 114.00 (13) | O4—C5—C4 | 117.2 (4) |
O6—Cd1—O12i | 94.31 (13) | O4—C5—C6 | 121.2 (4) |
O11—Cd1—O11i | 98.86 (12) | C4—C5—C6 | 121.6 (4) |
O11—Cd1—O12i | 169.40 (11) | C5—C6—H6 | 120.7 |
O12—Cd1—O11i | 169.91 (10) | C7—C6—C5 | 118.6 (5) |
O12—Cd1—O11 | 79.71 (13) | C7—C6—H6 | 120.7 |
O12i—Cd1—O11i | 77.34 (12) | O5—C7—C2 | 120.7 (4) |
O12—Cd1—O12i | 102.27 (12) | O5—C7—C6 | 117.3 (5) |
C1—O1—Cd1 | 120.6 (3) | C6—C7—C2 | 121.9 (5) |
C3—O3—H3 | 109.5 | O6—C8—C9 | 118.7 (4) |
C5—O4—H4 | 115 (4) | O7—C8—O6 | 120.3 (4) |
C7—O5—H5 | 109.5 | O7—C8—C9 | 121.0 (4) |
C8—O6—Cd1 | 104.6 (3) | C10—C9—C8 | 120.9 (4) |
C10—O8—H8 | 109.5 | C14—C9—C8 | 121.5 (4) |
C12—O9—H9 | 108 (4) | C14—C9—C10 | 117.6 (4) |
C14—O10—H10 | 109.5 | O8—C10—C9 | 119.6 (4) |
Cd1—O11—Cd1ii | 98.86 (12) | O8—C10—C11 | 118.9 (4) |
Cd1ii—O11—H11A | 117 (4) | C11—C10—C9 | 121.5 (5) |
Cd1—O11—H11A | 102 (5) | C10—C11—H11 | 120.7 |
Cd1—O11—H11B | 112 (5) | C10—C11—C12 | 118.6 (4) |
Cd1ii—O11—H11B | 122 (5) | C12—C11—H11 | 120.7 |
H11A—O11—H11B | 103 (5) | O9—C12—C11 | 117.2 (4) |
Cd1—O12—Cd1ii | 102.27 (12) | O9—C12—C13 | 120.9 (4) |
Cd1—O12—H12A | 122 (5) | C11—C12—C13 | 121.8 (4) |
Cd1ii—O12—H12A | 107 (6) | C12—C13—H13 | 120.6 |
Cd1—O12—H12B | 128 (4) | C14—C13—C12 | 118.8 (5) |
Cd1ii—O12—H12B | 87 (5) | C14—C13—H13 | 120.6 |
H12A—O12—H12B | 103 (5) | O10—C14—C9 | 120.4 (4) |
O1—C1—O2 | 122.9 (4) | O10—C14—C13 | 117.9 (5) |
O1—C1—C2 | 119.6 (4) | C13—C14—C9 | 121.6 (5) |
O2—C1—C2 | 117.4 (4) | H13A—O13—H13B | 109 (5) |
C3—C2—C1 | 120.6 (4) | H14A—O14—H14B | 103 (5) |
C7—C2—C1 | 122.0 (4) | H15A—O15—H15B | 112 (6) |
Cd1—O1—C1—O2 | −15.3 (7) | C3—C2—C7—C6 | −0.1 (8) |
Cd1—O1—C1—C2 | 165.3 (4) | C3—C4—C5—O4 | −178.4 (5) |
Cd1—O6—C8—O7 | −6.5 (6) | C3—C4—C5—C6 | 0.5 (8) |
Cd1—O6—C8—C9 | 173.6 (3) | C4—C5—C6—C7 | 0.2 (8) |
O1—C1—C2—C3 | −175.1 (5) | C5—C6—C7—O5 | −179.0 (5) |
O1—C1—C2—C7 | 3.7 (8) | C5—C6—C7—C2 | −0.4 (8) |
O2—C1—C2—C3 | 5.5 (8) | C7—C2—C3—O3 | −178.9 (5) |
O2—C1—C2—C7 | −175.7 (5) | C7—C2—C3—C4 | 0.7 (8) |
O3—C3—C4—C5 | 178.7 (5) | C8—C9—C10—O8 | −0.8 (7) |
O4—C5—C6—C7 | 179.0 (5) | C8—C9—C10—C11 | −179.9 (5) |
O6—C8—C9—C10 | 178.8 (5) | C8—C9—C14—O10 | −2.0 (8) |
O6—C8—C9—C14 | −1.5 (7) | C8—C9—C14—C13 | 179.2 (5) |
O7—C8—C9—C10 | −1.1 (7) | C9—C10—C11—C12 | −0.2 (8) |
O7—C8—C9—C14 | 178.6 (5) | C10—C9—C14—O10 | 177.7 (5) |
O8—C10—C11—C12 | −179.2 (5) | C10—C9—C14—C13 | −1.1 (8) |
O9—C12—C13—C14 | 177.3 (5) | C10—C11—C12—O9 | −177.9 (5) |
C1—C2—C3—O3 | −0.1 (8) | C10—C11—C12—C13 | 0.5 (8) |
C1—C2—C3—C4 | 179.5 (5) | C11—C12—C13—C14 | −1.1 (8) |
C1—C2—C7—O5 | −0.3 (8) | C12—C13—C14—O10 | −177.4 (5) |
C1—C2—C7—C6 | −178.9 (5) | C12—C13—C14—C9 | 1.4 (8) |
C2—C3—C4—C5 | −0.9 (9) | C14—C9—C10—O8 | 179.5 (5) |
C3—C2—C7—O5 | 178.5 (5) | C14—C9—C10—C11 | 0.5 (8) |
Symmetry codes: (i) x+1, y, z; (ii) x−1, y, z. |
H12MnO62+·2(C7H5O5−)·2(H2O) | F(000) = 558 |
Mr = 537.29 | Dx = 1.723 Mg m−3 |
Monoclinic, P21/c | Cu Kα radiation, λ = 1.54184 Å |
a = 7.0973 (1) Å | Cell parameters from 8405 reflections |
b = 20.6804 (2) Å | θ = 4.3–77.0° |
c = 7.0590 (1) Å | µ = 6.05 mm−1 |
β = 91.642 (1)° | T = 100 K |
V = 1035.66 (2) Å3 | Irregular, clear colourless |
Z = 2 | 0.38 × 0.12 × 0.09 mm |
XtaLAB Synergy, Dualflex, HyPix diffractometer | 2174 independent reflections |
Radiation source: micro-focus sealed X-ray tube, PhotonJet (Cu) X-ray Source | 2073 reflections with I > 2σ(I) |
Mirror monochromator | Rint = 0.042 |
Detector resolution: 10.0000 pixels mm-1 | θmax = 77.2°, θmin = 4.3° |
ω scans | h = −8→8 |
Absorption correction: gaussian (CrysAlis PRO; Rigaku OD, 2021) | k = −25→24 |
Tmin = 0.303, Tmax = 1.000 | l = −7→8 |
12509 measured reflections |
Refinement on F2 | Primary atom site location: dual |
Least-squares matrix: full | Hydrogen site location: mixed |
R[F2 > 2σ(F2)] = 0.029 | H atoms treated by a mixture of independent and constrained refinement |
wR(F2) = 0.081 | w = 1/[σ2(Fo2) + (0.0522P)2 + 0.3562P] where P = (Fo2 + 2Fc2)/3 |
S = 1.07 | (Δ/σ)max = 0.001 |
2174 reflections | Δρmax = 0.27 e Å−3 |
191 parameters | Δρmin = −0.43 e Å−3 |
17 restraints |
Geometry. All esds (except the esd in the dihedral angle between two l.s. planes) are estimated using the full covariance matrix. The cell esds are taken into account individually in the estimation of esds in distances, angles and torsion angles; correlations between esds in cell parameters are only used when they are defined by crystal symmetry. An approximate (isotropic) treatment of cell esds is used for estimating esds involving l.s. planes. |
Refinement. The H atoms on O7 and O9 are disordered. The O-H distances were fixed at 0.85 and Uiso(H) = 1.5Ueq(O). |
x | y | z | Uiso*/Ueq | Occ. (<1) | |
Mn1 | 0.000000 | 0.500000 | 0.500000 | 0.01167 (12) | |
O6 | 0.04037 (14) | 0.59112 (5) | 0.36449 (15) | 0.0181 (2) | |
O7 | 0.30019 (16) | 0.46985 (5) | 0.44009 (18) | 0.0227 (3) | |
H7B | 0.322 (10) | 0.476 (4) | 0.322 (4) | 0.08 (2)* | 0.5 |
H9A | 0.433 (6) | 0.486 (5) | 0.013 (11) | 0.124* | 0.5 |
O8 | 0.07693 (17) | 0.53857 (5) | 0.77342 (16) | 0.0227 (2) | |
O1 | 0.27124 (13) | 0.13787 (5) | 0.32634 (14) | 0.0148 (2) | |
O2 | 0.13689 (14) | 0.23039 (5) | 0.41276 (14) | 0.0152 (2) | |
O3 | 0.29244 (14) | 0.33866 (5) | 0.34844 (14) | 0.0144 (2) | |
O4 | 0.89355 (14) | 0.34097 (5) | 0.08664 (14) | 0.0147 (2) | |
O5 | 0.60182 (13) | 0.13846 (5) | 0.19745 (14) | 0.0137 (2) | |
C1 | 0.27279 (19) | 0.19959 (7) | 0.34275 (18) | 0.0122 (3) | |
C2 | 0.43594 (18) | 0.23617 (7) | 0.27546 (18) | 0.0116 (3) | |
C3 | 0.43998 (18) | 0.30444 (7) | 0.28062 (18) | 0.0117 (3) | |
H6A | −0.043 (2) | 0.6069 (9) | 0.291 (2) | 0.018* | |
H6B | 0.147 (2) | 0.6016 (9) | 0.329 (3) | 0.018* | |
H7A | 0.312 (3) | 0.4314 (7) | 0.438 (3) | 0.018* | |
H7C | 0.402 (4) | 0.4856 (19) | 0.484 (6) | 0.018* | 0.5 |
H8A | 0.071 (3) | 0.5762 (7) | 0.805 (3) | 0.018* | |
H8B | 0.143 (3) | 0.5187 (9) | 0.856 (3) | 0.018* | |
H3 | 0.215 (2) | 0.3092 (8) | 0.382 (3) | 0.018* | |
H4 | 0.972 (2) | 0.3178 (9) | 0.029 (2) | 0.018* | |
H5 | 0.498 (2) | 0.1267 (9) | 0.239 (3) | 0.018* | |
H9B | 0.313 (5) | 0.4351 (11) | −0.014 (5) | 0.018* | 0.5 |
H9C | 0.274 (3) | 0.4739 (9) | 0.127 (2) | 0.018* | |
C4 | 0.59260 (19) | 0.33900 (7) | 0.21693 (19) | 0.0127 (3) | |
H4A | 0.592567 | 0.383958 | 0.220097 | 0.015* | |
C5 | 0.74620 (18) | 0.30542 (7) | 0.14802 (18) | 0.0120 (3) | |
C6 | 0.74997 (18) | 0.23825 (7) | 0.14203 (18) | 0.0118 (3) | |
H6 | 0.854132 | 0.216509 | 0.096650 | 0.014* | |
