metal-organic compounds
Diaquatris(nitrato-κ2O,O′){2,2′-[pyridine-2,6-diylbis(methyleneoxy)]dibenzaldehyde-κO1}dysprosium(III)–2,2′-[pyridine-2,6-diylbis(methyleneoxy)]dibenzaldehyde (1/1)
aUniversidad Autónoma de Nuevo León, UANL, Facultad de Ciencias Químicas, Av. Universidad S/N, Ciudad Universitaria, San Nicolás de los Garza, Nuevo León CP 66451, Mexico, and bFacultad de Química, Universidad Nacional Autónoma de México, México, D.F. 04510, Mexico
*Correspondence e-mail: sylvain_bernes@hotmail.com
The title compound, [Dy(NO3)3(C21H17NO4)(H2O)2]·C21H17NO4, may be considered as an organic–metalorganic 1:1 in which the two dialdehyde molecules act as a ligand and as an organic moiety, respectively. The DyIII atom coordinates nine O atoms from the organic ligand, bidentate nitrate ions and water molecules, approximating a square-face-tricapped trigonal–prismatic geometry. The coordinated dialdehyde is not planar: the uncoordinated oxybenzaldehyde group is twisted by 39.96 (4)° from the rest of the ligand. In contrast, the free organic moiety is almost planar, with an r.m.s. deviation of 0.15 Å. In the crystal, segregated stacks of dialdehyde are formed in the [100] direction. For the complex, the shortest π–π contact is found at 3.781 (2) Å, and for the free ligand, at 3.785 (2) Å. The is further stabilized by O—H⋯O and O—H⋯N hydrogen bonds in which coordinated water molecules are the donor groups.
Related literature
For the X-ray structure of the free ligand and other rare-earth complexes based on this ligand, see: Rodríguez De Luna et al. (2010). For isotypic complexes, see: Garza Rodríguez (2010). For the nomenclature of 9-coordinated metal centers, see: IUPAC (2005).
Experimental
Crystal data
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Refinement
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Data collection: CrysAlis CCD (Agilent, 2010); cell CrysAlis CCD (Agilent, 2010); data reduction: CrysAlis RED; program(s) used to solve structure: SHELXS97 (Sheldrick, 2008); program(s) used to refine structure: SHELXL97 (Sheldrick, 2008); molecular graphics: SHELXTL (Sheldrick, 2008) and Mercury (Macrae et al., 2008); software used to prepare material for publication: SHELXTL.
Supporting information
https://doi.org/10.1107/S160053681203680X/vn2050sup1.cif
contains datablocks I, global. DOI:Structure factors: contains datablock I. DOI: https://doi.org/10.1107/S160053681203680X/vn2050Isup2.hkl
The title compound was obtained by mixing 2,2'-[pyridine-2,6-diyl-bis(methyleneoxy)]dibenzaldehyde (L, 50 mg in 15 ml of acetonitrile) and Dy(NO3)3.5H2O (100 mg in 2 ml of acetonitrile), at room temperature. The mixture was refluxed for 5 h and then cooled to room temperature. After evaporation of the solvent, a few crystals of the complex were collected.
C-bound H atoms were placed in idealized positions, with C—H bond lengths fixed to 0.95 (aromatic CH) or 0.99 Å (methylene CH2). In the case of coordinated water molecules, H atoms were clearly detected in a difference map, and refined freely. Final O—H bond lengths span the range 0.71 (3)–0.86 (3) Å. Isotropic displacement parameters for H atoms were calculated as Uiso(H) = 1.2Ueq(carrier atom).
Lanthanides (Ln) are well known for giving high and rather unpredictable coordination numbers, in the range 8 to 12. For example, in the case of O-donor ligands, the coordination sphere may be completed by water molecules. Such modifications are reflected in the flexible coordination geometry of these complexes, which, in turn, has consequences on the physical properties characteristics of these metals.
While working on the synthesis of an isotypic series of LnIII complexes with photoluminescent properties (Rodríguez De Luna et al., 2010), we realised that, occasionally, a by-product crystallized with the desired complex, although elemental analysis systematically matched the expected formula. The desired complex had formula [LnIIIL2(NO3)3(H2O)2] where L is a monodentate dialdehyde ligand, 2,2'-[pyridine-2,6-diyl-bis(methyleneoxy)]dibenzaldehyde, giving a 1, is isoformular, although the is reduced to 9, because one L ligand, present in the is not coordinated to the metal. The resulting formula is then [LnIIIL(NO3)3(H2O)2].L, which may be seen as an organic-metalorganic system.
of 10 for the metal. This compound crystallizes readily in C2/c. The crystallographic analysis revealed that the by-product, which crystallizes in PSo far, we have detected the presence of this new complex with Ln = HoIII, TbIII and DyIII, on the basis of unit-cell parameters (Garza Rodríguez, 2010). The X-ray characterization is however complicated by the very low yield and the poor quality of single crystals we have obtained. The present report is for Ln = DyIII, which gave a suitable refinement.
The
contains one complex and one free ligand (Fig. 1). The DyIII atom is bonded to the monodentate L ligand, three bidentate nitrate ions, and two water molecules, forming nine Dy—O bonds in the range 2.320 (2)–2.460 (2) Å. The resulting coordination geometry approximates a square-face-tricapped trigonal prismatic polyhedron (polyhedral symbol in the IUPAC nomenclature: TPRS-9; IUPAC, 2005), with distortions from the ideal D3h symmetry induced by the nitrate bite angles (Fig. 1, inset). The organic ligand is not planar, and the peripheral ring, C15···C21/O3/O4 is twisted by 39.96 (4)° from the rest of the ligand. The free ligand is more planar, and presents a conformation reminiscent of that observed in the of pure L (Rodríguez De Luna et al., 2010).The π···π interactions between pyridine rings in the range 3.785 (2)–4.528 (2) Å. Because of the deviation from planarity of the whole molecule, benzaldehyde rings are less engaged in π···π interactions, with centroid-to-centroid separations in the range 4.139 (3)–5.156 (3) Å. L ligands bonded to the metals also interact in the same direction, and the most favorable π···π separation is found at 3.781 (2) Å.
features segregated stacks for organic and metalorganic moieties (Fig. 2). The free organic molecules are stacked in the [100] direction withFor the X-ray structure of the free ligand and other rare-earth complexes based on this ligand, see: Rodríguez De Luna et al. (2010). For isotypic complexes, see: Garza Rodríguez (2010). For the nomenclature of 9-coordinated metal centers, see: IUPAC (2005).
