research communications
H,3′H,5′′H-dispiro[indoline-3,5′-pyrrolo[1,2-c]thiazole-6′,6′′-quinoline]-2,5′′-dione and an unknown solvent
of 7′-(4-chlorophenyl)-2′′-(4-methoxyphenyl)-7′,7a',7′′,8′′-tetrahydro-1′aDepartment of Physics, The Madura College, Madurai - 625 011, India, bDepartment of Physics, The Madura College, Madurai 625 011, India, cDepartment of Organic Chemistry, School of Chemistry, Madurai Kamaraj University, Madurai 625 021, India, and dDepartment of Food, Science and Technology, University of Ruhuna, Mapalana, Kamburupitiya 81100, Sri Lanka
*Correspondence e-mail: plakshmannilantha@ymail.com
The 34H28ClN3O3S, contains two independent molecules (A and B). They differ essentially in the orientation of the 4-methoxyphenyl ring with respect to the pyridine ring of the quinoline moiety; this dihedral angle is 37.01 (18)° in molecule A but only 7.06 (17)° in molecule B. In both molecules, the cyclohexanone ring of the isoquinoline unit has a half-chair conformation. In the pyrrolothiazole ring system, the pyrrolo ring in molecule A has a twisted conformation on the N—C fused bond and an in molecule B with the N atom as the flap. The thiazole rings of both molecules have twisted conformations on the N—C fused bond. In the crystal, the A molecules are linked by pairs of N—H⋯O hydrogen bonds, forming inversion dimers with an R22(8) ring motif. These dimers are linked to the B molecules by an N—H⋯N hydrogen bond and a series of C—H⋯O hydrogen bonds, forming layers lying parallel to the (101) plane. The layers are linked by C—H⋯π interactions and offset π–π interactions [intercentroid distance = 3.427 (1) Å], forming a supramolecular framework. The contribution to the scattering from a region of highly disordered solvent molecules was removed with the SQUEEZE routine in PLATON [Spek (2015). Acta Cryst. C71, 9–18]. The solvent formula mass and unit-cell characteristics were not taken into account during refinement.
of the title compound, CKeywords: crystal structure; spiro-pyrrolidine; indoline; pyrrolothiazole; isoquinoline; hydrogen bonding; supramolecular framework; SQUEEZE.
CCDC reference: 1888600
1. Chemical context
Pyrazolo (Siminoff et al., 1973; Zheng et al., 2006) quinoline ring systems are a privileged class of nitrogen-containing heterocycles endowed with significant biological activities. Quinoline derivatives have been reported to possess many interesting pharmacological activities and they are characteristic components of a large number of biologically active compounds. The wide spectrum of biological effects of these kind of compounds includes anti-viral (Billker et al., 1998; Roma et al., 2000; Chen et al., 2001), and antifungal (Vargas et al., 2003; Singh et al., 1996) agents. In view of their significance, the primary goal of the X-ray of the title compound was to obtain detailed information on the structural conformation that may be useful in understanding the chemical reactivity of such compounds.
2. Structural commentary
The molecular structure of the two independent molecules, A and B, of the title compound are given in Figs. 1 and 2, respectively. The molecular overlay of inverted molecule B on molecule A is shown in Fig. 3. The r.m.s. deviation is 0.44 Å with a maximum deviation of 1.931 Å (Mercury; Macrae et al., 2008). The two molecules differ essentially in the orientation of the 4-methoxyphenyl ring (C51A–C56A, C51B–C56B) with respect to the pyridine ring of the isoquinoline moiety (N2A/C22A–C26A, N2B/C22B–C26B). In molecule A, the dihedral angle between the two rings is 37.01 (18)° compared to 7.06 (17)° in B. There is also a slight difference in the orientation of the 4-chlorophenyl ring with respect to the mean plane of the pyrrolo ring, viz. in molecule A benzene ring C11A–C16A is inclined to the mean plane of the pyrrol ring (N1A/C1A–C4A) by 86.12 (17)°, while in molecule B the corresponding dihedral angle is 76.92 (17)°.
The cyclohexanone ring [(C2A/C21A/C22A/C26A–C28A) in molecule A and (C2B/C21B/C22B/C26B–C28B) in B] of the isoquinoline unit adopts a half-chair conformation in molecule A [puckering parameters: amplitude Q = 0.441 (3) Å, θ = 50.1 (4)°, φ2 = 319.2 (6)°] and a distorted half-chair conformation in molecule B [puckering parameters: amplitude Q = 0.502 (3) Å, θ = 123.5 (3)°, φ2 = 142.9 (5)°.