C7 | 0.59562 (19) | 0.20435 (7) | 0.20494 (18) | 0.0109 (3) | |
O9 | 0.31975 (18) | 0.47542 (6) | 0.02733 (16) | 0.0248 (3) |
U11 | U22 | U33 | U12 | U13 | U23 | |
Mn1 | 0.01172 (18) | 0.00920 (18) | 0.01424 (18) | −0.00012 (10) | 0.00287 (12) | 0.00041 (10) |
O6 | 0.0121 (5) | 0.0157 (5) | 0.0266 (6) | −0.0015 (4) | −0.0002 (4) | 0.0084 (4) |
O7 | 0.0161 (5) | 0.0131 (5) | 0.0393 (7) | 0.0022 (4) | 0.0052 (5) | −0.0022 (4) |
O8 | 0.0339 (6) | 0.0144 (5) | 0.0196 (5) | −0.0037 (4) | −0.0024 (4) | −0.0031 (4) |
O1 | 0.0137 (5) | 0.0130 (5) | 0.0177 (5) | −0.0026 (4) | 0.0025 (4) | −0.0005 (4) |
O2 | 0.0109 (5) | 0.0175 (5) | 0.0176 (5) | −0.0003 (4) | 0.0047 (4) | 0.0002 (4) |
O3 | 0.0102 (5) | 0.0136 (5) | 0.0199 (5) | 0.0003 (4) | 0.0062 (4) | −0.0019 (4) |
O4 | 0.0118 (5) | 0.0124 (5) | 0.0204 (5) | −0.0015 (4) | 0.0081 (4) | −0.0024 (4) |
O5 | 0.0115 (5) | 0.0107 (5) | 0.0192 (5) | −0.0005 (4) | 0.0047 (4) | 0.0001 (4) |
C1 | 0.0103 (6) | 0.0162 (7) | 0.0101 (6) | 0.0001 (5) | −0.0004 (5) | 0.0000 (5) |
C2 | 0.0096 (6) | 0.0145 (7) | 0.0108 (6) | −0.0005 (5) | 0.0014 (5) | −0.0001 (5) |
C3 | 0.0100 (6) | 0.0150 (7) | 0.0103 (6) | 0.0013 (5) | 0.0017 (5) | −0.0018 (5) |
C4 | 0.0127 (6) | 0.0107 (6) | 0.0147 (6) | 0.0002 (5) | 0.0021 (5) | −0.0015 (5) |
C5 | 0.0093 (6) | 0.0163 (7) | 0.0104 (6) | −0.0014 (5) | 0.0010 (5) | −0.0002 (5) |
C6 | 0.0095 (6) | 0.0145 (7) | 0.0114 (6) | 0.0018 (5) | 0.0019 (5) | −0.0012 (5) |
C7 | 0.0122 (6) | 0.0113 (6) | 0.0093 (6) | 0.0005 (5) | 0.0002 (5) | −0.0009 (4) |
O9 | 0.0343 (6) | 0.0203 (6) | 0.0205 (6) | 0.0031 (5) | 0.0118 (5) | 0.0013 (4) |
Mn1—O6i | 2.1362 (10) | O4—H4 | 0.849 (15) |
Mn1—O6 | 2.1362 (10) | O4—C5 | 1.3593 (16) |
Mn1—O7 | 2.2712 (11) | O5—H5 | 0.838 (15) |
Mn1—O7i | 2.2712 (11) | O5—C7 | 1.3643 (17) |
Mn1—O8i | 2.1446 (11) | C1—C2 | 1.4732 (18) |
Mn1—O8 | 2.1446 (11) | C2—C3 | 1.412 (2) |
O6—H6A | 0.839 (14) | C2—C7 | 1.4134 (18) |
O6—H6B | 0.832 (15) | C3—C4 | 1.3836 (18) |
O7—H7B | 0.86 (2) | C4—H4A | 0.9300 |
O7—H7A | 0.800 (15) | C4—C5 | 1.3920 (18) |
O7—H7C | 0.844 (19) | C5—C6 | 1.390 (2) |
O8—H8A | 0.810 (15) | C6—H6 | 0.9300 |
O8—H8B | 0.845 (15) | C6—C7 | 1.3844 (19) |
O1—C1 | 1.2816 (18) | O9—H9A | 0.84 (2) |
O2—C1 | 1.2679 (17) | O9—H9B | 0.883 (18) |
O3—C3 | 1.3622 (16) | O9—H9C | 0.786 (15) |
O3—H3 | 0.858 (15) | ||
O6i—Mn1—O6 | 180.0 | C5—O4—H4 | 111.8 (14) |
O6i—Mn1—O7 | 88.84 (4) | C7—O5—H5 | 104.3 (13) |
O6—Mn1—O7 | 91.16 (4) | O1—C1—C2 | 119.15 (12) |
O6i—Mn1—O7i | 91.16 (4) | O2—C1—O1 | 122.07 (12) |
O6—Mn1—O7i | 88.84 (4) | O2—C1—C2 | 118.78 (13) |
O6i—Mn1—O8i | 92.35 (4) | C3—C2—C1 | 121.37 (12) |
O6i—Mn1—O8 | 87.65 (4) | C3—C2—C7 | 117.30 (12) |
O6—Mn1—O8i | 87.65 (4) | C7—C2—C1 | 121.33 (13) |
O6—Mn1—O8 | 92.35 (4) | O3—C3—C2 | 120.88 (12) |
O7i—Mn1—O7 | 180.0 | O3—C3—C4 | 117.56 (13) |
O8—Mn1—O7 | 93.08 (5) | C4—C3—C2 | 121.57 (12) |
O8i—Mn1—O7i | 93.08 (5) | C3—C4—H4A | 120.5 |
O8—Mn1—O7i | 86.92 (5) | C3—C4—C5 | 118.95 (13) |
O8i—Mn1—O7 | 86.92 (5) | C5—C4—H4A | 120.5 |
O8i—Mn1—O8 | 180.0 | O4—C5—C4 | 117.31 (13) |
Mn1—O6—H6A | 121.2 (13) | O4—C5—C6 | 121.01 (12) |
Mn1—O6—H6B | 119.9 (13) | C6—C5—C4 | 121.68 (13) |
H6A—O6—H6B | 110.0 (17) | C5—C6—H6 | 120.6 |
Mn1—O7—H7B | 110 (5) | C7—C6—C5 | 118.70 (12) |
Mn1—O7—H7A | 112.3 (14) | C7—C6—H6 | 120.6 |
Mn1—O7—H7C | 129 (3) | O5—C7—C2 | 120.38 (12) |
H7B—O7—H7A | 97 (5) | O5—C7—C6 | 117.82 (12) |
H7A—O7—H7C | 107 (3) | C6—C7—C2 | 121.80 (13) |
Mn1—O8—H8A | 126.0 (13) | H9A—O9—H9B | 104 (7) |
Mn1—O8—H8B | 124.3 (14) | H9A—O9—H9C | 123 (5) |
H8A—O8—H8B | 108.2 (18) | H9B—O9—H9C | 104 (2) |
C3—O3—H3 | 103.4 (13) | ||
O1—C1—C2—C3 | 176.45 (12) | C2—C3—C4—C5 | −0.6 (2) |
O1—C1—C2—C7 | −4.22 (19) | C3—C2—C7—O5 | 179.45 (12) |
O2—C1—C2—C3 | −2.55 (19) | C3—C2—C7—C6 | −0.39 (19) |
O2—C1—C2—C7 | 176.78 (12) | C3—C4—C5—O4 | 179.99 (11) |
O3—C3—C4—C5 | 179.55 (12) | C3—C4—C5—C6 | −0.1 (2) |
O4—C5—C6—C7 | −179.51 (11) | C4—C5—C6—C7 | 0.6 (2) |
C1—C2—C3—O3 | 0.04 (19) | C5—C6—C7—O5 | 179.83 (11) |
C1—C2—C3—C4 | −179.76 (12) | C5—C6—C7—C2 | −0.3 (2) |
C1—C2—C7—O5 | 0.09 (19) | C7—C2—C3—O3 | −179.32 (12) |
C1—C2—C7—C6 | −179.75 (12) | C7—C2—C3—C4 | 0.89 (19) |
Symmetry code: (i) −x, −y+1, −z+1. |
[Pb(C7H5O5)2(H2O)] | F(000) = 1064 |
Mr = 563.43 | Dx = 2.523 Mg m−3 |
Monoclinic, P21/c | Cu Kα radiation, λ = 1.54184 Å |
a = 7.47743 (16) Å | Cell parameters from 3777 reflections |
b = 27.8276 (5) Å | θ = 3.2–76.7° |
c = 7.12866 (17) Å | µ = 22.76 mm−1 |
β = 90.040 (2)° | T = 107 K |
V = 1483.32 (6) Å3 | Block, clear colourless |
Z = 4 | 0.19 × 0.04 × 0.02 mm |
XtaLAB Synergy, Dualflex, HyPix diffractometer | 2490 independent reflections |
Radiation source: micro-focus sealed X-ray tube, PhotonJet (Cu) X-ray Source | 2282 reflections with I > 2σ(I) |
Mirror monochromator | Rint = 0.048 |
Detector resolution: 10.0000 pixels mm-1 | θmax = 66.5°, θmin = 3.2° |
ω scans | h = −8→7 |
Absorption correction: gaussian (CrysAlis PRO; Rigaku OD, 2021) | k = −33→23 |
Tmin = 0.142, Tmax = 0.871 | l = −6→8 |
6087 measured reflections |
Refinement on F2 | Primary atom site location: dual |
Least-squares matrix: full | Hydrogen site location: mixed |
R[F2 > 2σ(F2)] = 0.035 | H atoms treated by a mixture of independent and constrained refinement |
wR(F2) = 0.092 | w = 1/[σ2(Fo2) + (0.0561P)2] where P = (Fo2 + 2Fc2)/3 |
S = 1.05 | (Δ/σ)max = 0.003 |
2490 reflections | Δρmax = 1.98 e Å−3 |
255 parameters | Δρmin = −1.49 e Å−3 |
8 restraints |
Geometry. All esds (except the esd in the dihedral angle between two l.s. planes) are estimated using the full covariance matrix. The cell esds are taken into account individually in the estimation of esds in distances, angles and torsion angles; correlations between esds in cell parameters are only used when they are defined by crystal symmetry. An approximate (isotropic) treatment of cell esds is used for estimating esds involving l.s. planes. |
Refinement. Twinned crystal; twin law -1 0 0 0 -1 0 0 0 1. Refinement was done in HKLF4 format. O-H distances fixed at 0.85 and Uiso(H) = 1.5Ueq(O) |
x | y | z | Uiso*/Ueq | ||
Pb1 | 1.02397 (3) | 0.38329 (2) | 0.18857 (4) | 0.01781 (14) | |
O1 | 0.8831 (6) | 0.32564 (16) | 0.3967 (7) | 0.0215 (10) | |
O2 | 0.9922 (6) | 0.25190 (17) | 0.3510 (7) | 0.0218 (10) | |
O3 | 0.8250 (7) | 0.17941 (16) | 0.4474 (7) | 0.0210 (10) | |
H3 | 0.898 (10) | 0.201 (2) | 0.406 (13) | 0.032* | |
O4 | 0.2485 (6) | 0.19617 (16) | 0.7051 (8) | 0.0226 (10) | |
H4 | 0.179 (11) | 0.220 (2) | 0.726 (15) | 0.034* | |