Data collection: CrysAlis CCD (Agilent, 2010); cell
CrysAlis CCD (Agilent, 2010); data reduction: CrysAlis RED (Agilent, 2010); program(s) used to solve structure: SHELXS97 (Sheldrick, 2008); program(s) used to refine structure: SHELXL97 (Sheldrick, 2008); molecular graphics: SHELXTL (Sheldrick, 2008) and Mercury (Macrae et al., 2008); software used to prepare material for publication: SHELXTL (Sheldrick, 2008).[Dy(NO3)3(C21H17NO4)(H2O)2]·C21H17NO4 | Z = 2 |
Mr = 1079.27 | F(000) = 1086 |
Triclinic, P1 | Dx = 1.677 Mg m−3 |
Hall symbol: -P 1 | Mo Kα radiation, λ = 0.71073 Å |
a = 7.7552 (3) Å | Cell parameters from 6816 reflections |
b = 16.1249 (8) Å | θ = 3.4–26.0° |
c = 17.7178 (7) Å | µ = 1.84 mm−1 |
α = 75.531 (4)° | T = 136 K |
β = 85.173 (3)° | Irregular, colourless |
γ = 88.398 (4)° | 0.43 × 0.26 × 0.12 mm |
V = 2137.71 (16) Å3 |
Agilent Xcalibur Atlas Gemini diffractometer | 8436 independent reflections |
Radiation source: Enhance (Mo) X-ray Source | 7464 reflections with I > 2σ(I) |
Graphite monochromator | Rint = 0.034 |
Detector resolution: 10.4685 pixels mm-1 | θmax = 26.1°, θmin = 3.4° |
φ and ω scans | h = −9→9 |
Absorption correction: analytical [CrysAlis PRO (Agilent, 2010); based on expressions derived by Clark & Reid (1995)] | k = −19→19 |
Tmin = 0.599, Tmax = 0.816 | l = −20→21 |
15907 measured reflections |
Refinement on F2 | Primary atom site location: structure-invariant direct methods |
Least-squares matrix: full | Secondary atom site location: difference Fourier map |
R[F2 > 2σ(F2)] = 0.030 | Hydrogen site location: inferred from neighbouring sites |
wR(F2) = 0.066 | H atoms treated by a mixture of independent and constrained refinement |
S = 1.05 | w = 1/[σ2(Fo2) + (0.021P)2 + 0.3171P] where P = (Fo2 + 2Fc2)/3 |
8436 reflections | (Δ/σ)max = 0.001 |
616 parameters | Δρmax = 0.95 e Å−3 |
0 restraints | Δρmin = −0.88 e Å−3 |
0 constraints |
[Dy(NO3)3(C21H17NO4)(H2O)2]·C21H17NO4 | γ = 88.398 (4)° |
Mr = 1079.27 | V = 2137.71 (16) Å3 |
Triclinic, P1 | Z = 2 |
a = 7.7552 (3) Å | Mo Kα radiation |
b = 16.1249 (8) Å | µ = 1.84 mm−1 |
c = 17.7178 (7) Å | T = 136 K |
α = 75.531 (4)° | 0.43 × 0.26 × 0.12 mm |
β = 85.173 (3)° |
Agilent Xcalibur Atlas Gemini diffractometer | 8436 independent reflections |
Absorption correction: analytical [CrysAlis PRO (Agilent, 2010); based on expressions derived by Clark & Reid (1995)] | 7464 reflections with I > 2σ(I) |
Tmin = 0.599, Tmax = 0.816 | Rint = 0.034 |
15907 measured reflections |
R[F2 > 2σ(F2)] = 0.030 | 0 restraints |
wR(F2) = 0.066 | H atoms treated by a mixture of independent and constrained refinement |
S = 1.05 | Δρmax = 0.95 e Å−3 |
8436 reflections | Δρmin = −0.88 e Å−3 |
616 parameters |
x | y | z | Uiso*/Ueq | ||
Dy1 | 0.314191 (17) | 0.208885 (9) | 0.209569 (8) | 0.01740 (6) | |
O1 | 0.3943 (3) | 0.27312 (13) | 0.07188 (12) | 0.0234 (5) | |
O2 | 0.2481 (3) | 0.50508 (13) | −0.02862 (12) | 0.0256 (5) | |
O3 | −0.1020 (3) | 0.86057 (13) | 0.08702 (12) | 0.0264 (5) | |
O4 | 0.0259 (3) | 0.97127 (14) | 0.24948 (13) | 0.0313 (5) | |
N1 | 0.0247 (3) | 0.69668 (15) | −0.00696 (14) | 0.0161 (5) | |
C1 | 0.3563 (4) | 0.3456 (2) | 0.03692 (18) | 0.0211 (7) | |
H1A | 0.2981 | 0.3812 | 0.0665 | 0.025* | |
C2 | 0.3930 (4) | 0.38191 (18) | −0.04627 (17) | 0.0165 (6) | |
C3 | 0.4822 (4) | 0.3355 (2) | −0.09437 (18) | 0.0207 (7) | |
H3A | 0.5236 | 0.2795 | −0.0722 | 0.025* | |
C4 | 0.5106 (4) | 0.3703 (2) | −0.17365 (19) | 0.0259 (7) | |
H4A | 0.5723 | 0.3388 | −0.2060 | 0.031* | |
C5 | 0.4485 (4) | 0.4517 (2) | −0.20566 (19) | 0.0279 (8) | |
H5A | 0.4674 | 0.4754 | −0.2604 | 0.033* | |
C6 | 0.3594 (4) | 0.4993 (2) | −0.15972 (19) | 0.0245 (7) | |
H6A | 0.3174 | 0.5551 | −0.1826 | 0.029* | |
C7 | 0.3324 (4) | 0.46446 (19) | −0.07995 (18) | 0.0194 (7) | |
C8 | 0.1760 (4) | 0.58838 (18) | −0.05739 (18) | 0.0210 (7) | |
H8A | 0.0827 | 0.5856 | −0.0915 | 0.025* | |
H8B | 0.2663 | 0.6278 | −0.0883 | 0.025* | |
C9 | 0.1047 (4) | 0.61991 (18) | 0.01229 (17) | 0.0164 (6) | |
C10 | 0.1242 (4) | 0.57589 (19) | 0.08854 (18) | 0.0208 (7) | |
H10A | 0.1813 | 0.5218 | 0.1000 | 0.025* | |
C11 | 0.0588 (4) | 0.6122 (2) | 0.14780 (18) | 0.0240 (7) | |
H11A | 0.0693 | 0.5830 | 0.2009 | 0.029* | |
C12 | −0.0220 (4) | 0.6911 (2) | 0.12971 (18) | 0.0221 (7) | |
H12A | −0.0668 | 0.7171 | 0.1699 | 0.027* | |
C13 | −0.0365 (4) | 0.73145 (18) | 0.05210 (17) | 0.0175 (6) | |
C14 | −0.1237 (4) | 0.81730 (18) | 0.02744 (17) | 0.0185 (6) | |
H14A | −0.0699 | 0.8503 | −0.0235 | 0.022* | |
H14B | −0.2482 | 0.8101 | 0.0222 | 0.022* | |
C15 | −0.1588 (4) | 0.94333 (19) | 0.07654 (18) | 0.0213 (7) | |
C16 | −0.2499 (4) | 0.9860 (2) | 0.01378 (19) | 0.0230 (7) | |
H16A | −0.2743 | 0.9586 | −0.0257 | 0.028* | |
C17 | −0.3046 (4) | 1.0697 (2) | 0.0099 (2) | 0.0261 (7) | |
H17A | −0.3662 | 1.0995 | −0.0330 | 0.031* | |
C18 | −0.2714 (4) | 1.1104 (2) | 0.0669 (2) | 0.0291 (8) | |
H18A | −0.3119 | 1.1672 | 0.0639 | 0.035* | |
C19 | −0.1788 (4) | 1.06780 (19) | 0.12838 (19) | 0.0245 (7) | |
H19A | −0.1550 | 1.0959 | 0.1675 | 0.029* | |
C20 | −0.1196 (4) | 0.98422 (19) | 0.13412 (18) | 0.0202 (7) | |
C21 | −0.0134 (4) | 0.9414 (2) | 0.19675 (19) | 0.0261 (7) | |