The thiazole rings have twisted conformations on bonds C4A—N1A and C4B—N1B for molecules A and B, respectively. The pyrrolo ring (N1A/C1A–C4A) has a twisted conformation on bond C4A–N1A in molecule A, while in molecule B this ring (N1B/C1B–C4B) has an with atom N1B as the flap. The mean planes of the thiazole and pyrrolo rings are inclined to each other by 11.58 (17)° in A and 12.79 (18)° in B.
In the indolin-2-one ring systems [(N3A/C3A/C31A–C37A) in A and (N3B/C3B/C31B–C37B) in B], the benzene and pyrrolidine rings make dihedral angles of 3.65 (3) and 3.67 (3)° in molecules A and B, respectively, while the keto atoms, O2A in molecule A and O2B in molecule B, deviate from the attached pyrrolidine rings by 0.1116 (1) and 0.0176 (1) Å, respectively.
As usual for such A/C2B and C3A/C3B) are normal to each other. In molecule A, the mean plane of the pyrrolo ring (N1A/C1A–C4A) is inclined to the mean planes of the pyrrolidine (N3A/C3A/C31A/C36A/C37A) and cyclohexanone (C2A/C21A/C22A/C26A–C28A) rings by 86.14 (18) and 84.07 (12)°, respectively. In molecule B the corresponding dihedral angles are 85.44 (18) and 85.34 (18)°.
the rings involving the spiro atoms (here C23. Supramolecular features
In the crystal, the A molecules are linked by pairs of N—H⋯O hydrogen bonds, forming A–A inversion dimers with an R22(8) ring motif (Fig. 4 and Table 1). These dimers are linked to the B molecules by an N—H⋯N hydrogen bond and a series of C—H⋯O hydrogen bonds, forming layers lying parallel to the (101) plane. The layers are linked by C—H⋯π interactions (Fig. 5 and Table 1), and offset π–π interactions involving the pyridine ring (N2A/C22A–C26A; with centroid Cg4) of molecule A and the 4-methoxyphenyl ring (C51B–C56B; with centroid Cg19) of molecule B: intercentroid distance Cg4⋯Cg19 = 3.675 (2) Å, α = 7.84 (17)°, β = 13.3°, interplanar distances = 3.427 (1) and 3.576 (1) Å, offset = 0.846 Å. These interactions lead to the formation of a supramolecular framework (Fig. 5).
4. Database survey
A search of the Cambridge Structural Database (CSD, Version 5.39, last update August 2018; Groom et al., 2016) for the central dispiro fragment, 1′-methyldispiro[cyclohexane/cyclohexene-1,3′-pyrrolidine-2′,3′′-indoline]-2,2′′-dione, gave 16 hits (see supporting information file: CSD search.pdf). Three compounds closely resemble the title compound, viz. 4′-(4-chlorophenyl)-1′-methyl-3,4-dihydro-1H-dispiro[acridine-2,3′-pyrrolidine-2′,3′′-indole]-1,2′′(1′′H)-dione methanol solvate (CSD refcode NAQCAL; Maheswari et al., 2012), 4′-(2,4-dichlorophenyl)-10,3′′-dimethyl-1′′-phenyl-7′′,8′′-dihydrodispiro[indole-3,2′-pyrrolidine-3′,6′′-pyrazolo[3,4-b]quinoline]-2,5′′(1H,1′′H)-dione chloroform solvate (UQIROD; Sumesh et al., 2016), and 4′-(2-chlorophenyl)-1′-methyl-2′′-phenyl-7′′,8′′-dihydro-5′′H-dispiro[indoline-3,2′-pyrrolidine-3′,6′′-quinoline]-2,5′′-dione (KEWKAB; Vishnupriya et al., 2018). Three other compounds contain a pyrrolothiazole moiety; they are the dispiro[cyclohexane-pyrrolothiazole-indole]-dione derivatives RAGMUK, RAGNAR and RAHBIO (Lotfy et al., 2017). In all six compounds, the mean plane of the pyrrolidine ring was found to be almost perpendicular to the mean plane of the indoline ring system and the mean plane of the cyclohexanone ring, similar to the situation in the title compound.