O5 | 0.5666 (6) | 0.33650 (16) | 0.5333 (7) | 0.0203 (10) | |
H5 | 0.658 (8) | 0.342 (3) | 0.467 (11) | 0.030* | |
O6 | 0.7257 (6) | 0.41368 (16) | 0.2540 (7) | 0.0211 (10) | |
O7 | 0.9060 (7) | 0.47027 (17) | 0.1516 (7) | 0.0236 (10) | |
O8 | 0.8036 (6) | 0.55695 (16) | 0.1137 (7) | 0.0207 (10) | |
H8 | 0.867 (11) | 0.532 (2) | 0.101 (14) | 0.031* | |
O9 | 0.1959 (6) | 0.59264 (15) | 0.2419 (7) | 0.0203 (10) | |
H9 | 0.241 (13) | 0.618 (2) | 0.196 (14) | 0.031* | |
O10 | 0.3937 (7) | 0.43388 (16) | 0.3229 (7) | 0.0217 (10) | |
H10 | 0.493 (7) | 0.420 (3) | 0.334 (13) | 0.033* | |
O11 | 1.0732 (8) | 0.4157 (2) | 0.4941 (8) | 0.0357 (13) | |
H11A | 1.022421 | 0.423543 | 0.604747 | 0.054* | |
H11B | 1.172099 | 0.434124 | 0.491005 | 0.054* | |
C1 | 0.8695 (9) | 0.2804 (2) | 0.4063 (9) | 0.0190 (14) | |
C2 | 0.7066 (9) | 0.2593 (2) | 0.4861 (9) | 0.0192 (13) | |
C3 | 0.6878 (9) | 0.2087 (2) | 0.5023 (10) | 0.0192 (13) | |
C4 | 0.5353 (9) | 0.1882 (2) | 0.5783 (9) | 0.0174 (13) | |
H4A | 0.526841 | 0.154331 | 0.593304 | 0.021* | |
C5 | 0.3942 (9) | 0.2180 (2) | 0.6326 (10) | 0.0184 (13) | |
C6 | 0.4068 (9) | 0.2679 (2) | 0.6162 (10) | 0.0177 (13) | |
H6 | 0.309754 | 0.287735 | 0.653351 | 0.021* | |
C7 | 0.5618 (10) | 0.2882 (2) | 0.5453 (10) | 0.0196 (13) | |
C8 | 0.7521 (9) | 0.4577 (2) | 0.2084 (9) | 0.0183 (13) | |
C9 | 0.6090 (9) | 0.4933 (2) | 0.2192 (9) | 0.0158 (12) | |
C10 | 0.6398 (9) | 0.5416 (2) | 0.1730 (8) | 0.0145 (12) | |
C11 | 0.5043 (9) | 0.5759 (2) | 0.1845 (9) | 0.0173 (13) | |
H11 | 0.527710 | 0.608672 | 0.156527 | 0.021* | |
C12 | 0.3348 (10) | 0.5611 (2) | 0.2377 (10) | 0.0214 (14) | |
C13 | 0.2982 (9) | 0.5137 (2) | 0.2863 (9) | 0.0193 (13) | |
H13 | 0.181619 | 0.504432 | 0.325098 | 0.023* | |
C14 | 0.4341 (9) | 0.4805 (2) | 0.2771 (9) | 0.0186 (13) |
U11 | U22 | U33 | U12 | U13 | U23 | |
Pb1 | 0.01712 (19) | 0.01948 (19) | 0.01684 (19) | 0.00132 (8) | 0.00290 (12) | 0.00150 (9) |
O1 | 0.020 (2) | 0.023 (2) | 0.022 (3) | −0.0008 (18) | 0.011 (2) | 0.004 (2) |
O2 | 0.016 (2) | 0.023 (2) | 0.026 (3) | −0.0006 (17) | 0.004 (2) | 0.0005 (19) |
O3 | 0.022 (2) | 0.018 (2) | 0.023 (3) | 0.0002 (18) | 0.008 (2) | −0.001 (2) |
O4 | 0.019 (2) | 0.019 (2) | 0.030 (3) | −0.0006 (18) | 0.003 (2) | −0.004 (2) |
O5 | 0.018 (2) | 0.023 (2) | 0.020 (3) | 0.0022 (18) | 0.0011 (19) | 0.0004 (19) |
O6 | 0.020 (2) | 0.016 (2) | 0.028 (3) | −0.0003 (17) | 0.003 (2) | 0.005 (2) |
O7 | 0.021 (2) | 0.024 (2) | 0.026 (3) | −0.0032 (18) | 0.002 (2) | 0.002 (2) |
O8 | 0.013 (2) | 0.024 (2) | 0.025 (3) | −0.0013 (17) | 0.0015 (19) | 0.001 (2) |
O9 | 0.020 (2) | 0.017 (2) | 0.024 (2) | 0.0029 (16) | 0.0014 (19) | 0.0006 (19) |
O10 | 0.022 (3) | 0.018 (2) | 0.025 (3) | 0.0006 (17) | 0.005 (2) | 0.0054 (19) |
O11 | 0.030 (3) | 0.054 (3) | 0.023 (3) | −0.019 (2) | 0.005 (2) | −0.011 (3) |
C1 | 0.018 (3) | 0.025 (3) | 0.014 (3) | 0.005 (3) | −0.001 (3) | 0.004 (3) |
C2 | 0.019 (3) | 0.026 (3) | 0.012 (3) | −0.004 (3) | −0.004 (3) | −0.001 (3) |
C3 | 0.021 (3) | 0.021 (3) | 0.015 (3) | 0.003 (2) | −0.004 (3) | −0.003 (3) |
C4 | 0.020 (3) | 0.016 (3) | 0.015 (3) | 0.002 (2) | −0.002 (3) | 0.002 (2) |
C5 | 0.017 (3) | 0.022 (3) | 0.015 (3) | −0.003 (2) | −0.005 (3) | 0.002 (3) |
C6 | 0.014 (3) | 0.023 (3) | 0.016 (3) | 0.002 (2) | 0.001 (3) | −0.006 (3) |
C7 | 0.024 (3) | 0.022 (3) | 0.013 (3) | −0.002 (3) | −0.001 (3) | −0.001 (3) |
C8 | 0.015 (3) | 0.026 (3) | 0.014 (3) | 0.003 (2) | −0.004 (3) | −0.003 (3) |
C9 | 0.015 (3) | 0.018 (3) | 0.014 (3) | 0.000 (2) | −0.005 (2) | 0.002 (2) |
C10 | 0.016 (3) | 0.022 (3) | 0.005 (3) | −0.001 (2) | −0.002 (2) | 0.003 (2) |
C11 | 0.021 (3) | 0.016 (3) | 0.015 (3) | 0.001 (2) | 0.003 (3) | 0.003 (2) |
C12 | 0.023 (4) | 0.028 (3) | 0.014 (3) | 0.001 (3) | −0.004 (3) | −0.003 (3) |
C13 | 0.018 (3) | 0.026 (3) | 0.014 (3) | 0.003 (2) | 0.000 (3) | 0.004 (3) |
C14 | 0.021 (3) | 0.020 (3) | 0.015 (3) | −0.002 (3) | 0.002 (3) | 0.001 (3) |
Pb1—O1 | 2.426 (4) | O11—H11A | 0.9022 |
Pb1—O6 | 2.431 (5) | O11—H11B | 0.8999 |
Pb1—O7 | 2.589 (5) | C1—C2 | 1.467 (10) |
Pb1—O11 | 2.386 (5) | C2—C3 | 1.418 (10) |
O1—C1 | 1.266 (9) | C2—C7 | 1.413 (10) |
O2—C1 | 1.275 (8) | C3—C4 | 1.387 (10) |
O3—H3 | 0.86 (2) | C4—H4A | 0.9500 |
O3—C3 | 1.368 (8) | C4—C5 | 1.397 (10) |
O4—H4 | 0.84 (2) | C5—C6 | 1.396 (10) |
O4—C5 | 1.350 (9) | C6—H6 | 0.9500 |
O5—H5 | 0.85 (2) | C6—C7 | 1.385 (10) |
O5—C7 | 1.349 (8) | C8—C9 | 1.460 (9) |
O6—C8 | 1.282 (9) | C9—C10 | 1.403 (9) |
O7—C8 | 1.269 (9) | C9—C14 | 1.417 (10) |
O8—H8 | 0.85 (2) | C10—C11 | 1.395 (9) |
O8—C10 | 1.365 (8) | C11—H11 | 0.9500 |
O9—H9 | 0.85 (2) | C11—C12 | 1.386 (10) |
O9—C12 | 1.360 (9) | C12—C13 | 1.392 (10) |
O10—H10 | 0.85 (2) | C13—H13 | 0.9500 |
O10—C14 | 1.372 (8) | C13—C14 | 1.375 (10) |
O1—Pb1—O6 | 73.38 (15) | O4—C5—C4 | 116.7 (6) |
O1—Pb1—O7 | 122.17 (15) | O4—C5—C6 | 122.2 (6) |
O6—Pb1—O7 | 51.82 (15) | C4—C5—C6 | 121.1 (6) |
O11—Pb1—O1 | 76.03 (18) | C5—C6—H6 | 120.3 |
O11—Pb1—O6 | 80.46 (19) | C7—C6—C5 | 119.5 (6) |
O11—Pb1—O7 | 78.0 (2) | C7—C6—H6 | 120.3 |
C1—O1—Pb1 | 136.6 (4) | O5—C7—C2 | 121.8 (6) |
C3—O3—H3 | 99 (6) | O5—C7—C6 | 116.9 (6) |
C5—O4—H4 | 103 (7) | C6—C7—C2 | 121.3 (6) |
C7—O5—H5 | 103 (6) | O6—C8—C9 | 121.4 (6) |
C8—O6—Pb1 | 98.2 (4) | O7—C8—O6 | 119.0 (6) |
C8—O7—Pb1 | 91.1 (4) | O7—C8—C9 | 119.6 (6) |
C10—O8—H8 | 106 (7) | C10—C9—C8 | 121.1 (6) |
C12—O9—H9 | 103 (7) | C10—C9—C14 | 117.4 (6) |
C14—O10—H10 | 106 (7) | C14—C9—C8 | 121.5 (6) |
Pb1—O11—H11A | 145.5 | O8—C10—C9 | 121.4 (6) |
Pb1—O11—H11B | 108.6 | O8—C10—C11 | 117.1 (5) |
H11A—O11—H11B | 103.3 | C11—C10—C9 | 121.5 (6) |
O1—C1—O2 | 122.9 (6) | C10—C11—H11 | 120.8 |
O1—C1—C2 | 119.1 (6) | C12—C11—C10 | 118.5 (6) |
O2—C1—C2 | 118.0 (6) | C12—C11—H11 | 120.8 |
C3—C2—C1 | 120.7 (6) | O9—C12—C11 | 120.9 (6) |
C7—C2—C1 | 121.7 (6) | O9—C12—C13 | 117.1 (6) |
C7—C2—C3 | 117.6 (6) | C11—C12—C13 | 122.0 (6) |
O3—C3—C2 | 119.6 (6) | C12—C13—H13 | 120.7 |
O3—C3—C4 | 118.9 (6) | C14—C13—C12 | 118.6 (6) |
C4—C3—C2 | 121.5 (6) | C14—C13—H13 | 120.7 |
C3—C4—H4A | 120.5 | O10—C14—C9 | 120.7 (6) |
C3—C4—C5 | 119.0 (6) | O10—C14—C13 | 117.4 (6) |
C5—C4—H4A | 120.5 | C13—C14—C9 | 121.9 (6) |
Pb1—O1—C1—O2 | 32.6 (11) | C3—C2—C7—O5 | −179.2 (6) |
Pb1—O1—C1—C2 | −148.0 (5) | C3—C2—C7—C6 | −0.2 (10) |
Pb1—O6—C8—O7 | −0.4 (7) | C3—C4—C5—O4 | 179.7 (6) |
Pb1—O6—C8—C9 | 179.2 (6) | C3—C4—C5—C6 | −1.8 (10) |
Pb1—O7—C8—O6 | 0.4 (6) | C4—C5—C6—C7 | −0.1 (10) |
Pb1—O7—C8—C9 | −179.2 (6) | C5—C6—C7—O5 | −179.8 (6) |
O1—C1—C2—C3 | −178.9 (6) | C5—C6—C7—C2 | 1.1 (10) |