H21A | 0.0286 | 0.8855 | 0.1963 | 0.031* | |
O5 | 0.0475 (3) | 0.24740 (15) | 0.15929 (14) | 0.0233 (5) | |
H51 | 0.026 (4) | 0.259 (2) | 0.117 (2) | 0.028* | |
H52 | −0.029 (4) | 0.244 (2) | 0.187 (2) | 0.028* | |
O6 | 0.1312 (3) | 0.11311 (14) | 0.29763 (13) | 0.0206 (5) | |
H61 | 0.092 (5) | 0.079 (2) | 0.286 (2) | 0.025* | |
H62 | 0.150 (4) | 0.097 (2) | 0.346 (2) | 0.025* | |
N2 | 0.2136 (4) | 0.36004 (18) | 0.25775 (16) | 0.0277 (6) | |
N3 | 0.6425 (3) | 0.22608 (17) | 0.26502 (16) | 0.0239 (6) | |
N4 | 0.3919 (3) | 0.04582 (16) | 0.17732 (15) | 0.0228 (6) | |
O7 | 0.3260 (3) | 0.36027 (13) | 0.20041 (13) | 0.0285 (5) | |
O8 | 0.1607 (3) | 0.28687 (13) | 0.29638 (12) | 0.0251 (5) | |
O9 | 0.1582 (4) | 0.42612 (15) | 0.27163 (16) | 0.0473 (7) | |
O10 | 0.6228 (3) | 0.24169 (14) | 0.19230 (12) | 0.0252 (5) | |
O11 | 0.5087 (3) | 0.20311 (14) | 0.31135 (12) | 0.0239 (5) | |
O12 | 0.7836 (3) | 0.23299 (18) | 0.28843 (15) | 0.0424 (7) | |
O13 | 0.4666 (3) | 0.07017 (13) | 0.22969 (12) | 0.0250 (5) | |
O14 | 0.2866 (3) | 0.10068 (13) | 0.13961 (12) | 0.0242 (5) | |
O15 | 0.4164 (3) | −0.02375 (13) | 0.16444 (13) | 0.0301 (5) | |
O51 | 0.6068 (4) | 0.64204 (18) | 0.57161 (17) | 0.0580 (8) | |
O52 | 0.4043 (3) | 0.85788 (14) | 0.45072 (13) | 0.0301 (5) | |
O53 | −0.0234 (3) | 1.21517 (14) | 0.53723 (13) | 0.0331 (6) | |
O54 | −0.1747 (3) | 1.27365 (19) | 0.73601 (16) | 0.0518 (8) | |
N51 | 0.1880 (3) | 1.05765 (15) | 0.45113 (14) | 0.0179 (5) | |
C51 | 0.5413 (5) | 0.7050 (2) | 0.5331 (2) | 0.0361 (9) | |
H51A | 0.4657 | 0.7376 | 0.5597 | 0.043* | |
C52 | 0.5697 (4) | 0.7354 (2) | 0.4473 (2) | 0.0274 (8) | |
C53 | 0.6692 (5) | 0.6861 (2) | 0.4054 (2) | 0.0374 (9) | |
H53A | 0.7203 | 0.6341 | 0.4326 | 0.045* | |
C54 | 0.6948 (5) | 0.7116 (3) | 0.3246 (2) | 0.0444 (10) | |
H54A | 0.7638 | 0.6778 | 0.2966 | 0.053* | |
C55 | 0.6194 (5) | 0.7863 (2) | 0.2855 (2) | 0.0365 (9) | |
H55A | 0.6358 | 0.8036 | 0.2300 | 0.044* | |
C56 | 0.5196 (4) | 0.8369 (2) | 0.3254 (2) | 0.0285 (8) | |
H56A | 0.4681 | 0.8885 | 0.2976 | 0.034* | |
C57 | 0.4961 (4) | 0.8113 (2) | 0.40600 (19) | 0.0239 (7) | |
C58 | 0.3267 (4) | 0.93714 (19) | 0.41339 (18) | 0.0219 (7) | |
H58A | 0.2264 | 0.9267 | 0.3861 | 0.026* | |
H58B | 0.4114 | 0.9726 | 0.3745 | 0.026* | |
C59 | 0.2691 (4) | 0.98224 (19) | 0.47611 (17) | 0.0182 (6) | |
C60 | 0.2996 (4) | 0.9489 (2) | 0.55383 (18) | 0.0223 (7) | |
H60A | 0.3567 | 0.8952 | 0.5699 | 0.027* | |
C61 | 0.2456 (4) | 0.9951 (2) | 0.60731 (18) | 0.0247 (7) | |
H61A | 0.2641 | 0.9734 | 0.6610 | 0.030* | |
C62 | 0.1645 (4) | 1.0730 (2) | 0.58215 (18) | 0.0226 (7) | |
H62A | 0.1284 | 1.1062 | 0.6181 | 0.027* | |
C63 | 0.1363 (4) | 1.10250 (19) | 0.50375 (17) | 0.0178 (6) | |
C64 | 0.0520 (4) | 1.18726 (19) | 0.47187 (18) | 0.0226 (7) | |
H64A | 0.1388 | 1.2290 | 0.4415 | 0.027* | |
H64B | −0.0379 | 1.1812 | 0.4372 | 0.027* | |
C65 | −0.0895 (4) | 1.2957 (2) | 0.5271 (2) | 0.0305 (8) | |
C66 | −0.1002 (6) | 1.3522 (2) | 0.4560 (2) | 0.0495 (11) | |
H66A | −0.0590 | 1.3371 | 0.4092 | 0.059* | |
C67 | −0.1727 (9) | 1.4322 (3) | 0.4539 (3) | 0.099 (2) | |
H67A | −0.1809 | 1.4725 | 0.4050 | 0.118* | |
C68 | −0.2332 (9) | 1.4540 (3) | 0.5219 (4) | 0.105 (2) | |
H68A | −0.2861 | 1.5084 | 0.5191 | 0.126* | |
C69 | −0.2182 (6) | 1.3984 (3) | 0.5933 (3) | 0.0601 (13) | |
H69A | −0.2561 | 1.4151 | 0.6398 | 0.072* | |
C70 | −0.1479 (4) | 1.3182 (2) | 0.5976 (2) | 0.0332 (8) | |
C71 | −0.1374 (4) | 1.2578 (3) | 0.6730 (2) | 0.0374 (9) | |
H71A | −0.0982 | 1.2014 | 0.6732 | 0.045* |
U11 | U22 | U33 | U12 | U13 | U23 | |
Dy1 | 0.01950 (8) | 0.01749 (9) | 0.01499 (8) | 0.00244 (6) | −0.00209 (6) | −0.00368 (6) |
O1 | 0.0267 (11) | 0.0203 (12) | 0.0201 (12) | 0.0047 (10) | −0.0035 (10) | 0.0006 (9) |
O2 | 0.0428 (13) | 0.0166 (11) | 0.0159 (11) | 0.0112 (10) | 0.0027 (10) | −0.0040 (9) |
O3 | 0.0444 (14) | 0.0177 (12) | 0.0212 (12) | 0.0081 (10) | −0.0105 (10) | −0.0107 (10) |
O4 | 0.0441 (14) | 0.0335 (14) | 0.0193 (12) | −0.0114 (11) | 0.0020 (11) | −0.0122 (10) |
N1 | 0.0185 (12) | 0.0154 (13) | 0.0158 (13) | 0.0002 (10) | −0.0013 (10) | −0.0062 (11) |
C1 | 0.0221 (16) | 0.0213 (17) | 0.0204 (17) | 0.0013 (13) | 0.0009 (13) | −0.0069 (14) |
C2 | 0.0163 (14) | 0.0161 (15) | 0.0161 (16) | −0.0004 (12) | 0.0028 (12) | −0.0036 (12) |
C3 | 0.0202 (15) | 0.0203 (16) | 0.0231 (17) | 0.0006 (13) | 0.0013 (13) | −0.0089 (14) |
C4 | 0.0267 (17) | 0.0289 (19) | 0.0245 (18) | 0.0006 (15) | 0.0077 (14) | −0.0145 (15) |
C5 | 0.0331 (18) | 0.033 (2) | 0.0169 (17) | −0.0031 (15) | 0.0046 (14) | −0.0064 (15) |
C6 | 0.0295 (17) | 0.0226 (17) | 0.0194 (17) | 0.0033 (14) | 0.0037 (14) | −0.0035 (14) |
C7 | 0.0221 (15) | 0.0179 (16) | 0.0193 (16) | −0.0020 (13) | 0.0011 (13) | −0.0070 (13) |
C8 | 0.0279 (16) | 0.0150 (16) | 0.0186 (16) | 0.0029 (13) | −0.0007 (13) | −0.0022 (13) |
C9 | 0.0179 (14) | 0.0174 (16) | 0.0152 (15) | −0.0031 (12) | 0.0012 (12) | −0.0070 (12) |
C10 | 0.0276 (16) | 0.0144 (16) | 0.0207 (17) | 0.0021 (13) | −0.0061 (14) | −0.0040 (13) |
C11 | 0.0337 (18) | 0.0238 (18) | 0.0160 (16) | 0.0006 (15) | −0.0061 (14) | −0.0063 (14) |