5. Synthesis and crystallization
A mixture of isatin (1.1 mmol) and thiazolidine-4-carboxylic acid (1.1 mmol) was taken in 10 ml of acetonitrile in a 50 ml round bottom flask and heated to reflux for 2 h. Then (E)-6-(4-chlorobenzylidene)-2-(4-methoxyphenyl)-7,8-dihydroquinolin-5(6H)-one (1 mmol) was added and the reaction mixture was allowed to reflux for a further 14 h. After completion of the reaction, as evident from TLC, the solvent was removed under reduced pressure and the residue washed with ice-cold water (50 ml). The crude product was purified by using 90:10 (v/v) petroleum ether–ethyl acetate mixtures to obtain the pure product. The product was dissolved in ethyl acetate and poured into a beaker, covered with perforated film and kept undisturbed. The solvent was allowed to evaporate slowly, yielding colourless block-like crystals after a period of seven days (m.p. 458 K; yield 80%).
6. Refinement
Crystal data, data collection and structure . The NH H atoms were located in a difference-Fourier map and freely refined. The C-bound H atoms were placed at calculated positions and allowed to ride on their carrier atoms: C—H = 0.93–0.98 Å with Uiso = 1.5Ueq(C-methyl) and 1.2Ueq(C) for other H atoms. The residual electron density was difficult to model and therefore, the SQUEEZE routine in PLATON (Spek, 2015) was used to remove the contribution of the electron density in the solvent region from the intensity data and the solvent-free model was employed for the final The solvent formula mass and unit-cell characteristics were not taken into account during The cavity of volume ca 418 Å3 (ca 14% of the unit-cell volume) contains approximately 100 electrons (see Fig. 6).
details are summarized in Table 2
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Supporting information
CCDC reference: 1888600
https://doi.org/10.1107/S2056989019000112/su5469sup1.cif
contains datablocks global, I. DOI:Structure factors: contains datablock I. DOI: https://doi.org/10.1107/S2056989019000112/su5469Isup2.hkl
CSD search. DOI: https://doi.org/10.1107/S2056989019000112/su5469sup3.pdf
Data collection: APEX2 (Bruker, 2009); cell
SAINT (Bruker, 2009); data reduction: SAINT (Bruker, 2009); program(s) used to solve structure: SHELXS2013 (Sheldrick, 2008); program(s) used to refine structure: SHELXL2014/6 (Sheldrick, 2015); molecular graphics: ORTEP-3 for Windows (Farrugia, 2012) and Mercury (Macrae et al., 2008); software used to prepare material for publication: SHELXL2014/6 (Sheldrick, 2015), PLATON (Spek, 2009) and publCIF (Westrip, 2010).C34H28ClN3O3S | Z = 4 |
Mr = 594.10 | F(000) = 1240 |
Triclinic, P1 | Dx = 1.273 Mg m−3 |
a = 11.8222 (7) Å | Mo Kα radiation, λ = 0.71073 Å |
b = 14.7535 (9) Å | Cell parameters from 12885 reflections |
c = 19.5055 (12) Å | θ = 2.2–26.6° |
α = 68.396 (3)° | µ = 0.23 mm−1 |