O1—C1—C2—C7 | 2.6 (10) | C7—C2—C3—O3 | −179.7 (6) |
O2—C1—C2—C3 | 0.6 (10) | C7—C2—C3—C4 | −1.8 (10) |
O2—C1—C2—C7 | −178.0 (6) | C8—C9—C10—O8 | 0.9 (10) |
O3—C3—C4—C5 | −179.3 (6) | C8—C9—C10—C11 | −179.4 (6) |
O4—C5—C6—C7 | 178.3 (7) | C8—C9—C14—O10 | −0.8 (10) |
O6—C8—C9—C10 | 178.6 (6) | C8—C9—C14—C13 | −179.5 (6) |
O6—C8—C9—C14 | −1.2 (10) | C9—C10—C11—C12 | −2.0 (10) |
O7—C8—C9—C10 | −1.8 (10) | C10—C9—C14—O10 | 179.4 (6) |
O7—C8—C9—C14 | 178.4 (6) | C10—C9—C14—C13 | 0.7 (10) |
O8—C10—C11—C12 | 177.7 (6) | C10—C11—C12—O9 | −176.6 (6) |
O9—C12—C13—C14 | 177.7 (6) | C10—C11—C12—C13 | 2.5 (10) |
C1—C2—C3—O3 | 1.7 (10) | C11—C12—C13—C14 | −1.4 (10) |
C1—C2—C3—C4 | 179.6 (6) | C12—C13—C14—O10 | −179.0 (6) |
C1—C2—C7—O5 | −0.6 (10) | C12—C13—C14—C9 | −0.2 (11) |
C1—C2—C7—C6 | 178.4 (7) | C14—C9—C10—O8 | −179.2 (6) |
C2—C3—C4—C5 | 2.8 (10) | C14—C9—C10—C11 | 0.4 (10) |
[Li2(C6H4O3)(H2O)4] | Z = 2 |
Mr = 210.04 | F(000) = 220 |
Triclinic, P1 | Dx = 1.493 Mg m−3 |
a = 6.6971 (2) Å | Cu Kα radiation, λ = 1.54184 Å |
b = 8.1362 (3) Å | Cell parameters from 3429 reflections |
c = 9.5658 (5) Å | θ = 4.8–77.6° |
α = 101.129 (4)° | µ = 1.15 mm−1 |
β = 93.408 (3)° | T = 100 K |
γ = 112.541 (4)° | Block, clear colourless |
V = 467.21 (4) Å3 | 0.19 × 0.10 × 0.02 mm |
XtaLAB Synergy, Dualflex, HyPix diffractometer | 1946 independent reflections |
Radiation source: micro-focus sealed X-ray tube, PhotonJet (Cu) X-ray Source | 1757 reflections with I > 2σ(I) |
Mirror monochromator | Rint = 0.040 |
Detector resolution: 10.0000 pixels mm-1 | θmax = 78.0°, θmin = 4.8° |
ω scans | h = −8→7 |
Absorption correction: gaussian (CrysAlis PRO; Rigaku OD, 2021) | k = −9→10 |
Tmin = 0.661, Tmax = 1.000 | l = −11→12 |
5508 measured reflections |
Refinement on F2 | Primary atom site location: dual |
Least-squares matrix: full | Hydrogen site location: mixed |
R[F2 > 2σ(F2)] = 0.040 | H atoms treated by a mixture of independent and constrained refinement |
wR(F2) = 0.110 | w = 1/[σ2(Fo2) + (0.0547P)2 + 0.191P] where P = (Fo2 + 2Fc2)/3 |
S = 1.08 | (Δ/σ)max < 0.001 |
1946 reflections | Δρmax = 0.33 e Å−3 |
166 parameters | Δρmin = −0.41 e Å−3 |
9 restraints |
Geometry. All esds (except the esd in the dihedral angle between two l.s. planes) are estimated using the full covariance matrix. The cell esds are taken into account individually in the estimation of esds in distances, angles and torsion angles; correlations between esds in cell parameters are only used when they are defined by crystal symmetry. An approximate (isotropic) treatment of cell esds is used for estimating esds involving l.s. planes. |
Refinement. The O-H distances were fixed at 0.85 and Uiso(H) = 1.5Ueq(O). |
x | y | z | Uiso*/Ueq | ||
O1 | 0.58562 (16) | 0.17919 (13) | 0.51138 (11) | 0.0142 (2) | |
O2 | 0.92715 (16) | 0.79147 (13) | 0.78341 (11) | 0.0138 (2) | |
O3 | 0.80404 (16) | 0.65688 (13) | 0.27057 (11) | 0.0136 (2) | |
O4 | 0.32243 (16) | 0.07482 (14) | 0.77331 (11) | 0.0143 (2) | |
O5 | 0.80703 (17) | 0.08320 (14) | 0.77081 (11) | 0.0147 (2) | |
O6 | 0.8001 (2) | 0.30718 (16) | 0.03636 (13) | 0.0225 (3) | |
O7 | 0.64658 (17) | 0.66541 (14) | −0.03078 (11) | 0.0151 (2) | |
C1 | 0.6744 (2) | 0.35036 (18) | 0.51479 (16) | 0.0123 (3) | |
C2 | 0.7577 (2) | 0.48085 (18) | 0.65366 (15) | 0.0125 (3) | |
H2 | 0.747722 | 0.439887 | 0.738317 | 0.015* | |
C3 | 0.8538 (2) | 0.67007 (19) | 0.65905 (16) | 0.0134 (3) | |
C4 | 0.8723 (2) | 0.73406 (18) | 0.52690 (15) | 0.0126 (3) | |
H4C | 0.827 (3) | 0.829 (3) | 0.529 (2) | 0.015* | |
H4D | 1.019 (3) | 0.816 (3) | 0.525 (2) | 0.015* | |
C5 | 0.7875 (2) | 0.59794 (19) | 0.38849 (15) | 0.0123 (3) | |
C6 | 0.6917 (2) | 0.41246 (18) | 0.38622 (15) | 0.0132 (3) | |
H6 | 0.637803 | 0.327535 | 0.298183 | 0.016* | |
Li1 | 0.5327 (4) | 0.0322 (3) | 0.6489 (3) | 0.0149 (5) | |
Li2 | 0.6833 (4) | 0.4898 (3) | 0.0845 (3) | 0.0181 (5) | |
H4A | 0.280 (3) | 0.147 (3) | 0.741 (2) | 0.027* | |
H4B | 0.208 (3) | −0.016 (2) | 0.773 (2) | 0.027* | |
H5A | 0.841 (4) | −0.005 (3) | 0.777 (2) | 0.027* | |
H5B | 0.918 (3) | 0.160 (3) | 0.748 (2) | 0.027* | |
H6A | 0.789 (4) | 0.230 (3) | −0.041 (2) | 0.027* | |
H6B | 0.883 (3) | 0.286 (3) | 0.092 (2) | 0.027* | |
H7A | 0.650 (4) | 0.757 (3) | 0.029 (2) | 0.027* | |
H7B | 0.732 (3) | 0.709 (3) | −0.089 (2) | 0.027* |
U11 | U22 | U33 | U12 | U13 | U23 | |
O1 | 0.0171 (5) | 0.0082 (5) | 0.0154 (5) | 0.0032 (4) | 0.0018 (4) | 0.0025 (4) |
O2 | 0.0165 (5) | 0.0108 (5) | 0.0121 (5) | 0.0043 (4) | 0.0019 (4) | 0.0007 (4) |
O3 | 0.0164 (5) | 0.0114 (5) | 0.0129 (5) | 0.0050 (4) | 0.0025 (4) | 0.0039 (4) |
O4 | 0.0148 (5) | 0.0115 (5) | 0.0167 (5) | 0.0051 (4) | 0.0032 (4) | 0.0041 (4) |
O5 | 0.0151 (5) | 0.0127 (5) | 0.0172 (5) | 0.0063 (4) | 0.0027 (4) | 0.0039 (4) |
O6 | 0.0302 (6) | 0.0252 (6) | 0.0158 (6) | 0.0186 (5) | −0.0018 (5) | −0.0011 (5) |
O7 | 0.0186 (5) | 0.0124 (5) | 0.0134 (5) | 0.0051 (4) | 0.0042 (4) | 0.0028 (4) |
C1 | 0.0111 (6) | 0.0093 (6) | 0.0170 (7) | 0.0045 (5) | 0.0036 (5) | 0.0033 (5) |
C2 | 0.0149 (6) | 0.0115 (7) | 0.0119 (7) | 0.0054 (5) | 0.0027 (5) | 0.0042 (5) |
C3 | 0.0111 (6) | 0.0147 (7) | 0.0139 (7) | 0.0060 (5) | 0.0018 (5) | 0.0002 (5) |
C4 | 0.0142 (7) | 0.0081 (6) | 0.0156 (7) | 0.0045 (5) | 0.0036 (5) | 0.0029 (5) |
C5 | 0.0117 (6) | 0.0141 (6) | 0.0135 (7) | 0.0066 (5) | 0.0035 (5) | 0.0052 (5) |
C6 | 0.0149 (7) | 0.0099 (6) | 0.0133 (7) | 0.0045 (5) | 0.0015 (5) | 0.0006 (5) |
Li1 | 0.0175 (12) | 0.0116 (11) | 0.0146 (11) | 0.0049 (9) | 0.0029 (9) | 0.0024 (9) |
Li2 | 0.0207 (12) | 0.0153 (11) | 0.0171 (12) | 0.0070 (10) | 0.0002 (10) | 0.0022 (10) |
O1—C1 | 1.2804 (17) | O7—Li2 | 2.040 (3) |
O1—Li1i | 1.931 (3) | O7—H7A | 0.841 (16) |
O1—Li1 | 1.904 (3) | O7—H7B | 0.852 (16) |
O2—C3 | 1.3180 (17) | C1—C2 | 1.4548 (19) |
O3—C5 | 1.3028 (18) | C1—C6 | 1.412 (2) |
O3—Li2 | 1.930 (3) | C2—H2 | 0.9300 |
O4—Li1 | 1.983 (3) | C2—C3 | 1.4116 (19) |
O4—H4A | 0.839 (16) | C3—C4 | 1.452 (2) |
O4—H4B | 0.835 (16) | C4—H4C | 0.93 (2) |
O5—Li1 | 1.970 (3) | C4—H4D | 0.96 (2) |
O5—H5A | 0.846 (16) | C4—C5 | 1.4712 (19) |
O5—H5B | 0.841 (16) | C5—C6 | 1.390 (2) |
O6—Li2 | 1.924 (3) | C6—H6 | 0.9300 |
O6—H6A | 0.853 (16) | Li1—Li1i | 2.772 (5) |
O6—H6B | 0.831 (16) | Li2—Li2ii | 2.935 (5) |
O7—Li2ii | 2.053 (3) | ||
C1—O1—Li1 | 136.35 (12) | C3—C4—C5 | 118.61 (12) |
C1—O1—Li1i | 131.00 (12) | H4C—C4—H4D | 90.1 (16) |
Li1—O1—Li1i | 92.55 (11) | C5—C4—H4C | 111.2 (12) |
C5—O3—Li2 | 121.11 (12) | C5—C4—H4D | 109.6 (12) |