C12 | 0.0277 (16) | 0.0223 (17) | 0.0190 (17) | 0.0022 (14) | −0.0005 (14) | −0.0107 (14) |
C13 | 0.0182 (15) | 0.0184 (16) | 0.0176 (16) | −0.0016 (12) | −0.0035 (13) | −0.0070 (13) |
C14 | 0.0244 (16) | 0.0187 (16) | 0.0151 (15) | 0.0039 (13) | −0.0039 (13) | −0.0089 (13) |
C15 | 0.0246 (16) | 0.0170 (16) | 0.0222 (17) | 0.0002 (13) | 0.0055 (14) | −0.0074 (13) |
C16 | 0.0232 (16) | 0.0235 (17) | 0.0230 (17) | 0.0008 (14) | −0.0011 (14) | −0.0076 (14) |
C17 | 0.0236 (16) | 0.0246 (18) | 0.0294 (19) | 0.0028 (14) | 0.0017 (15) | −0.0067 (15) |
C18 | 0.0270 (17) | 0.0197 (17) | 0.041 (2) | 0.0015 (14) | 0.0062 (16) | −0.0111 (16) |
C19 | 0.0246 (16) | 0.0228 (17) | 0.0286 (19) | −0.0055 (14) | 0.0079 (14) | −0.0136 (15) |
C20 | 0.0231 (15) | 0.0201 (16) | 0.0177 (16) | −0.0036 (13) | 0.0063 (13) | −0.0078 (13) |
C21 | 0.0332 (18) | 0.0243 (18) | 0.0219 (18) | −0.0039 (15) | 0.0044 (15) | −0.0093 (15) |
O5 | 0.0219 (12) | 0.0332 (13) | 0.0132 (12) | 0.0063 (10) | −0.0001 (10) | −0.0037 (11) |
O6 | 0.0272 (12) | 0.0218 (13) | 0.0137 (11) | −0.0034 (10) | −0.0024 (10) | −0.0053 (10) |
N2 | 0.0370 (16) | 0.0272 (17) | 0.0196 (15) | 0.0022 (13) | −0.0014 (13) | −0.0077 (13) |
N3 | 0.0205 (14) | 0.0262 (15) | 0.0253 (16) | 0.0043 (12) | −0.0045 (12) | −0.0062 (12) |
N4 | 0.0302 (15) | 0.0198 (15) | 0.0170 (14) | 0.0022 (12) | 0.0039 (12) | −0.0045 (12) |
O7 | 0.0399 (13) | 0.0237 (12) | 0.0209 (12) | −0.0045 (10) | 0.0055 (11) | −0.0060 (10) |
O8 | 0.0316 (12) | 0.0209 (12) | 0.0205 (12) | −0.0005 (10) | −0.0007 (10) | −0.0011 (10) |
O9 | 0.077 (2) | 0.0240 (14) | 0.0404 (16) | 0.0164 (14) | 0.0043 (14) | −0.0112 (12) |
O10 | 0.0271 (12) | 0.0312 (13) | 0.0158 (12) | −0.0012 (10) | −0.0016 (9) | −0.0029 (10) |
O11 | 0.0202 (11) | 0.0332 (13) | 0.0176 (12) | 0.0012 (10) | −0.0009 (9) | −0.0055 (10) |
O12 | 0.0208 (12) | 0.0715 (19) | 0.0357 (15) | −0.0012 (12) | −0.0079 (11) | −0.0128 (14) |
O13 | 0.0272 (12) | 0.0265 (12) | 0.0228 (12) | 0.0061 (10) | −0.0047 (10) | −0.0090 (10) |
O14 | 0.0349 (12) | 0.0212 (12) | 0.0161 (11) | 0.0071 (10) | −0.0061 (10) | −0.0033 (9) |
O15 | 0.0445 (14) | 0.0171 (12) | 0.0293 (13) | 0.0045 (10) | 0.0012 (11) | −0.0086 (10) |
O51 | 0.084 (2) | 0.0463 (17) | 0.0405 (17) | 0.0355 (17) | −0.0179 (16) | −0.0053 (14) |
O52 | 0.0435 (14) | 0.0244 (12) | 0.0208 (12) | 0.0154 (11) | −0.0006 (11) | −0.0049 (10) |
O53 | 0.0537 (15) | 0.0250 (13) | 0.0215 (13) | 0.0138 (11) | 0.0022 (11) | −0.0104 (10) |
O54 | 0.0451 (16) | 0.084 (2) | 0.0402 (17) | 0.0168 (15) | −0.0043 (13) | −0.0427 (16) |
N51 | 0.0216 (13) | 0.0179 (13) | 0.0140 (13) | −0.0004 (11) | −0.0001 (11) | −0.0041 (11) |
C51 | 0.049 (2) | 0.031 (2) | 0.029 (2) | 0.0160 (18) | −0.0084 (18) | −0.0084 (17) |
C52 | 0.0276 (17) | 0.0278 (19) | 0.0288 (19) | 0.0035 (15) | −0.0062 (15) | −0.0099 (15) |
C53 | 0.041 (2) | 0.030 (2) | 0.042 (2) | 0.0139 (17) | −0.0028 (18) | −0.0109 (18) |
C54 | 0.049 (2) | 0.042 (2) | 0.045 (3) | 0.0113 (19) | 0.010 (2) | −0.021 (2) |
C55 | 0.043 (2) | 0.040 (2) | 0.028 (2) | −0.0011 (18) | 0.0044 (17) | −0.0139 (17) |
C56 | 0.0352 (19) | 0.0259 (18) | 0.0248 (19) | 0.0005 (15) | 0.0009 (15) | −0.0080 (15) |
C57 | 0.0238 (16) | 0.0230 (17) | 0.0273 (18) | 0.0005 (14) | −0.0008 (14) | −0.0112 (15) |
C58 | 0.0262 (16) | 0.0202 (17) | 0.0186 (17) | 0.0056 (14) | −0.0034 (13) | −0.0038 (13) |
C59 | 0.0171 (15) | 0.0211 (17) | 0.0166 (16) | −0.0021 (13) | 0.0015 (13) | −0.0056 (13) |
C60 | 0.0228 (16) | 0.0233 (17) | 0.0188 (17) | 0.0028 (13) | −0.0043 (13) | −0.0013 (14) |
C61 | 0.0249 (16) | 0.0321 (19) | 0.0153 (16) | 0.0004 (15) | −0.0017 (14) | −0.0025 (14) |
C62 | 0.0231 (16) | 0.0274 (18) | 0.0182 (17) | −0.0026 (14) | −0.0001 (13) | −0.0078 (14) |
C63 | 0.0171 (14) | 0.0203 (16) | 0.0167 (16) | −0.0035 (13) | 0.0006 (12) | −0.0063 (13) |
C64 | 0.0319 (17) | 0.0218 (17) | 0.0151 (16) | 0.0007 (14) | 0.0007 (14) | −0.0073 (13) |
C65 | 0.0281 (18) | 0.0248 (19) | 0.039 (2) | 0.0023 (15) | −0.0006 (16) | −0.0104 (16) |
C66 | 0.071 (3) | 0.031 (2) | 0.041 (3) | 0.017 (2) | 0.007 (2) | −0.0037 (19) |
C67 | 0.159 (6) | 0.047 (3) | 0.064 (4) | 0.048 (4) | 0.035 (4) | 0.013 (3) |
C68 | 0.167 (6) | 0.036 (3) | 0.093 (5) | 0.048 (3) | 0.044 (4) | −0.004 (3) |
C69 | 0.072 (3) | 0.037 (2) | 0.070 (3) | 0.009 (2) | 0.024 (3) | −0.022 (2) |
C70 | 0.0275 (18) | 0.030 (2) | 0.048 (2) | 0.0031 (15) | −0.0002 (17) | −0.0211 (18) |
C71 | 0.0324 (19) | 0.051 (2) | 0.037 (2) | 0.0130 (18) | −0.0060 (17) | −0.027 (2) |
Dy1—O1 | 2.435 (2) | O5—H52 | 0.73 (3) |
Dy1—O5 | 2.327 (2) | O6—H61 | 0.71 (3) |
Dy1—O6 | 2.320 (2) | O6—H62 | 0.86 (3) |
Dy1—O7 | 2.410 (2) | N2—O9 | 1.212 (3) |
Dy1—O8 | 2.437 (2) | N2—O8 | 1.267 (3) |
Dy1—O10 | 2.443 (2) | N2—O7 | 1.281 (3) |
Dy1—O11 | 2.429 (2) | N3—O12 | 1.221 (3) |
Dy1—O13 | 2.460 (2) | N3—O11 | 1.270 (3) |
Dy1—O14 | 2.403 (2) | N3—O10 | 1.271 (3) |
Dy1—N2 | 2.846 (3) | N4—O15 | 1.206 (3) |
Dy1—N3 | 2.849 (3) | N4—O13 | 1.279 (3) |
Dy1—N4 | 2.865 (3) | N4—O14 | 1.285 (3) |
O1—C1 | 1.220 (3) | O51—C51 | 1.199 (4) |
O2—C7 | 1.363 (3) | O52—C57 | 1.368 (4) |
O2—C8 | 1.428 (3) | O52—C58 | 1.426 (3) |
O3—C15 | 1.366 (3) | O53—C65 | 1.358 (4) |
O3—C14 | 1.426 (3) | O53—C64 | 1.420 (3) |