β = 78.555 (3)° | T = 293 K |
γ = 87.302 (3)° | Block, colourless |
V = 3099.0 (3) Å3 | 0.21 × 0.2 × 0.18 mm |
Bruker Kappa APEXII diffractometer | 12885 independent reflections |
Radiation source: fine-focus sealed tube | 7510 reflections with I > 2σ(I) |
Detector resolution: 0 pixels mm-1 | Rint = 0.072 |
ω and φ scans | θmax = 26.6°, θmin = 2.2° |
Absorption correction: multi-scan (SADABS; Bruker, 2009) | h = −14→14 |
Tmin = 0.967, Tmax = 0.974 | k = −18→18 |
78936 measured reflections | l = −24→24 |
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)] = 0.058 | Hydrogen site location: difference Fourier map |
wR(F2) = 0.171 | H atoms treated by a mixture of independent and constrained refinement |
S = 1.01 | w = 1/[σ2(Fo2) + (0.067P)2 + 2.7018P] where P = (Fo2 + 2Fc2)/3 |
12885 reflections | (Δ/σ)max = 0.001 |
765 parameters | Δρmax = 0.40 e Å−3 |
0 restraints | Δρmin = −0.32 e Å−3 |
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 | ||
C1B | 0.5260 (2) | −0.0249 (2) | 0.35951 (16) | 0.0323 (7) | |
H1B | 0.5318 | 0.0323 | 0.3729 | 0.039* | |
C1A | 0.3327 (2) | 0.3432 (2) | 0.36470 (16) | 0.0308 (6) | |
H1A | 0.3600 | 0.3148 | 0.3264 | 0.037* | |
C2B | 0.4873 (3) | 0.0134 (2) | 0.28085 (16) | 0.0321 (7) | |
C2A | 0.2713 (2) | 0.44096 (19) | 0.32533 (15) | 0.0284 (6) | |
C3B | 0.3566 (2) | −0.0264 (2) | 0.30098 (16) | 0.0312 (6) | |
C3A | 0.1371 (2) | 0.4122 (2) | 0.35761 (16) | 0.0320 (7) | |
C4B | 0.4242 (2) | −0.0873 (2) | 0.41544 (16) | 0.0341 (7) | |
H4B | 0.4308 | −0.1549 | 0.4179 | 0.041* | |
C4A | 0.2363 (2) | 0.2758 (2) | 0.42160 (16) | 0.0326 (7) | |
H4A | 0.2214 | 0.2894 | 0.4681 | 0.039* | |
C5B | 0.3932 (3) | −0.0848 (3) | 0.49356 (17) | 0.0428 (8) | |
H5A | 0.4114 | −0.0211 | 0.4932 | 0.051* | |
H5B | 0.4345 | −0.1337 | 0.5275 | 0.051* | |
C5A | 0.2420 (3) | 0.1669 (2) | 0.43995 (19) | 0.0426 (8) | |
H5A1 | 0.2781 | 0.1356 | 0.4831 | 0.051* | |
H5A2 | 0.2854 | 0.1527 | 0.3975 | 0.051* | |
C6B | 0.2225 (3) | −0.0925 (2) | 0.42665 (17) | 0.0426 (8) | |
H6A | 0.2145 | −0.1544 | 0.4210 | 0.051* | |
H6B | 0.1558 | −0.0538 | 0.4139 | 0.051* | |
C6A | 0.0382 (3) | 0.2480 (2) | 0.4275 (2) | 0.0464 (8) | |
H6A1 | −0.0193 | 0.2527 | 0.3972 | 0.056* | |
H6A2 | 0.0046 | 0.2678 | 0.4692 | 0.056* | |
C11B | 0.6425 (3) | −0.0712 (2) | 0.36006 (16) | 0.0345 (7) | |
C11A | 0.4363 (2) | 0.3534 (2) | 0.39620 (16) | 0.0314 (6) | |
C12B | 0.6578 (3) | −0.1687 (2) | 0.37073 (19) | 0.0439 (8) | |
H12B | 0.5939 | −0.2084 | 0.3787 | 0.053* | |
C12A | 0.4272 (3) | 0.3740 (2) | 0.46068 (18) | 0.0421 (8) | |
H12A | 0.3546 | 0.3823 | 0.4862 | 0.050* | |
C13B | 0.7665 (3) | −0.2084 (2) | 0.36978 (19) | 0.0474 (8) | |
H13B | 0.7751 | −0.2743 | 0.3776 | 0.057* | |
C13A | 0.5241 (3) | 0.3824 (2) | 0.48810 (18) | 0.0443 (8) | |
H13A | 0.5167 | 0.3964 | 0.5315 | 0.053* | |