Li1—O4—H4A | 106.6 (15) | O3—C5—C4 | 118.10 (12) |
Li1—O4—H4B | 116.8 (15) | O3—C5—C6 | 121.92 (13) |
H4A—O4—H4B | 104 (2) | C6—C5—C4 | 119.98 (13) |
Li1—O5—H5A | 118.4 (16) | C1—C6—H6 | 119.3 |
Li1—O5—H5B | 113.6 (16) | C5—C6—C1 | 121.37 (13) |
H5A—O5—H5B | 105 (2) | C5—C6—H6 | 119.3 |
Li2—O6—H6A | 133.3 (15) | O1—Li1—O1i | 87.45 (11) |
Li2—O6—H6B | 125.8 (15) | O1—Li1—O4 | 111.32 (12) |
H6A—O6—H6B | 101 (2) | O1i—Li1—O4 | 116.42 (13) |
Li2—O7—Li2ii | 91.60 (11) | O1—Li1—O5 | 110.75 (12) |
Li2—O7—H7A | 107.0 (16) | O1i—Li1—O5 | 119.75 (13) |
Li2ii—O7—H7A | 101.8 (15) | O1i—Li1—Li1i | 43.34 (7) |
Li2ii—O7—H7B | 125.3 (15) | O1—Li1—Li1i | 44.11 (8) |
Li2—O7—H7B | 123.6 (15) | O4—Li1—Li1i | 124.04 (16) |
H7A—O7—H7B | 105 (2) | O5—Li1—O4 | 109.14 (13) |
O1—C1—C2 | 118.96 (13) | O5—Li1—Li1i | 126.10 (15) |
O1—C1—C6 | 120.82 (13) | O3—Li2—O7ii | 121.13 (14) |
C6—C1—C2 | 120.22 (12) | O3—Li2—O7 | 99.59 (12) |
C1—C2—H2 | 120.2 | O3—Li2—Li2ii | 118.52 (15) |
C3—C2—C1 | 119.55 (13) | O6—Li2—O3 | 115.24 (14) |
C3—C2—H2 | 120.2 | O6—Li2—O7ii | 101.57 (12) |
O2—C3—C2 | 120.85 (13) | O6—Li2—O7 | 129.96 (15) |
O2—C3—C4 | 118.88 (12) | O6—Li2—Li2ii | 125.93 (16) |
C2—C3—C4 | 120.27 (13) | O7—Li2—O7ii | 88.40 (11) |
C3—C4—H4C | 112.6 (12) | O7—Li2—Li2ii | 44.37 (8) |
C3—C4—H4D | 111.0 (12) | O7ii—Li2—Li2ii | 44.03 (8) |
O1—C1—C2—C3 | −179.30 (12) | C3—C4—C5—C6 | 0.1 (2) |
O1—C1—C6—C5 | 179.93 (12) | C4—C5—C6—C1 | −0.4 (2) |
O2—C3—C4—C5 | −179.21 (12) | C6—C1—C2—C3 | 0.7 (2) |
O3—C5—C6—C1 | −179.90 (12) | Li1—O1—C1—C2 | −2.1 (2) |
C1—C2—C3—O2 | 178.81 (12) | Li1i—O1—C1—C2 | −177.57 (13) |
C1—C2—C3—C4 | −0.9 (2) | Li1i—O1—C1—C6 | 2.5 (2) |
C2—C1—C6—C5 | 0.0 (2) | Li1—O1—C1—C6 | 177.93 (14) |
C2—C3—C4—C5 | 0.51 (19) | Li2—O3—C5—C4 | −176.57 (12) |
C3—C4—C5—O3 | 179.69 (12) | Li2—O3—C5—C6 | 3.0 (2) |
Symmetry codes: (i) −x+1, −y, −z+1; (ii) −x+1, −y+1, −z. |
[Cs3(C12H7O9)(H2O)]·0.75H2O | Z = 2 |
Mr = 725.44 | F(000) = 667 |
Triclinic, P1 | Dx = 2.814 Mg m−3 |
a = 7.7172 (3) Å | Mo Kα radiation, λ = 0.71073 Å |
b = 10.6962 (6) Å | Cell parameters from 4318 reflections |
c = 11.3561 (6) Å | θ = 3.2–28.1° |
α = 69.076 (5)° | µ = 6.41 mm−1 |
β = 85.882 (4)° | T = 100 K |
γ = 77.886 (4)° | Irregular, clear colourless |
V = 856.07 (8) Å3 | 0.24 × 0.09 × 0.06 mm |
SuperNova, Dual, Cu at home/near, Atlas diffractometer | 3567 independent reflections |
Radiation source: micro-focus sealed X-ray tube, SuperNova (Mo) X-ray Source | 3349 reflections with I > 2σ(I) |
Mirror monochromator | Rint = 0.015 |
Detector resolution: 10.2273 pixels mm-1 | θmax = 28.4°, θmin = 2.7° |
ω scans | h = −10→9 |
Absorption correction: analytical (CrysAlis PRO; Rigaku OD, 2018) | k = −11→13 |
Tmin = 0.476, Tmax = 0.711 | l = −13→15 |
6129 measured reflections |
Refinement on F2 | Primary atom site location: dual |
Least-squares matrix: full | Hydrogen site location: mixed |
R[F2 > 2σ(F2)] = 0.024 | H atoms treated by a mixture of independent and constrained refinement |
wR(F2) = 0.051 | w = 1/[σ2(Fo2) + (0.0105P)2 + 4.0006P] where P = (Fo2 + 2Fc2)/3 |
S = 1.04 | (Δ/σ)max = 0.001 |
3567 reflections | Δρmax = 2.09 e Å−3 |
250 parameters | Δρmin = −1.49 e Å−3 |
11 restraints |
Geometry. All esds (except the esd in the dihedral angle between two l.s. planes) are estimated using the full covariance matrix. The cell esds are taken into account individually in the estimation of esds in distances, angles and torsion angles; correlations between esds in cell parameters are only used when they are defined by crystal symmetry. An approximate (isotropic) treatment of cell esds is used for estimating esds involving l.s. planes. |
Refinement. The position of O10 is 75% occupied and its H atoms are disordered. The H atom positions were fixed in directions corresponding to likely H-bonds with neighbouring O atoms. O-H distances were fixed at 0.85 and Uiso(H) = 1.5Ueq(O). |
x | y | z | Uiso*/Ueq | Occ. (<1) | |
Cs3 | 0.94422 (3) | 0.63711 (2) | 0.10123 (2) | 0.01607 (7) | |
Cs1 | 1.08628 (3) | 0.21949 (3) | 0.56035 (3) | 0.01919 (7) | |
Cs2 | 0.65776 (3) | 0.01232 (3) | 0.68872 (3) | 0.02395 (8) | |
O6 | 0.4092 (4) | 0.2536 (3) | 0.4023 (3) | 0.0165 (6) | |
O3 | 0.8718 (3) | 0.3435 (3) | 0.1637 (3) | 0.0157 (6) | |
H3 | 0.955 (4) | 0.293 (4) | 0.208 (4) | 0.024* | |
O2 | 0.6797 (3) | 0.0694 (3) | 0.3750 (3) | 0.0164 (6) | |
O1 | 0.9543 (4) | 0.1144 (3) | 0.3445 (3) | 0.0197 (6) | |
O9 | 0.7036 (4) | 0.2843 (3) | 0.4936 (3) | 0.0195 (6) | |
O4 | 0.8187 (4) | 0.1488 (3) | 0.0556 (3) | 0.0188 (6) | |
O7 | 0.1771 (3) | 0.4888 (3) | 0.3568 (3) | 0.0188 (6) | |
O8 | 0.6096 (4) | 0.7537 (3) | 0.2564 (3) | 0.0239 (7) | |
O5 | 0.2631 (4) | 0.3978 (3) | 0.1198 (3) | 0.0260 (7) | |
C1 | 0.7926 (5) | 0.1415 (4) | 0.3203 (4) | 0.0147 (8) | |
C8 | 0.6260 (5) | 0.3895 (4) | 0.4113 (4) | 0.0150 (8) | |
C6 | 0.5543 (5) | 0.3705 (4) | 0.2065 (4) | 0.0139 (8) | |
H6A | 0.574830 | 0.464741 | 0.158369 | 0.017* | |
C3 | 0.6931 (5) | 0.2168 (4) | 0.0992 (4) | 0.0142 (8) | |
C4 | 0.5144 (5) | 0.2529 (4) | 0.0683 (4) | 0.0173 (8) | |
H4 | 0.461044 | 0.221709 | 0.013960 | 0.021* | |
C12 | 0.3274 (5) | 0.4971 (4) | 0.3180 (4) | 0.0152 (8) | |
C10 | 0.5659 (5) | 0.6381 (4) | 0.2950 (4) | 0.0163 (8) | |
C5 | 0.4224 (5) | 0.3422 (4) | 0.1283 (4) | 0.0165 (8) | |
C9 | 0.6713 (5) | 0.5191 (4) | 0.3734 (4) | 0.0172 (8) | |
H9 | 0.779972 | 0.525521 | 0.403087 | 0.021* | |
C2 | 0.7309 (5) | 0.2711 (4) | 0.2021 (4) | 0.0131 (7) | |
C7 | 0.4761 (5) | 0.3723 (4) | 0.3365 (4) | 0.0137 (8) | |
C11 | 0.3831 (5) | 0.6321 (4) | 0.2559 (4) | 0.0175 (8) | |
H6 | 0.495 (5) | 0.190 (4) | 0.404 (5) | 0.026* | |
O10 | 0.6738 (8) | 0.9394 (5) | 0.0209 (6) | 0.0633 (18) | 0.75 |
O11 | 0.9365 (6) | 0.0933 (4) | 0.8305 (3) | 0.0467 (11) | |
H11C | 1.021 (6) | 0.025 (5) | 0.855 (6) | 0.070* | |
H11A | 0.296 (6) | 0.701 (5) | 0.273 (6) | 0.056* | |
H11B | 0.393 (8) | 0.649 (6) | 0.168 (2) | 0.056* | |
H10A | 0.568001 | 0.981489 | 0.019720 | 0.070* | 0.375 |
H10C | 0.738130 | 1.000980 | 0.006459 | 0.070* | 0.75 |
H10B | 0.667861 | 0.899970 | 0.100060 | 0.070* | 0.375 |
H11D | 0.878060 | 0.109610 | 0.894090 | 0.070* |
U11 | U22 | U33 | U12 | U13 | U23 | |
Cs3 | 0.01366 (12) | 0.01903 (13) | 0.01593 (12) | −0.00410 (9) | 0.00067 (9) | −0.00625 (9) |
Cs1 | 0.01289 (12) | 0.01726 (13) | 0.02565 (14) | −0.00324 (9) | 0.00200 (10) | −0.00560 (10) |
Cs2 | 0.01546 (13) | 0.01514 (13) | 0.04064 (17) | −0.00397 (10) | −0.00352 (11) | −0.00784 (11) |