O4—C21 | 1.216 (4) | O54—C71 | 1.217 (4) |
N1—C9 | 1.347 (4) | N51—C59 | 1.344 (4) |
N1—C13 | 1.353 (4) | N51—C63 | 1.346 (4) |
C1—C2 | 1.450 (4) | C51—C52 | 1.475 (5) |
C1—H1A | 0.9500 | C51—H51A | 0.9500 |
C2—C3 | 1.398 (4) | C52—C57 | 1.394 (4) |
C2—C7 | 1.402 (4) | C52—C53 | 1.395 (5) |
C3—C4 | 1.377 (4) | C53—C54 | 1.386 (5) |
C3—H3A | 0.9500 | C53—H53A | 0.9500 |
C4—C5 | 1.384 (4) | C54—C55 | 1.373 (5) |
C4—H4A | 0.9500 | C54—H54A | 0.9500 |
C5—C6 | 1.385 (4) | C55—C56 | 1.388 (5) |
C5—H5A | 0.9500 | C55—H55A | 0.9500 |
C6—C7 | 1.385 (4) | C56—C57 | 1.382 (5) |
C6—H6A | 0.9500 | C56—H56A | 0.9500 |
C8—C9 | 1.507 (4) | C58—C59 | 1.505 (4) |
C8—H8A | 0.9900 | C58—H58A | 0.9900 |
C8—H8B | 0.9900 | C58—H58B | 0.9900 |
C9—C10 | 1.379 (4) | C59—C60 | 1.385 (4) |
C10—C11 | 1.380 (4) | C60—C61 | 1.377 (4) |
C10—H10A | 0.9500 | C60—H60A | 0.9500 |
C11—C12 | 1.378 (4) | C61—C62 | 1.378 (4) |
C11—H11A | 0.9500 | C61—H61A | 0.9500 |
C12—C13 | 1.379 (4) | C62—C63 | 1.385 (4) |
C12—H12A | 0.9500 | C62—H62A | 0.9500 |
C13—C14 | 1.503 (4) | C63—C64 | 1.497 (4) |
C14—H14A | 0.9900 | C64—H64A | 0.9900 |
C14—H14B | 0.9900 | C64—H64B | 0.9900 |
C15—C16 | 1.390 (4) | C65—C66 | 1.366 (5) |
C15—C20 | 1.403 (4) | C65—C70 | 1.419 (5) |
C16—C17 | 1.389 (4) | C66—C67 | 1.385 (6) |
C16—H16A | 0.9500 | C66—H66A | 0.9500 |
C17—C18 | 1.379 (5) | C67—C68 | 1.380 (7) |
C17—H17A | 0.9500 | C67—H67A | 0.9500 |
C18—C19 | 1.380 (5) | C68—C69 | 1.366 (7) |
C18—H18A | 0.9500 | C68—H68A | 0.9500 |
C19—C20 | 1.394 (4) | C69—C70 | 1.377 (5) |
C19—H19A | 0.9500 | C69—H69A | 0.9500 |
C20—C21 | 1.458 (4) | C70—C71 | 1.451 (5) |
C21—H21A | 0.9500 | C71—H71A | 0.9500 |
O5—H51 | 0.76 (4) | ||
O6—Dy1—O5 | 78.55 (8) | C17—C16—C15 | 118.7 (3) |
O6—Dy1—O14 | 79.03 (8) | C17—C16—H16A | 120.6 |
O5—Dy1—O14 | 79.82 (8) | C15—C16—H16A | 120.6 |
O6—Dy1—O7 | 125.04 (7) | C18—C17—C16 | 121.4 (3) |
O5—Dy1—O7 | 81.96 (8) | C18—C17—H17A | 119.3 |
O14—Dy1—O7 | 145.81 (7) | C16—C17—H17A | 119.3 |
O6—Dy1—O11 | 89.94 (7) | C17—C18—C19 | 119.4 (3) |
O5—Dy1—O11 | 149.62 (8) | C17—C18—H18A | 120.3 |
O14—Dy1—O11 | 125.81 (7) | C19—C18—H18A | 120.3 |
O7—Dy1—O11 | 81.97 (7) | C18—C19—C20 | 121.1 (3) |
O6—Dy1—O1 | 145.20 (8) | C18—C19—H19A | 119.4 |
O5—Dy1—O1 | 77.24 (8) | C20—C19—H19A | 119.4 |
O14—Dy1—O1 | 72.40 (7) | C19—C20—C15 | 118.5 (3) |
O7—Dy1—O1 | 75.50 (7) | C19—C20—C21 | 120.8 (3) |
O11—Dy1—O1 | 122.85 (7) | C15—C20—C21 | 120.6 (3) |
O6—Dy1—O8 | 72.43 (7) | O4—C21—C20 | 125.3 (3) |
O5—Dy1—O8 | 74.04 (8) | O4—C21—H21A | 117.4 |
O14—Dy1—O8 | 144.36 (7) | C20—C21—H21A | 117.4 |
O7—Dy1—O8 | 52.83 (7) | Dy1—O5—H51 | 129 (3) |
O11—Dy1—O8 | 75.70 (7) | Dy1—O5—H52 | 118 (3) |
O1—Dy1—O8 | 123.16 (7) | H51—O5—H52 | 113 (4) |
O6—Dy1—O10 | 136.95 (7) | Dy1—O6—H61 | 121 (3) |
O5—Dy1—O10 | 144.49 (8) | Dy1—O6—H62 | 121 (2) |
O14—Dy1—O10 | 104.30 (7) | H61—O6—H62 | 110 (4) |
O7—Dy1—O10 | 75.42 (7) | O9—N2—O8 | 122.9 (3) |
O11—Dy1—O10 | 52.72 (7) | O9—N2—O7 | 121.5 (3) |
O1—Dy1—O10 | 70.85 (7) | O8—N2—O7 | 115.6 (2) |
O8—Dy1—O10 | 111.08 (7) | O9—N2—Dy1 | 172.6 (2) |
O6—Dy1—O13 | 75.04 (7) | O8—N2—Dy1 | 58.53 (14) |
O5—Dy1—O13 | 128.94 (8) | O7—N2—Dy1 | 57.34 (14) |
O14—Dy1—O13 | 52.83 (7) | O12—N3—O11 | 122.2 (3) |
O7—Dy1—O13 | 148.23 (7) | O12—N3—O10 | 121.0 (3) |
O11—Dy1—O13 | 73.02 (7) | O11—N3—O10 | 116.7 (2) |
O1—Dy1—O13 | 101.80 (7) | O12—N3—Dy1 | 179.5 (2) |
O8—Dy1—O13 | 134.29 (7) | O11—N3—Dy1 | 58.04 (14) |
O10—Dy1—O13 | 73.92 (7) | O10—N3—Dy1 | 58.66 (14) |
O6—Dy1—N2 | 98.47 (8) | O15—N4—O13 | 122.9 (3) |
O5—Dy1—N2 | 75.03 (8) | O15—N4—O14 | 122.1 (3) |
O14—Dy1—N2 | 154.70 (7) | O13—N4—O14 | 115.1 (2) |
O7—Dy1—N2 | 26.59 (7) | O15—N4—Dy1 | 176.9 (2) |
O11—Dy1—N2 | 79.08 (7) | O13—N4—Dy1 | 58.85 (13) |
O1—Dy1—N2 | 98.99 (7) | O14—N4—Dy1 | 56.29 (13) |
O8—Dy1—N2 | 26.32 (7) | N2—O7—Dy1 | 96.07 (17) |
O10—Dy1—N2 | 94.69 (8) | N2—O8—Dy1 | 95.15 (17) |
O13—Dy1—N2 | 151.25 (7) | N3—O10—Dy1 | 94.95 (17) |
O6—Dy1—N3 | 113.96 (8) | N3—O11—Dy1 | 95.62 (16) |
O5—Dy1—N3 | 159.45 (8) | N4—O13—Dy1 | 94.73 (16) |
O14—Dy1—N3 | 117.58 (7) | N4—O14—Dy1 | 97.28 (16) |
O7—Dy1—N3 | 77.50 (7) | C57—O52—C58 | 119.3 (2) |
O11—Dy1—N3 | 26.34 (7) | C65—O53—C64 | 120.0 (3) |
O1—Dy1—N3 | 96.91 (7) | C59—N51—C63 | 118.5 (2) |
O8—Dy1—N3 | 93.67 (7) | O51—C51—C52 | 124.7 (3) |
O10—Dy1—N3 | 26.38 (7) | O51—C51—H51A | 117.7 |
O13—Dy1—N3 | 71.37 (7) | C52—C51—H51A | 117.7 |
N2—Dy1—N3 | 86.66 (8) | C57—C52—C53 | 118.4 (3) |
O6—Dy1—N4 | 74.87 (7) | C57—C52—C51 | 122.1 (3) |
O5—Dy1—N4 | 104.39 (8) | C53—C52—C51 | 119.5 (3) |
O14—Dy1—N4 | 26.42 (7) | C54—C53—C52 | 121.0 (3) |
O7—Dy1—N4 | 160.10 (7) | C54—C53—H53A | 119.5 |
O11—Dy1—N4 | 99.44 (7) | C52—C53—H53A | 119.5 |
O1—Dy1—N4 | 87.39 (7) | C55—C54—C53 | 119.2 (3) |
O8—Dy1—N4 | 146.90 (7) | C55—C54—H54A | 120.4 |
O10—Dy1—N4 | 89.55 (7) | C53—C54—H54A | 120.4 |
O13—Dy1—N4 | 26.42 (7) | C54—C55—C56 | 121.2 (3) |
N2—Dy1—N4 | 173.22 (7) | C54—C55—H55A | 119.4 |
N3—Dy1—N4 | 94.89 (7) | C56—C55—H55A | 119.4 |
C1—O1—Dy1 | 125.07 (19) | C57—C56—C55 | 119.1 (3) |
C7—O2—C8 | 119.3 (2) | C57—C56—H56A | 120.4 |
C15—O3—C14 | 118.7 (2) | C55—C56—H56A | 120.4 |
C9—N1—C13 | 117.5 (2) | O52—C57—C56 | 123.6 (3) |