O6 | 0.0140 (13) | 0.0142 (14) | 0.0192 (14) | −0.0034 (11) | 0.0026 (12) | −0.0033 (11) |
O3 | 0.0112 (13) | 0.0160 (14) | 0.0183 (15) | −0.0035 (11) | −0.0005 (11) | −0.0036 (11) |
O2 | 0.0155 (13) | 0.0128 (14) | 0.0188 (14) | −0.0024 (11) | 0.0004 (12) | −0.0035 (11) |
O1 | 0.0130 (13) | 0.0212 (15) | 0.0219 (15) | 0.0006 (11) | −0.0039 (12) | −0.0054 (12) |
O9 | 0.0200 (14) | 0.0167 (14) | 0.0180 (14) | 0.0015 (11) | −0.0043 (12) | −0.0036 (12) |
O4 | 0.0187 (14) | 0.0183 (15) | 0.0190 (15) | 0.0024 (11) | 0.0004 (12) | −0.0097 (12) |
O7 | 0.0127 (13) | 0.0241 (16) | 0.0171 (14) | −0.0012 (11) | −0.0006 (12) | −0.0053 (12) |
O8 | 0.0253 (16) | 0.0177 (15) | 0.0285 (17) | −0.0073 (12) | 0.0035 (13) | −0.0069 (13) |
O5 | 0.0128 (14) | 0.0391 (19) | 0.0269 (17) | 0.0053 (13) | −0.0061 (13) | −0.0172 (15) |
C1 | 0.0156 (19) | 0.0149 (19) | 0.0137 (19) | 0.0004 (15) | −0.0004 (16) | −0.0070 (15) |
C8 | 0.0135 (18) | 0.020 (2) | 0.0115 (18) | −0.0018 (15) | 0.0021 (15) | −0.0072 (15) |
C6 | 0.0129 (18) | 0.0140 (19) | 0.0133 (18) | −0.0027 (15) | −0.0017 (15) | −0.0025 (15) |
C3 | 0.0186 (19) | 0.0117 (18) | 0.0108 (18) | −0.0032 (15) | 0.0007 (15) | −0.0019 (14) |
C4 | 0.019 (2) | 0.020 (2) | 0.0149 (19) | −0.0039 (16) | −0.0038 (16) | −0.0079 (16) |
C12 | 0.0141 (19) | 0.021 (2) | 0.0112 (18) | −0.0020 (16) | −0.0007 (15) | −0.0067 (15) |
C10 | 0.0166 (19) | 0.016 (2) | 0.016 (2) | −0.0023 (15) | 0.0029 (16) | −0.0067 (16) |
C5 | 0.0174 (19) | 0.020 (2) | 0.0122 (19) | −0.0031 (16) | −0.0022 (16) | −0.0054 (15) |
C9 | 0.0162 (19) | 0.021 (2) | 0.0162 (19) | −0.0048 (16) | 0.0006 (16) | −0.0075 (16) |
C2 | 0.0116 (17) | 0.0127 (18) | 0.0149 (19) | −0.0015 (14) | −0.0001 (15) | −0.0052 (15) |
C7 | 0.0126 (18) | 0.0143 (19) | 0.0141 (18) | −0.0032 (15) | −0.0006 (15) | −0.0045 (15) |
C11 | 0.0167 (19) | 0.014 (2) | 0.019 (2) | 0.0015 (15) | −0.0006 (17) | −0.0049 (16) |
O10 | 0.073 (4) | 0.036 (3) | 0.090 (5) | −0.004 (3) | −0.036 (4) | −0.031 (3) |
O11 | 0.060 (3) | 0.041 (2) | 0.0283 (19) | 0.0276 (19) | −0.0148 (18) | −0.0185 (17) |
Cs3—O3 | 3.126 (3) | Cs2—H6 | 3.29 (5) |
Cs3—O3i | 3.189 (3) | Cs2—O11 | 3.201 (4) |
Cs3—H3 | 3.42 (4) | Cs2—H11Avi | 3.34 (5) |
Cs3—O4i | 3.185 (3) | O6—C7 | 1.407 (4) |
Cs3—O7ii | 3.230 (3) | O6—H6 | 0.840 (19) |
Cs3—O8 | 3.301 (3) | O3—H3 | 0.818 (19) |
Cs3—O5ii | 3.114 (3) | O3—C2 | 1.420 (4) |
Cs3—O5iii | 3.240 (3) | O2—C1 | 1.265 (5) |
Cs3—C3i | 3.720 (4) | O1—C1 | 1.248 (5) |
Cs3—C4iii | 3.902 (4) | O9—C8 | 1.243 (5) |
Cs3—H4iii | 3.312 (4) | O4—C3 | 1.267 (5) |
Cs3—C12ii | 3.688 (4) | O7—C12 | 1.220 (5) |
Cs3—C5iii | 3.902 (4) | O8—C10 | 1.265 (5) |
Cs3—O11iv | 3.546 (4) | O5—C5 | 1.242 (5) |
Cs3—H10B | 3.1487 (3) | C1—C2 | 1.561 (5) |
Cs1—Cs2ii | 4.5825 (4) | C8—C9 | 1.409 (6) |
Cs1—Cs2v | 4.4946 (4) | C8—C7 | 1.560 (5) |
Cs1—O6ii | 2.972 (3) | C6—H6A | 1.0000 |
Cs1—O2v | 3.095 (3) | C6—C5 | 1.540 (5) |
Cs1—O1 | 3.334 (3) | C6—C2 | 1.552 (5) |
Cs1—O1v | 3.418 (3) | C6—C7 | 1.560 (5) |
Cs1—O9 | 2.977 (3) | C3—C4 | 1.387 (6) |
Cs1—O7vi | 3.730 (3) | C3—C2 | 1.547 (5) |
Cs1—O7ii | 3.161 (3) | C4—H4 | 0.9500 |
Cs1—O8iv | 3.366 (3) | C4—C5 | 1.411 (6) |
Cs1—C1v | 3.542 (4) | C12—C7 | 1.527 (5) |
Cs1—O11 | 3.124 (4) | C12—C11 | 1.502 (6) |
Cs1—H11C | 3.31 (7) | C10—C9 | 1.391 (6) |
Cs2—Cs2vii | 5.1909 (6) | C10—C11 | 1.529 (6) |
Cs2—O6vii | 3.496 (3) | C9—H9 | 0.9500 |
Cs2—O2 | 3.390 (3) | C11—H11A | 0.95 (2) |
Cs2—O2vii | 3.122 (3) | C11—H11B | 0.95 (2) |
Cs2—O1v | 3.073 (3) | O10—H10A | 0.844 (6) |
Cs2—O9 | 3.035 (3) | O10—H10C | 0.870 (5) |
Cs2—O8vi | 3.110 (3) | O10—H10B | 0.848 (7) |
Cs2—C4vii | 3.591 (4) | O11—H11C | 0.85 (2) |
Cs2—C5vii | 3.775 (4) | O11—H11D | 0.875 (4) |
O3—Cs3—O3i | 95.29 (6) | O2—Cs2—O6vii | 63.95 (6) |
O3—Cs3—H3 | 13.4 (5) | O2vii—Cs2—O2 | 74.37 (7) |
O3i—Cs3—H3 | 96.5 (8) | O2vii—Cs2—C4vii | 62.59 (8) |
O3—Cs3—O4i | 145.58 (7) | O2—Cs2—C4vii | 127.87 (8) |
O3—Cs3—O7ii | 82.30 (7) | O2vii—Cs2—C5vii | 61.74 (8) |
O3i—Cs3—O7ii | 119.51 (7) | O2—Cs2—C5vii | 110.95 (8) |
O3—Cs3—O8 | 98.53 (7) | O2—Cs2—H6 | 31.4 (5) |
O3i—Cs3—O8 | 147.94 (7) | O2vii—Cs2—H6 | 65.1 (8) |
O3—Cs3—O5iii | 65.95 (8) | O2vii—Cs2—O11 | 162.51 (9) |
O3i—Cs3—O5iii | 58.99 (7) | O2vii—Cs2—H11Avi | 129.9 (8) |
O3—Cs3—C3i | 126.60 (8) | O2—Cs2—H11Avi | 107.3 (11) |
O3i—Cs3—C3i | 40.29 (8) | O1v—Cs2—Cs1viii | 155.34 (6) |
O3i—Cs3—C4iii | 88.31 (8) | O1v—Cs2—Cs1v | 47.88 (6) |
O3—Cs3—C4iii | 83.08 (8) | O1v—Cs2—Cs2vii | 102.80 (6) |
O3—Cs3—H4iii | 91.63 (9) | O1v—Cs2—O6vii | 80.71 (7) |
O3i—Cs3—H4iii | 95.74 (9) | O1v—Cs2—O2vii | 126.93 (8) |
O3—Cs3—C12ii | 90.33 (8) | O1v—Cs2—O2 | 77.64 (7) |
O3i—Cs3—C12ii | 101.92 (8) | O1v—Cs2—O8vi | 147.88 (8) |
O3—Cs3—C5iii | 71.76 (8) | O1v—Cs2—C4vii | 105.25 (8) |
O3i—Cs3—C5iii | 72.59 (8) | O1v—Cs2—C5vii | 88.69 (8) |
O3—Cs3—O11iv | 155.56 (8) | O1v—Cs2—H6 | 106.8 (6) |
O3i—Cs3—O11iv | 103.74 (8) | O1v—Cs2—O11 | 66.11 (8) |
O3i—Cs3—H10B | 114.86 (5) | O1v—Cs2—H11Avi | 101.1 (7) |
O3—Cs3—H10B | 127.22 (5) | O9—Cs2—Cs1viii | 77.61 (5) |
H3—Cs3—H4iii | 104.7 (5) | O9—Cs2—Cs1v | 92.47 (6) |
H3—Cs3—H10B | 136.3 (7) | O9—Cs2—Cs2vii | 81.25 (6) |
O4i—Cs3—O3i | 53.62 (7) | O9—Cs2—O6vii | 120.98 (7) |
O4i—Cs3—H3 | 139.8 (7) | O9—Cs2—O2 | 57.20 (7) |
O4i—Cs3—O7ii | 99.65 (7) | O9—Cs2—O2vii | 109.60 (7) |
O4i—Cs3—O8 | 115.72 (7) | O9—Cs2—O1v | 90.77 (8) |
O4i—Cs3—O5iii | 102.11 (8) | O9—Cs2—O8vi | 70.77 (8) |
O4i—Cs3—C3i | 19.22 (8) | O9—Cs2—C4vii | 163.81 (8) |
O4i—Cs3—C4iii | 107.43 (8) | O9—Cs2—C5vii | 167.89 (8) |
O4i—Cs3—H4iii | 104.60 (9) | O9—Cs2—H6 | 46.5 (8) |
O4i—Cs3—C12ii | 83.39 (8) | O9—Cs2—O11 | 79.46 (9) |
O4i—Cs3—C5iii | 106.61 (8) | O9—Cs2—H11Avi | 50.1 (11) |
O4i—Cs3—O11iv | 50.12 (8) | O8vi—Cs2—Cs1viii | 47.27 (6) |
O4i—Cs3—H10B | 83.77 (5) | O8vi—Cs2—Cs1v | 153.46 (6) |
O7ii—Cs3—H3 | 70.0 (6) | O8vi—Cs2—Cs2vii | 100.12 (6) |
O7ii—Cs3—O8 | 91.03 (7) | O8vi—Cs2—O6vii | 131.23 (7) |
O7ii—Cs3—O5iii | 147.22 (8) | O8vi—Cs2—O2 | 110.71 (7) |
O7ii—Cs3—C3i | 95.72 (8) | O8vi—Cs2—O2vii | 84.72 (7) |
O7ii—Cs3—C4iii | 149.57 (8) | O8vi—Cs2—C4vii | 93.82 (8) |
O7ii—Cs3—H4iii | 144.58 (8) | O8vi—Cs2—C5vii | 114.80 (8) |
O7ii—Cs3—C12ii | 18.86 (7) | O8vi—Cs2—H6 | 79.8 (5) |
O7ii—Cs3—C5iii | 152.64 (8) | O8vi—Cs2—O11 | 84.36 (8) |
O7ii—Cs3—O11iv | 75.06 (8) | O8vi—Cs2—H11Avi | 46.9 (7) |
O7ii—Cs3—H10B | 113.68 (5) | C4vii—Cs2—Cs1viii | 88.32 (6) |
O8—Cs3—H3 | 103.5 (8) | C4vii—Cs2—Cs1v | 99.98 (7) |
O8—Cs3—C3i | 134.86 (8) | C4vii—Cs2—Cs2vii | 97.13 (7) |
O8—Cs3—C4iii | 65.00 (8) | C4vii—Cs2—C5vii | 21.90 (9) |
O8—Cs3—H4iii | 55.24 (9) | C4vii—Cs2—H6 | 127.7 (8) |