O1—C1—C2 | 125.1 (3) | O52—C57—C52 | 115.5 (3) |
O1—C1—H1A | 117.4 | C56—C57—C52 | 121.0 (3) |
C2—C1—H1A | 117.4 | O52—C58—C59 | 107.3 (2) |
C3—C2—C7 | 119.0 (3) | O52—C58—H58A | 110.3 |
C3—C2—C1 | 121.7 (3) | C59—C58—H58A | 110.3 |
C7—C2—C1 | 119.3 (3) | O52—C58—H58B | 110.3 |
C4—C3—C2 | 120.7 (3) | C59—C58—H58B | 110.3 |
C4—C3—H3A | 119.7 | H58A—C58—H58B | 108.5 |
C2—C3—H3A | 119.7 | N51—C59—C60 | 122.5 (3) |
C3—C4—C5 | 119.3 (3) | N51—C59—C58 | 115.2 (2) |
C3—C4—H4A | 120.3 | C60—C59—C58 | 122.4 (3) |
C5—C4—H4A | 120.3 | C61—C60—C59 | 118.7 (3) |
C4—C5—C6 | 121.5 (3) | C61—C60—H60A | 120.7 |
C4—C5—H5A | 119.2 | C59—C60—H60A | 120.7 |
C6—C5—H5A | 119.2 | C60—C61—C62 | 119.4 (3) |
C7—C6—C5 | 119.0 (3) | C60—C61—H61A | 120.3 |
C7—C6—H6A | 120.5 | C62—C61—H61A | 120.3 |
C5—C6—H6A | 120.5 | C61—C62—C63 | 119.2 (3) |
O2—C7—C6 | 124.6 (3) | C61—C62—H62A | 120.4 |
O2—C7—C2 | 114.9 (3) | C63—C62—H62A | 120.4 |
C6—C7—C2 | 120.5 (3) | N51—C63—C62 | 121.9 (3) |
O2—C8—C9 | 107.6 (2) | N51—C63—C64 | 115.9 (3) |
O2—C8—H8A | 110.2 | C62—C63—C64 | 122.2 (3) |
C9—C8—H8A | 110.2 | O53—C64—C63 | 106.6 (2) |
O2—C8—H8B | 110.2 | O53—C64—H64A | 110.4 |
C9—C8—H8B | 110.2 | C63—C64—H64A | 110.4 |
H8A—C8—H8B | 108.5 | O53—C64—H64B | 110.4 |
N1—C9—C10 | 123.0 (3) | C63—C64—H64B | 110.4 |
N1—C9—C8 | 113.6 (2) | H64A—C64—H64B | 108.6 |
C10—C9—C8 | 123.3 (3) | O53—C65—C66 | 124.2 (3) |
C9—C10—C11 | 118.4 (3) | O53—C65—C70 | 114.5 (3) |
C9—C10—H10A | 120.8 | C66—C65—C70 | 121.3 (3) |
C11—C10—H10A | 120.8 | C65—C66—C67 | 118.3 (4) |
C12—C11—C10 | 119.7 (3) | C65—C66—H66A | 120.9 |
C12—C11—H11A | 120.1 | C67—C66—H66A | 120.9 |
C10—C11—H11A | 120.1 | C68—C67—C66 | 120.8 (5) |
C11—C12—C13 | 118.6 (3) | C68—C67—H67A | 119.6 |
C11—C12—H12A | 120.7 | C66—C67—H67A | 119.6 |
C13—C12—H12A | 120.7 | C69—C68—C67 | 121.0 (4) |
N1—C13—C12 | 122.7 (3) | C69—C68—H68A | 119.5 |
N1—C13—C14 | 115.3 (2) | C67—C68—H68A | 119.5 |
C12—C13—C14 | 121.9 (3) | C68—C69—C70 | 119.7 (4) |
O3—C14—C13 | 106.5 (2) | C68—C69—H69A | 120.1 |
O3—C14—H14A | 110.4 | C70—C69—H69A | 120.1 |
C13—C14—H14A | 110.4 | C69—C70—C65 | 118.8 (4) |
O3—C14—H14B | 110.4 | C69—C70—C71 | 120.0 (4) |
C13—C14—H14B | 110.4 | C65—C70—C71 | 121.2 (3) |
H14A—C14—H14B | 108.6 | O54—C71—C70 | 125.2 (3) |
O3—C15—C16 | 123.6 (3) | O54—C71—H71A | 117.4 |
O3—C15—C20 | 115.6 (3) | C70—C71—H71A | 117.4 |
C16—C15—C20 | 120.8 (3) | ||
O6—Dy1—O1—C1 | 104.2 (2) | O6—Dy1—O7—N2 | 2.6 (2) |
O5—Dy1—O1—C1 | 57.2 (2) | O5—Dy1—O7—N2 | 72.50 (17) |
O14—Dy1—O1—C1 | 140.4 (2) | O14—Dy1—O7—N2 | 130.81 (17) |
O7—Dy1—O1—C1 | −27.7 (2) | O11—Dy1—O7—N2 | −81.64 (17) |
O11—Dy1—O1—C1 | −97.9 (2) | O1—Dy1—O7—N2 | 151.32 (18) |
O8—Dy1—O1—C1 | −3.8 (3) | O8—Dy1—O7—N2 | −3.53 (15) |
O10—Dy1—O1—C1 | −107.0 (2) | O10—Dy1—O7—N2 | −135.10 (18) |
O13—Dy1—O1—C1 | −175.1 (2) | O13—Dy1—O7—N2 | −119.63 (18) |
N2—Dy1—O1—C1 | −15.1 (2) | N3—Dy1—O7—N2 | −108.03 (17) |
N3—Dy1—O1—C1 | −102.8 (2) | N4—Dy1—O7—N2 | −177.18 (19) |
N4—Dy1—O1—C1 | 162.6 (2) | O9—N2—O8—Dy1 | 171.4 (3) |
Dy1—O1—C1—C2 | −175.3 (2) | O7—N2—O8—Dy1 | −5.9 (3) |
O1—C1—C2—C3 | −1.7 (5) | O6—Dy1—O8—N2 | −171.17 (18) |
O1—C1—C2—C7 | 176.0 (3) | O5—Dy1—O8—N2 | −88.41 (18) |
C7—C2—C3—C4 | 0.2 (4) | O14—Dy1—O8—N2 | −132.82 (17) |
C1—C2—C3—C4 | 177.9 (3) | O7—Dy1—O8—N2 | 3.56 (16) |
C2—C3—C4—C5 | −0.6 (5) | O11—Dy1—O8—N2 | 94.27 (17) |
C3—C4—C5—C6 | 0.5 (5) | O1—Dy1—O8—N2 | −25.88 (19) |
C4—C5—C6—C7 | 0.1 (5) | O10—Dy1—O8—N2 | 54.45 (18) |
C8—O2—C7—C6 | 2.1 (4) | O13—Dy1—O8—N2 | 142.22 (16) |
C8—O2—C7—C2 | −177.9 (2) | N3—Dy1—O8—N2 | 74.84 (17) |
C5—C6—C7—O2 | 179.5 (3) | N4—Dy1—O8—N2 | 179.61 (15) |
C5—C6—C7—C2 | −0.6 (4) | O12—N3—O10—Dy1 | 179.5 (3) |
C3—C2—C7—O2 | −179.6 (3) | O11—N3—O10—Dy1 | −0.4 (3) |
C1—C2—C7—O2 | 2.7 (4) | O6—Dy1—O10—N3 | −35.0 (2) |
C3—C2—C7—C6 | 0.4 (4) | O5—Dy1—O10—N3 | 143.38 (17) |
C1—C2—C7—C6 | −177.3 (3) | O14—Dy1—O10—N3 | −124.13 (16) |
C7—O2—C8—C9 | −175.5 (2) | O7—Dy1—O10—N3 | 91.21 (17) |
C13—N1—C9—C10 | 0.8 (4) | O11—Dy1—O10—N3 | 0.26 (15) |
C13—N1—C9—C8 | −177.2 (2) | O1—Dy1—O10—N3 | 170.63 (18) |
O2—C8—C9—N1 | −176.9 (2) | O8—Dy1—O10—N3 | 51.50 (17) |
O2—C8—C9—C10 | 5.1 (4) | O13—Dy1—O10—N3 | −80.39 (16) |
N1—C9—C10—C11 | 0.0 (4) | N2—Dy1—O10—N3 | 72.73 (17) |
C8—C9—C10—C11 | 177.8 (3) | N4—Dy1—O10—N3 | −101.98 (17) |
C9—C10—C11—C12 | −0.7 (4) | O12—N3—O11—Dy1 | −179.5 (3) |
C10—C11—C12—C13 | 0.6 (4) | O10—N3—O11—Dy1 | 0.4 (3) |
C9—N1—C13—C12 | −0.9 (4) | O6—Dy1—O11—N3 | 156.54 (16) |
C9—N1—C13—C14 | 179.7 (2) | O5—Dy1—O11—N3 | −136.68 (18) |
C11—C12—C13—N1 | 0.2 (5) | O14—Dy1—O11—N3 | 80.16 (18) |
C11—C12—C13—C14 | 179.6 (3) | O7—Dy1—O11—N3 | −78.01 (16) |
C15—O3—C14—C13 | 175.3 (2) | O1—Dy1—O11—N3 | −11.10 (19) |
N1—C13—C14—O3 | −152.1 (2) | O8—Dy1—O11—N3 | −131.59 (17) |
C12—C13—C14—O3 | 28.4 (4) | O10—Dy1—O11—N3 | −0.26 (15) |
C14—O3—C15—C16 | 5.5 (4) | O13—Dy1—O11—N3 | 82.18 (16) |
C14—O3—C15—C20 | −174.6 (3) | N2—Dy1—O11—N3 | −104.82 (17) |
O3—C15—C16—C17 | 178.7 (3) | N4—Dy1—O11—N3 | 81.90 (16) |
C20—C15—C16—C17 | −1.3 (5) | O15—N4—O13—Dy1 | −176.9 (2) |
C15—C16—C17—C18 | −0.4 (5) | O14—N4—O13—Dy1 | 2.3 (2) |
C16—C17—C18—C19 | 1.3 (5) | O6—Dy1—O13—N4 | 86.02 (16) |
C17—C18—C19—C20 | −0.5 (5) | O5—Dy1—O13—N4 | 24.7 (2) |
C18—C19—C20—C15 | −1.1 (4) | O14—Dy1—O13—N4 | −1.42 (15) |
C18—C19—C20—C21 | 176.4 (3) | O7—Dy1—O13—N4 | −139.78 (17) |
O3—C15—C20—C19 | −177.9 (3) | O11—Dy1—O13—N4 | −179.37 (17) |
C16—C15—C20—C19 | 2.0 (4) | O1—Dy1—O13—N4 | −58.33 (17) |
O3—C15—C20—C21 | 4.5 (4) | O8—Dy1—O13—N4 | 131.83 (16) |
C16—C15—C20—C21 | −175.5 (3) | O10—Dy1—O13—N4 | −124.19 (17) |
C19—C20—C21—O4 | 3.3 (5) | N2—Dy1—O13—N4 | 166.22 (16) |
C15—C20—C21—O4 | −179.2 (3) | N3—Dy1—O13—N4 | −151.73 (17) |
O6—Dy1—N2—O8 | 8.51 (18) | O15—N4—O14—Dy1 | 176.9 (2) |
O5—Dy1—N2—O8 | 84.18 (17) | O13—N4—O14—Dy1 | −2.4 (2) |
O14—Dy1—N2—O8 | 90.7 (2) | O6—Dy1—O14—N4 | −78.03 (16) |
O7—Dy1—N2—O8 | −173.6 (3) | O5—Dy1—O14—N4 | −158.21 (17) |
O11—Dy1—N2—O8 | −79.78 (17) | O7—Dy1—O14—N4 | 142.92 (16) |
O1—Dy1—N2—O8 | 158.29 (16) | O11—Dy1—O14—N4 | 3.85 (19) |
O10—Dy1—N2—O8 | −130.38 (17) | O1—Dy1—O14—N4 | 122.07 (17) |
O13—Dy1—N2—O8 | −65.8 (2) | O8—Dy1—O14—N4 | −115.09 (17) |
N3—Dy1—N2—O8 | −105.23 (17) | O10—Dy1—O14—N4 | 57.91 (17) |
O6—Dy1—N2—O7 | −177.84 (17) | O13—Dy1—O14—N4 | 1.42 (15) |
O5—Dy1—N2—O7 | −102.17 (18) | N2—Dy1—O14—N4 | −164.64 (17) |
O14—Dy1—N2—O7 | −95.6 (2) | N3—Dy1—O14—N4 | 33.40 (18) |
O11—Dy1—N2—O7 | 93.87 (17) | O51—C51—C52—C57 | −177.0 (4) |
O1—Dy1—N2—O7 | −28.06 (17) | O51—C51—C52—C53 | 4.8 (6) |
O8—Dy1—N2—O7 | 173.6 (3) | C57—C52—C53—C54 | 0.0 (5) |
O10—Dy1—N2—O7 | 43.27 (17) | C51—C52—C53—C54 | 178.3 (4) |
O13—Dy1—N2—O7 | 107.9 (2) | C52—C53—C54—C55 | −0.6 (6) |
N3—Dy1—N2—O7 | 68.42 (17) | C53—C54—C55—C56 | 0.6 (6) |
O6—Dy1—N3—O11 | −25.82 (18) | C54—C55—C56—C57 | 0.0 (5) |
O5—Dy1—N3—O11 | 98.7 (3) | C58—O52—C57—C56 | 0.3 (4) |
O14—Dy1—N3—O11 | −115.66 (16) | C58—O52—C57—C52 | 179.0 (3) |
O7—Dy1—N3—O11 | 97.20 (16) | C55—C56—C57—O52 | 178.1 (3) |
O1—Dy1—N3—O11 | 170.62 (16) | C55—C56—C57—C52 | −0.6 (5) |
O8—Dy1—N3—O11 | 46.57 (16) | C53—C52—C57—O52 | −178.2 (3) |
O10—Dy1—N3—O11 | 179.5 (3) | C51—C52—C57—O52 | 3.6 (5) |
O13—Dy1—N3—O11 | −89.21 (16) | C53—C52—C57—C56 | 0.6 (5) |
N2—Dy1—N3—O11 | 71.96 (16) | C51—C52—C57—C56 | −177.7 (3) |
N4—Dy1—N3—O11 | −101.42 (16) | C57—O52—C58—C59 | −168.1 (3) |
O6—Dy1—N3—O10 | 154.64 (16) | C63—N51—C59—C60 | 0.6 (4) |
O5—Dy1—N3—O10 | −80.8 (3) | C63—N51—C59—C58 | −178.5 (3) |
O14—Dy1—N3—O10 | 64.81 (18) | O52—C58—C59—N51 | −178.2 (2) |
O7—Dy1—N3—O10 | −82.34 (17) | O52—C58—C59—C60 | 2.7 (4) |
O11—Dy1—N3—O10 | −179.5 (3) | N51—C59—C60—C61 | −0.4 (5) |
O1—Dy1—N3—O10 | −8.91 (17) | C58—C59—C60—C61 | 178.7 (3) |
O8—Dy1—N3—O10 | −132.96 (16) | C59—C60—C61—C62 | −0.5 (5) |
O13—Dy1—N3—O10 | 91.25 (17) | C60—C61—C62—C63 | 1.2 (4) |
N2—Dy1—N3—O10 | −107.58 (17) | C59—N51—C63—C62 | 0.0 (4) |
N4—Dy1—N3—O10 | 79.04 (17) | C59—N51—C63—C64 | 178.1 (3) |
O6—Dy1—N4—O13 | −86.75 (16) | C61—C62—C63—N51 | −0.9 (5) |
O5—Dy1—N4—O13 | −160.39 (16) | C61—C62—C63—C64 | −178.8 (3) |
O14—Dy1—N4—O13 | 177.5 (3) | C65—O53—C64—C63 | 171.2 (3) |
O7—Dy1—N4—O13 | 93.1 (3) | N51—C63—C64—O53 | 168.3 (3) |
O11—Dy1—N4—O13 | 0.61 (17) | C62—C63—C64—O53 | −13.7 (4) |
O1—Dy1—N4—O13 | 123.49 (16) | C64—O53—C65—C66 | 4.7 (5) |
O8—Dy1—N4—O13 | −77.6 (2) | C64—O53—C65—C70 | −175.0 (3) |
O10—Dy1—N4—O13 | 52.64 (16) | O53—C65—C66—C67 | 179.2 (4) |
N3—Dy1—N4—O13 | 26.77 (17) | C70—C65—C66—C67 | −1.1 (7) |
O6—Dy1—N4—O14 | 95.80 (17) | C65—C66—C67—C68 | −0.3 (9) |
O5—Dy1—N4—O14 | 22.16 (17) | C66—C67—C68—C69 | 2.1 (11) |
O7—Dy1—N4—O14 | −84.4 (3) | C67—C68—C69—C70 | −2.6 (10) |
O11—Dy1—N4—O14 | −176.84 (15) | C68—C69—C70—C65 | 1.2 (7) |
O1—Dy1—N4—O14 | −53.96 (16) | C68—C69—C70—C71 | −177.8 (5) |
O8—Dy1—N4—O14 | 104.90 (18) | O53—C65—C70—C69 | −179.6 (3) |
O10—Dy1—N4—O14 | −124.81 (16) | C66—C65—C70—C69 | 0.7 (5) |
O13—Dy1—N4—O14 | −177.5 (3) | O53—C65—C70—C71 | −0.7 (5) |
N3—Dy1—N4—O14 | −150.68 (16) | C66—C65—C70—C71 | 179.6 (4) |
O9—N2—O7—Dy1 | −171.4 (3) | C69—C70—C71—O54 | −5.8 (6) |
O8—N2—O7—Dy1 | 6.0 (3) | C65—C70—C71—O54 | 175.3 (3) |
D—H···A | D—H | H···A | D···A | D—H···A |
O5—H51···N1i | 0.76 (4) | 1.97 (4) | 2.724 (3) | 173 (4) |
O5—H52···O12ii | 0.73 (3) | 2.19 (4) | 2.907 (3) | 168 (4) |
O6—H61···O4iii | 0.71 (3) | 2.10 (3) | 2.797 (3) | 169 (4) |
O6—H62···N51iii | 0.86 (3) | 1.86 (4) | 2.712 (3) | 177 (3) |
Symmetry codes: (i) −x, −y+1, −z; (ii) x−1, y, z; (iii) x, y−1, z. |
Experimental details
Crystal data | |
Chemical formula | [Dy(NO3)3(C21H17NO4)(H2O)2]·C21H17NO4 |
Mr | 1079.27 |
Crystal system, space group | Triclinic, P1 |
Temperature (K) | 136 |
a, b, c (Å) | 7.7552 (3), 16.1249 (8), 17.7178 (7) |
α, β, γ (°) | 75.531 (4), 85.173 (3), 88.398 (4) |
V (Å3) | 2137.71 (16) |
Z | 2 |
Radiation type | Mo Kα |
µ (mm−1) | 1.84 |
Crystal size (mm) | 0.43 × 0.26 × 0.12 |
Data collection | |
Diffractometer | Agilent Xcalibur Atlas Gemini |
Absorption correction | Analytical [CrysAlis PRO (Agilent, 2010); based on expressions derived by Clark & Reid (1995)] |
Tmin, Tmax | 0.599, 0.816 |
No. of measured, independent and observed [I > 2σ(I)] reflections | 15907, 8436, 7464 |
Rint | 0.034 |
(sin θ/λ)max (Å−1) | 0.618 |
Refinement | |
R[F2 > 2σ(F2)], wR(F2), S | 0.030, 0.066, 1.05 |
No. of reflections | 8436 |
No. of parameters | 616 |
H-atom treatment | H atoms treated by a mixture of independent and constrained refinement |