O8—Cs3—C12ii | 106.76 (8) | C4vii—Cs2—H11Avi | 122.4 (10) |
O8—Cs3—C5iii | 84.50 (8) | C5vii—Cs2—Cs1viii | 98.17 (6) |
O8—Cs3—O11iv | 73.14 (8) | C5vii—Cs2—Cs1v | 78.23 (6) |
O8—Cs3—H10B | 36.03 (5) | C5vii—Cs2—Cs2vii | 87.06 (6) |
O5ii—Cs3—O3 | 60.97 (8) | C5vii—Cs2—H6 | 122.4 (8) |
O5ii—Cs3—O3i | 66.69 (8) | C5vii—Cs2—H11Avi | 141.8 (10) |
O5ii—Cs3—H3 | 50.6 (6) | H6—Cs2—H11Avi | 90.3 (13) |
O5iii—Cs3—H3 | 77.5 (6) | O11—Cs2—Cs1viii | 131.03 (6) |
O5ii—Cs3—O4i | 90.13 (8) | O11—Cs2—Cs1v | 113.44 (6) |
O5ii—Cs3—O7ii | 59.69 (8) | O11—Cs2—Cs2vii | 157.50 (7) |
O5iii—Cs3—O8 | 101.12 (7) | O11—Cs2—O6vii | 141.78 (8) |
O5ii—Cs3—O8 | 144.71 (8) | O11—Cs2—O2 | 122.43 (9) |
O5ii—Cs3—O5iii | 95.94 (7) | O11—Cs2—C4vii | 104.61 (10) |
O5ii—Cs3—C3i | 72.15 (8) | O11—Cs2—C5vii | 111.25 (9) |
O5iii—Cs3—C3i | 96.83 (8) | O11—Cs2—H6 | 125.9 (9) |
O5ii—Cs3—C4iii | 132.19 (8) | O11—Cs2—H11Avi | 44.9 (9) |
O5iii—Cs3—C4iii | 37.73 (8) | Cs1viii—O6—Cs2vii | 87.64 (7) |
O5iii—Cs3—H4iii | 49.30 (9) | Cs1viii—O6—H6 | 125 (3) |
O5ii—Cs3—H4iii | 144.03 (9) | Cs2vii—O6—H6 | 61 (3) |
O5iii—Cs3—C12ii | 145.79 (8) | C7—O6—Cs1viii | 129.9 (2) |
O5ii—Cs3—C12ii | 49.99 (8) | C7—O6—Cs2vii | 131.7 (2) |
O5ii—Cs3—C5iii | 111.98 (8) | C7—O6—H6 | 104 (3) |
O5iii—Cs3—C5iii | 16.99 (8) | Cs3—O3—Cs3i | 84.71 (6) |
O5ii—Cs3—O11iv | 112.91 (8) | Cs3—O3—H3 | 104 (3) |
O5iii—Cs3—O11iv | 137.56 (8) | Cs3i—O3—H3 | 97 (3) |
O5ii—Cs3—H10B | 170.16 (6) | C2—O3—Cs3i | 118.4 (2) |
O5iii—Cs3—H10B | 92.89 (5) | C2—O3—Cs3 | 140.0 (2) |
C3i—Cs3—H3 | 120.8 (7) | C2—O3—H3 | 104 (3) |
C3i—Cs3—C4iii | 114.39 (8) | Cs1v—O2—Cs2vii | 94.98 (7) |
C3i—Cs3—H4iii | 115.30 (9) | Cs1v—O2—Cs2 | 87.62 (7) |
C3i—Cs3—C5iii | 106.54 (8) | Cs2vii—O2—Cs2 | 105.63 (7) |
C3i—Cs3—H10B | 102.53 (6) | C1—O2—Cs1v | 100.1 (2) |
C4iii—Cs3—H3 | 96.4 (5) | C1—O2—Cs2vii | 139.6 (2) |
C4iii—Cs3—H4iii | 11.881 (17) | C1—O2—Cs2 | 112.2 (2) |
C4iii—Cs3—H10B | 57.37 (6) | Cs1—O1—Cs1v | 117.10 (8) |
C12ii—Cs3—H3 | 77.0 (5) | Cs2v—O1—Cs1v | 81.57 (7) |
C12ii—Cs3—C3i | 77.26 (8) | Cs2v—O1—Cs1 | 88.99 (7) |
C12ii—Cs3—C4iii | 168.34 (8) | C1—O1—Cs1v | 85.3 (2) |
C12ii—Cs3—H4iii | 161.97 (9) | C1—O1—Cs1 | 117.9 (2) |
C12ii—Cs3—C5iii | 160.32 (9) | C1—O1—Cs2v | 153.1 (3) |
C12ii—Cs3—H10B | 121.32 (6) | Cs1—O9—Cs2 | 89.92 (7) |
C5iii—Cs3—H3 | 84.8 (5) | C8—O9—Cs1 | 125.9 (2) |
C5iii—Cs3—C4iii | 20.83 (8) | C8—O9—Cs2 | 144.2 (3) |
C5iii—Cs3—H4iii | 32.56 (9) | C3—O4—Cs3i | 105.0 (2) |
C5iii—Cs3—H10B | 77.27 (6) | Cs3viii—O7—Cs1vi | 82.27 (6) |
O11iv—Cs3—H3 | 144.9 (6) | Cs1viii—O7—Cs3viii | 119.45 (9) |
O11iv—Cs3—C3i | 65.80 (9) | Cs1viii—O7—Cs1vi | 106.73 (7) |
O11iv—Cs3—C4iii | 112.31 (8) | C12—O7—Cs3viii | 102.3 (2) |
O11iv—Cs3—H4iii | 101.43 (9) | C12—O7—Cs1vi | 117.4 (2) |
O11iv—Cs3—C12ii | 71.00 (9) | C12—O7—Cs1viii | 122.3 (2) |
O11iv—Cs3—C5iii | 128.45 (8) | Cs3—O8—Cs1iv | 87.11 (7) |
O11iv—Cs3—H10B | 57.30 (6) | Cs2vi—O8—Cs3 | 152.76 (10) |
H10B—Cs3—H4iii | 45.61 (7) | Cs2vi—O8—Cs1iv | 89.99 (8) |
Cs2v—Cs1—Cs2ii | 69.754 (8) | C10—O8—Cs3 | 89.7 (2) |
Cs2v—Cs1—H11C | 114.4 (9) | C10—O8—Cs1iv | 113.7 (3) |
Cs2ii—Cs1—H11C | 79.2 (7) | C10—O8—Cs2vi | 116.1 (2) |
O6ii—Cs1—Cs2v | 51.00 (6) | Cs3viii—O5—Cs3iii | 84.06 (7) |
O6ii—Cs1—Cs2ii | 53.80 (5) | C5—O5—Cs3iii | 113.4 (3) |
O6ii—Cs1—O2v | 73.89 (7) | C5—O5—Cs3viii | 154.9 (3) |
O6ii—Cs1—O1 | 84.92 (7) | O2—C1—Cs1v | 59.34 (19) |
O6ii—Cs1—O1v | 108.66 (7) | O2—C1—C2 | 117.9 (3) |
O6ii—Cs1—O9 | 131.88 (8) | O1—C1—Cs1v | 74.1 (2) |
O6ii—Cs1—O7vi | 120.26 (7) | O1—C1—O2 | 126.7 (4) |
O6ii—Cs1—O7ii | 51.44 (7) | O1—C1—C2 | 115.1 (3) |
O6ii—Cs1—O8iv | 74.31 (8) | C2—C1—Cs1v | 145.8 (2) |
O6ii—Cs1—C1v | 93.74 (8) | O9—C8—C9 | 125.6 (4) |
O6ii—Cs1—O11 | 146.15 (9) | O9—C8—C7 | 116.5 (3) |
O6ii—Cs1—H11C | 132.9 (7) | C9—C8—C7 | 117.7 (3) |
O2v—Cs1—Cs2ii | 42.74 (5) | C5—C6—H6A | 106.5 |
O2v—Cs1—Cs2v | 48.91 (5) | C5—C6—C2 | 105.0 (3) |
O2v—Cs1—O1 | 78.21 (7) | C5—C6—C7 | 112.1 (3) |
O2v—Cs1—O1v | 39.96 (7) | C2—C6—H6A | 106.5 |
O2v—Cs1—O7ii | 125.29 (7) | C2—C6—C7 | 119.5 (3) |
O2v—Cs1—O7vi | 153.46 (7) | C7—C6—H6A | 106.5 |
O2v—Cs1—O8iv | 80.95 (7) | O4—C3—Cs3i | 55.80 (19) |
O2v—Cs1—C1v | 20.59 (8) | O4—C3—C4 | 129.0 (4) |
O2v—Cs1—O11 | 83.05 (8) | O4—C3—C2 | 120.0 (3) |
O2v—Cs1—H11C | 68.9 (7) | C4—C3—Cs3i | 126.1 (3) |
O1v—Cs1—Cs2v | 64.01 (5) | C4—C3—C2 | 111.0 (3) |
O1—Cs1—Cs2ii | 111.78 (5) | C2—C3—Cs3i | 91.3 (2) |
O1—Cs1—Cs2v | 43.13 (5) | Cs3iii—C4—H4 | 45.9 |
O1v—Cs1—Cs2ii | 80.65 (5) | Cs2vii—C4—Cs3iii | 88.27 (9) |
O1—Cs1—O1v | 62.90 (8) | Cs2vii—C4—H4 | 83.2 |
O1—Cs1—O7vi | 122.87 (6) | C3—C4—Cs3iii | 166.0 (3) |
O1v—Cs1—O7vi | 130.89 (6) | C3—C4—Cs2vii | 101.3 (2) |
O1—Cs1—O8iv | 153.92 (7) | C3—C4—H4 | 124.5 |
O1—Cs1—C1v | 74.07 (8) | C3—C4—C5 | 110.9 (4) |
O1v—Cs1—C1v | 20.56 (8) | C5—C4—Cs3iii | 79.6 (2) |
O1—Cs1—H11C | 113.7 (13) | C5—C4—Cs2vii | 86.4 (2) |
O1v—Cs1—H11C | 54.7 (11) | C5—C4—H4 | 124.5 |
O9—Cs1—Cs2v | 103.49 (6) | O7—C12—Cs3viii | 58.9 (2) |
O9—Cs1—Cs2ii | 166.02 (5) | O7—C12—C7 | 123.0 (3) |
O9—Cs1—O2v | 123.54 (7) | O7—C12—C11 | 122.1 (4) |
O9—Cs1—O1v | 85.38 (7) | C7—C12—Cs3viii | 130.8 (2) |
O9—Cs1—O1 | 60.36 (7) | C11—C12—Cs3viii | 87.0 (2) |
O9—Cs1—O7ii | 95.52 (7) | C11—C12—C7 | 114.8 (3) |
O9—Cs1—O7vi | 65.96 (7) | O8—C10—Cs2vi | 46.68 (19) |
O9—Cs1—O8iv | 145.68 (8) | O8—C10—C9 | 123.9 (4) |
O9—Cs1—C1v | 105.93 (8) | O8—C10—C11 | 117.1 (3) |
O9—Cs1—O11 | 81.60 (9) | C9—C10—Cs2vi | 136.8 (3) |
O9—Cs1—H11C | 93.2 (9) | C9—C10—C11 | 119.0 (3) |
O7vi—Cs1—Cs2v | 157.61 (4) | C11—C10—Cs2vi | 85.4 (2) |
O7ii—Cs1—Cs2ii | 96.54 (5) | Cs2vii—C5—Cs3iii | 85.71 (8) |
O7ii—Cs1—Cs2v | 88.89 (5) | O5—C5—Cs3iii | 49.7 (2) |
O7vi—Cs1—Cs2ii | 124.62 (4) | O5—C5—Cs2vii | 94.9 (3) |
O7ii—Cs1—O1 | 93.36 (7) | O5—C5—C6 | 122.0 (4) |
O7ii—Cs1—O1v | 152.15 (7) | O5—C5—C4 | 128.7 (4) |
O7ii—Cs1—O7vi | 73.27 (7) | C6—C5—Cs3iii | 166.6 (3) |
O7ii—Cs1—O8iv | 85.99 (7) | C6—C5—Cs2vii | 106.5 (2) |
O7ii—Cs1—C1v | 144.43 (8) | C4—C5—Cs3iii | 79.6 (2) |
O7ii—Cs1—H11C | 152.3 (12) | C4—C5—Cs2vii | 71.7 (2) |
O7vi—Cs1—H11C | 86.6 (8) | C4—C5—C6 | 109.1 (3) |
O8iv—Cs1—Cs2ii | 42.74 (5) | C8—C9—H9 | 118.2 |
O8iv—Cs1—Cs2v | 110.82 (5) | C10—C9—C8 | 123.6 (4) |
O8iv—Cs1—O1v | 108.74 (7) | C10—C9—H9 | 118.2 |
O8iv—Cs1—O7vi | 81.92 (7) | O3—C2—C1 | 108.5 (3) |
O8iv—Cs1—C1v | 91.45 (8) | O3—C2—C6 | 110.3 (3) |
O8iv—Cs1—H11C | 72.3 (12) | O3—C2—C3 | 110.0 (3) |
C1v—Cs1—Cs2v | 58.99 (6) | C6—C2—C1 | 119.6 (3) |
C1v—Cs1—Cs2ii | 60.10 (6) | C3—C2—C1 | 105.4 (3) |
C1v—Cs1—O7vi | 141.46 (7) | C3—C2—C6 | 102.5 (3) |