Δρmax, Δρmin (e Å−3) | 0.95, −0.88 |
Computer programs: CrysAlis CCD (Agilent, 2010), CrysAlis RED (Agilent, 2010), SHELXS97 (Sheldrick, 2008), SHELXL97 (Sheldrick, 2008), SHELXTL (Sheldrick, 2008) and Mercury (Macrae et al., 2008), SHELXTL (Sheldrick, 2008).
Dy1—O1 | 2.435 (2) | Dy1—O10 | 2.443 (2) |
Dy1—O5 | 2.327 (2) | Dy1—O11 | 2.429 (2) |
Dy1—O6 | 2.320 (2) | Dy1—O13 | 2.460 (2) |
Dy1—O7 | 2.410 (2) | Dy1—O14 | 2.403 (2) |
Dy1—O8 | 2.437 (2) |
D—H···A | D—H | H···A | D···A | D—H···A |
O5—H51···N1i | 0.76 (4) | 1.97 (4) | 2.724 (3) | 173 (4) |
O5—H52···O12ii | 0.73 (3) | 2.19 (4) | 2.907 (3) | 168 (4) |
O6—H61···O4iii | 0.71 (3) | 2.10 (3) | 2.797 (3) | 169 (4) |
O6—H62···N51iii | 0.86 (3) | 1.86 (4) | 2.712 (3) | 177 (3) |
Symmetry codes: (i) −x, −y+1, −z; (ii) x−1, y, z; (iii) x, y−1, z. |
Acknowledgements
The authors thank the PAICyT program (Programa de Apoyo a la Investigación Científica y Tecnológica), Universidad Autónoma de Nuevo León, for supporting this work (project No. CE 600–10).
References
Agilent (2010). CrysAlis PRO, CrysAlis CCD and CrysAlis RED. Agilent Technologies, Yarnton, England. Google Scholar
Clark, R. C. & Reid, J. S. (1995). Acta Cryst. A51, 887–897. CrossRef CAS Web of Science IUCr Journals Google Scholar
Garza Rodríguez, L. Á. (2010). PhD thesis, Universidad Autónoma de Nuevo León, Mexico. Google Scholar
IUPAC (2005). Nomenclature of Inorganic Chemistry: IUPAC recommendations 2005, edited by N. G. Connelly & T. Damhus, pp. 175–179. Cambridge: RSC Publishing. Google Scholar
Macrae, C. F., Bruno, I. J., Chisholm, J. A., Edgington, P. R., McCabe, P., Pidcock, E., Rodriguez-Monge, L., Taylor, R., van de Streek, J. & Wood, P. A. (2008). J. Appl. Cryst. 41, 466–470. Web of Science CSD CrossRef CAS IUCr Journals Google Scholar
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This is an open-access article distributed under the terms of the Creative Commons Attribution (CC-BY) Licence, which permits unrestricted use, distribution, and reproduction in any medium, provided the original authors and source are cited.
Lanthanides (Ln) are well known for giving high and rather unpredictable coordination numbers, in the range 8 to 12. For example, in the case of O-donor ligands, the coordination sphere may be completed by water molecules. Such modifications are reflected in the flexible coordination geometry of these complexes, which, in turn, has consequences on the physical properties characteristics of these metals.
While working on the synthesis of an isotypic series of LnIII complexes with photoluminescent properties (Rodríguez De Luna et al., 2010), we realised that, occasionally, a by-product crystallized with the desired complex, although elemental analysis systematically matched the expected formula. The desired complex had formula [LnIIIL2(NO3)3(H2O)2] where L is a monodentate dialdehyde ligand, 2,2'-[pyridine-2,6-diyl-bis(methyleneoxy)]dibenzaldehyde, giving a coordination number of 10 for the metal. This compound crystallizes readily in space group C2/c. The crystallographic analysis revealed that the by-product, which crystallizes in space group P1, is isoformular, although the coordination number is reduced to 9, because one L ligand, present in the asymmetric unit, is not coordinated to the metal. The resulting formula is then [LnIIIL(NO3)3(H2O)2].L, which may be seen as an organic-metalorganic system.
So far, we have detected the presence of this new complex with Ln = HoIII, TbIII and DyIII, on the basis of unit-cell parameters (Garza Rodríguez, 2010). The X-ray characterization is however complicated by the very low yield and the poor quality of single crystals we have obtained. The present report is for Ln = DyIII, which gave a suitable refinement.
The asymmetric unit contains one complex and one free ligand (Fig. 1). The DyIII atom is bonded to the monodentate L ligand, three bidentate nitrate ions, and two water molecules, forming nine Dy—O bonds in the range 2.320 (2)–2.460 (2) Å. The resulting coordination geometry approximates a square-face-tricapped trigonal prismatic polyhedron (polyhedral symbol in the IUPAC nomenclature: TPRS-9; IUPAC, 2005), with distortions from the ideal D3h symmetry induced by the nitrate bite angles (Fig. 1, inset). The organic ligand is not planar, and the peripheral ring, C15···C21/O3/O4 is twisted by 39.96 (4)° from the rest of the ligand. The free ligand is more planar, and presents a conformation reminiscent of that observed in the crystal structure of pure L (Rodríguez De Luna et al., 2010).
The crystal structure features segregated stacks for organic and metalorganic moieties (Fig. 2). The free organic molecules are stacked in the [100] direction with π···π interactions between pyridine rings in the range 3.785 (2)–4.528 (2) Å. Because of the deviation from planarity of the whole molecule, benzaldehyde rings are less engaged in π···π interactions, with centroid-to-centroid separations in the range 4.139 (3)–5.156 (3) Å. L ligands bonded to the metals also interact in the same direction, and the most favorable π···π separation is found at 3.781 (2) Å.