C1v—Cs1—H11C | 55.4 (9) | O6—C7—C8 | 112.2 (3) |
O11—Cs1—Cs2ii | 92.50 (7) | O6—C7—C6 | 111.3 (3) |
O11—Cs1—Cs2v | 126.01 (7) | O6—C7—C12 | 109.0 (3) |
O11—Cs1—O1 | 114.59 (10) | C6—C7—C8 | 107.4 (3) |
O11—Cs1—O1v | 62.93 (9) | C12—C7—C8 | 106.6 (3) |
O11—Cs1—O7ii | 144.82 (9) | C12—C7—C6 | 110.2 (3) |
O11—Cs1—O7vi | 73.63 (8) | Cs3viii—C11—H11A | 74 (4) |
O11—Cs1—O8iv | 77.90 (10) | Cs3viii—C11—H11B | 66 (4) |
O11—Cs1—C1v | 67.86 (9) | C12—C11—Cs3viii | 70.4 (2) |
O11—Cs1—H11C | 14.7 (5) | C12—C11—C10 | 115.1 (3) |
Cs1v—Cs2—Cs1viii | 110.246 (8) | C12—C11—H11A | 109 (4) |
Cs1v—Cs2—Cs2vii | 55.920 (7) | C12—C11—H11B | 108 (4) |
Cs1viii—Cs2—Cs2vii | 54.326 (7) | C10—C11—Cs3viii | 170.9 (3) |
Cs1viii—Cs2—H6 | 49.8 (6) | C10—C11—H11A | 109 (4) |
Cs1v—Cs2—H6 | 73.8 (5) | C10—C11—H11B | 105 (4) |
Cs1v—Cs2—H11Avi | 134.6 (9) | H11A—C11—H11B | 111 (5) |
Cs1viii—Cs2—H11Avi | 88.2 (8) | Cs2ix—O10—H10A | 90.6 (4) |
Cs2vii—Cs2—H6 | 35.8 (8) | Cs2ix—O10—H10C | 88.7 (5) |
Cs2vii—Cs2—H11Avi | 125.4 (10) | Cs2ix—O10—H10B | 162.3 (4) |
O6vii—Cs2—Cs1viii | 86.72 (5) | H10A—O10—H10C | 105.2 (6) |
O6vii—Cs2—Cs1v | 41.36 (4) | H10A—O10—H10B | 90.2 (7) |
O6vii—Cs2—Cs2vii | 45.54 (5) | H10C—O10—H10B | 108.1 (6) |
O6vii—Cs2—C4vii | 65.30 (8) | Cs3iv—O11—H11C | 108 (5) |
O6vii—Cs2—C5vii | 47.03 (8) | Cs3iv—O11—H11D | 66.8 (3) |
O6vii—Cs2—H6 | 80.4 (7) | Cs1—O11—Cs3iv | 86.82 (11) |
O6vii—Cs2—H11Avi | 170.6 (11) | Cs1—O11—Cs2 | 84.38 (9) |
O2—Cs2—Cs1v | 43.46 (4) | Cs1—O11—H11C | 95 (5) |
O2—Cs2—Cs1viii | 77.79 (5) | Cs1—O11—H11D | 146.2 (3) |
O2vii—Cs2—Cs1viii | 42.28 (5) | Cs2—O11—Cs3iv | 145.17 (11) |
O2vii—Cs2—Cs1v | 81.75 (5) | Cs2—O11—H11C | 107 (5) |
O2—Cs2—Cs2vii | 35.40 (4) | Cs2—O11—H11D | 105.0 (3) |
O2vii—Cs2—Cs2vii | 38.98 (5) | H11C—O11—H11D | 112 (5) |
O2vii—Cs2—O6vii | 46.55 (7) | ||
Cs3i—O3—C2—C1 | 113.7 (3) | Cs2vi—O8—C10—C9 | −125.1 (3) |
Cs3—O3—C2—C1 | −127.6 (3) | Cs2vi—O8—C10—C11 | 52.6 (4) |
Cs3i—O3—C2—C6 | −113.5 (3) | Cs2vii—C4—C5—Cs3iii | −88.89 (7) |
Cs3—O3—C2—C6 | 5.2 (5) | Cs2vii—C4—C5—O5 | −81.4 (4) |
Cs3—O3—C2—C3 | 117.5 (3) | Cs2vii—C4—C5—C6 | 101.6 (3) |
Cs3i—O3—C2—C3 | −1.2 (4) | Cs2vi—C10—C9—C8 | 122.7 (4) |
Cs3i—O4—C3—C4 | 111.4 (4) | Cs2vi—C10—C11—C12 | −136.6 (3) |
Cs3i—O4—C3—C2 | −68.9 (3) | O2—C1—C2—O3 | 174.2 (3) |
Cs3viii—O7—C12—C7 | −121.3 (3) | O2—C1—C2—C6 | 46.6 (5) |
Cs3viii—O7—C12—C11 | 63.2 (4) | O2—C1—C2—C3 | −68.0 (4) |
Cs3—O8—C10—Cs2vi | −170.9 (2) | O1—C1—C2—O3 | −11.3 (4) |
Cs3—O8—C10—C9 | 64.0 (4) | O1—C1—C2—C6 | −138.9 (4) |
Cs3—O8—C10—C11 | −118.2 (3) | O1—C1—C2—C3 | 106.6 (4) |
Cs3viii—O5—C5—Cs3iii | −131.0 (7) | O9—C8—C9—C10 | −169.9 (4) |
Cs3iii—O5—C5—Cs2vii | −80.11 (18) | O9—C8—C7—O6 | 21.5 (5) |
Cs3viii—O5—C5—Cs2vii | 148.9 (6) | O9—C8—C7—C6 | −101.1 (4) |
Cs3iii—O5—C5—C6 | 167.0 (3) | O9—C8—C7—C12 | 140.8 (3) |
Cs3viii—O5—C5—C6 | 36.0 (9) | O4—C3—C4—Cs3iii | −36.1 (14) |
Cs3iii—O5—C5—C4 | −9.7 (5) | O4—C3—C4—Cs2vii | 96.2 (4) |
Cs3viii—O5—C5—C4 | −140.7 (5) | O4—C3—C4—C5 | −173.3 (4) |
Cs3i—C3—C4—Cs3iii | 36.2 (13) | O4—C3—C2—O3 | 51.4 (4) |
Cs3i—C3—C4—Cs2vii | 168.51 (16) | O4—C3—C2—C1 | −65.4 (4) |
Cs3i—C3—C4—C5 | −101.0 (4) | O4—C3—C2—C6 | 168.7 (3) |
Cs3i—C3—C2—O3 | 0.9 (3) | O7—C12—C7—O6 | 0.4 (5) |
Cs3i—C3—C2—C1 | −115.9 (2) | O7—C12—C7—C8 | −120.9 (4) |
Cs3i—C3—C2—C6 | 118.2 (2) | O7—C12—C7—C6 | 122.8 (4) |
Cs3iii—C4—C5—Cs2vii | 88.89 (7) | O7—C12—C11—Cs3viii | −49.9 (3) |
Cs3iii—C4—C5—O5 | 7.5 (4) | O7—C12—C11—C10 | 137.9 (4) |
Cs3iii—C4—C5—C6 | −169.5 (3) | O8—C10—C9—C8 | −176.8 (4) |
Cs3viii—C12—C7—O6 | −74.9 (4) | O8—C10—C11—C12 | −172.1 (3) |
Cs3viii—C12—C7—C8 | 163.8 (2) | C3—C4—C5—Cs3iii | 170.3 (3) |
Cs3viii—C12—C7—C6 | 47.5 (4) | C3—C4—C5—Cs2vii | −100.8 (3) |
Cs3viii—C12—C11—C10 | −172.2 (3) | C3—C4—C5—O5 | 177.9 (4) |
Cs1viii—O6—C7—C8 | 98.4 (3) | C3—C4—C5—C6 | 0.9 (5) |
Cs1viii—O6—C7—C6 | −141.2 (2) | C4—C3—C2—O3 | −128.8 (3) |
Cs1viii—O6—C7—C12 | −19.4 (4) | C4—C3—C2—C1 | 114.3 (3) |
Cs1v—O2—C1—O1 | −33.0 (4) | C4—C3—C2—C6 | −11.6 (4) |
Cs1v—O2—C1—C2 | 140.8 (3) | C5—C6—C2—O3 | 128.3 (3) |
Cs1—O1—C1—Cs1v | −118.30 (17) | C5—C6—C2—C1 | −104.8 (4) |
Cs1—O1—C1—O2 | −89.1 (4) | C5—C6—C2—C3 | 11.2 (4) |
Cs1v—O1—C1—O2 | 29.2 (4) | C5—C6—C7—O6 | 52.1 (4) |
Cs1—O1—C1—C2 | 96.9 (3) | C5—C6—C7—C8 | 175.3 (3) |
Cs1v—O1—C1—C2 | −144.8 (3) | C5—C6—C7—C12 | −69.0 (4) |
Cs1—O9—C8—C9 | −29.9 (5) | C9—C8—C7—O6 | −163.5 (3) |
Cs1—O9—C8—C7 | 144.6 (2) | C9—C8—C7—C6 | 73.9 (4) |
Cs1viii—O7—C12—Cs3viii | 137.1 (3) | C9—C8—C7—C12 | −44.2 (4) |
Cs1vi—O7—C12—Cs3viii | −87.59 (17) | C9—C10—C11—C12 | 5.7 (5) |
Cs1viii—O7—C12—C7 | 15.9 (5) | C2—C6—C5—Cs3iii | −137.3 (10) |
Cs1vi—O7—C12—C7 | 151.2 (3) | C2—C6—C5—Cs2vii | 67.8 (3) |
Cs1viii—O7—C12—C11 | −159.7 (3) | C2—C6—C5—O5 | 174.7 (4) |
Cs1vi—O7—C12—C11 | −24.4 (5) | C2—C6—C5—C4 | −8.1 (4) |
Cs1iv—O8—C10—Cs2vi | 102.4 (2) | C2—C6—C7—O6 | −71.4 (4) |
Cs1iv—O8—C10—C9 | −22.7 (5) | C2—C6—C7—C8 | 51.8 (4) |
Cs1iv—O8—C10—C11 | 155.1 (3) | C2—C6—C7—C12 | 167.6 (3) |
Cs1v—C1—C2—O3 | −110.0 (4) | C2—C3—C4—Cs3iii | 144.2 (10) |
Cs1v—C1—C2—C6 | 122.3 (4) | C2—C3—C4—Cs2vii | −83.5 (3) |
Cs1v—C1—C2—C3 | 7.8 (5) | C2—C3—C4—C5 | 7.0 (5) |
Cs2vii—O6—C7—C8 | −129.2 (3) | C7—C8—C9—C10 | 15.6 (6) |
Cs2vii—O6—C7—C6 | −8.8 (4) | C7—C6—C5—Cs3iii | 91.5 (11) |
Cs2vii—O6—C7—C12 | 113.0 (3) | C7—C6—C5—Cs2vii | −63.5 (3) |
Cs2vii—O2—C1—Cs1v | −110.1 (3) | C7—C6—C5—O5 | 43.4 (5) |
Cs2—O2—C1—Cs1v | 91.56 (15) | C7—C6—C5—C4 | −139.3 (3) |
Cs2vii—O2—C1—O1 | −143.2 (3) | C7—C6—C2—O3 | −104.8 (4) |
Cs2—O2—C1—O1 | 58.5 (5) | C7—C6—C2—C1 | 22.0 (5) |
Cs2—O2—C1—C2 | −127.7 (3) | C7—C6—C2—C3 | 138.1 (3) |
Cs2vii—O2—C1—C2 | 30.6 (5) | C7—C12—C11—Cs3viii | 134.2 (3) |
Cs2v—O1—C1—Cs1v | 61.0 (5) | C7—C12—C11—C10 | −38.0 (5) |
Cs2v—O1—C1—O2 | 90.1 (6) | C11—C12—C7—O6 | 176.3 (3) |
Cs2v—O1—C1—C2 | −83.8 (6) | C11—C12—C7—C8 | 55.0 (4) |
Cs2—O9—C8—C9 | 152.0 (3) | C11—C12—C7—C6 | −61.3 (4) |
Cs2—O9—C8—C7 | −33.4 (6) | C11—C10—C9—C8 | 5.5 (6) |
Symmetry codes: (i) −x+2, −y+1, −z; (ii) x+1, y, z; (iii) −x+1, −y+1, −z; (iv) −x+2, −y+1, −z+1; (v) −x+2, −y, −z+1; (vi) −x+1, −y+1, −z+1; (vii) −x+1, −y, −z+1; (viii) x−1, y, z; (ix) x, y+1, z−1. |
Acknowledgements
The authors gratefully acknowledge the support of staff and students of Scotch College Melbourne and Melbourne Girls' College. Open access publishing facilitated by The University of Melbourne, as part of the Wiley–The University of Melbourne agreement via the Council of Australian University Librarians.
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