C14B | 0.8603 (3) | −0.1508 (3) | 0.35735 (18) | 0.0471 (8) | |
C14A | 0.6301 (3) | 0.3699 (2) | 0.45095 (19) | 0.0422 (8) | |
C15B | 0.8488 (3) | −0.0547 (3) | 0.3474 (2) | 0.0525 (9) | |
H15B | 0.9134 | −0.0158 | 0.3396 | 0.063* | |
C15A | 0.6430 (3) | 0.3497 (2) | 0.3871 (2) | 0.0461 (8) | |
H15A | 0.7162 | 0.3422 | 0.3618 | 0.055* | |
C16B | 0.7397 (3) | −0.0152 (2) | 0.34917 (18) | 0.0450 (8) | |
H16B | 0.7318 | 0.0502 | 0.3429 | 0.054* | |
C16A | 0.5461 (3) | 0.3405 (2) | 0.36039 (18) | 0.0387 (7) | |
H16A | 0.5546 | 0.3252 | 0.3175 | 0.046* | |
C21B | 0.4888 (3) | 0.1254 (2) | 0.25042 (17) | 0.0359 (7) | |
C21A | 0.2926 (3) | 0.4648 (2) | 0.24032 (16) | 0.0345 (7) | |
C22B | 0.4879 (3) | 0.1759 (2) | 0.16965 (16) | 0.0354 (7) | |
C22A | 0.2763 (3) | 0.5667 (2) | 0.18981 (16) | 0.0345 (7) | |
C23B | 0.4699 (3) | 0.2756 (2) | 0.14136 (18) | 0.0465 (8) | |
H23B | 0.4663 | 0.3118 | 0.1719 | 0.056* | |
C23A | 0.2758 (3) | 0.5862 (2) | 0.11482 (18) | 0.0459 (8) | |
H23A | 0.2877 | 0.5364 | 0.0959 | 0.055* | |
C24B | 0.4577 (3) | 0.3198 (2) | 0.06846 (18) | 0.0491 (9) | |
H24B | 0.4470 | 0.3867 | 0.0489 | 0.059* | |
C24A | 0.2579 (3) | 0.6787 (3) | 0.06877 (19) | 0.0488 (9) | |
H24A | 0.2563 | 0.6924 | 0.0185 | 0.059* | |
C25B | 0.4613 (3) | 0.2653 (2) | 0.02361 (17) | 0.0407 (8) | |
C25A | 0.2422 (3) | 0.7517 (2) | 0.09796 (18) | 0.0409 (8) | |
C26B | 0.4963 (3) | 0.1263 (2) | 0.12049 (16) | 0.0338 (7) | |
C26A | 0.2602 (2) | 0.6436 (2) | 0.21523 (16) | 0.0340 (7) | |
C27B | 0.5222 (3) | 0.0205 (2) | 0.14588 (17) | 0.0393 (7) | |
H27A | 0.5808 | 0.0091 | 0.1076 | 0.047* | |
H27B | 0.4530 | −0.0165 | 0.1515 | 0.047* | |
C27A | 0.2574 (3) | 0.6260 (2) | 0.29575 (16) | 0.0361 (7) | |
H27C | 0.1779 | 0.6257 | 0.3209 | 0.043* | |
H27D | 0.2984 | 0.6794 | 0.2989 | 0.043* | |
C28B | 0.5642 (3) | −0.0159 (2) | 0.21994 (16) | 0.0367 (7) | |
H28A | 0.6419 | 0.0098 | 0.2114 | 0.044* | |
H28B | 0.5675 | −0.0865 | 0.2378 | 0.044* | |
C28A | 0.3113 (3) | 0.5301 (2) | 0.33682 (16) | 0.0329 (7) | |
H28C | 0.3945 | 0.5375 | 0.3204 | 0.040* | |
H28D | 0.2941 | 0.5181 | 0.3902 | 0.040* | |
C31B | 0.2667 (3) | 0.0329 (2) | 0.26030 (16) | 0.0343 (7) | |
C31A | 0.0542 (3) | 0.4546 (2) | 0.30558 (17) | 0.0353 (7) | |
C32B | 0.2235 (3) | 0.1228 (2) | 0.25610 (19) | 0.0447 (8) | |
H32B | 0.2546 | 0.1598 | 0.2778 | 0.054* | |
C32A | 0.0418 (3) | 0.4413 (2) | 0.24147 (19) | 0.0463 (8) | |
H32A | 0.0889 | 0.3991 | 0.2239 | 0.056* | |
C33B | 0.1324 (3) | 0.1571 (3) | 0.2188 (2) | 0.0576 (10) | |
H33B | 0.1031 | 0.2181 | 0.2147 | 0.069* | |
C33A | −0.0430 (3) | 0.4924 (3) | 0.2033 (2) | 0.0586 (10) | |
H33A | −0.0522 | 0.4848 | 0.1594 | 0.070* | |
C34B | 0.0855 (3) | 0.1012 (3) | 0.1878 (2) | 0.0591 (10) | |
H34B | 0.0253 | 0.1256 | 0.1625 | 0.071* | |
C34A | −0.1127 (3) | 0.5535 (3) | 0.2300 (2) | 0.0685 (12) | |
H34A | −0.1675 | 0.5885 | 0.2031 | 0.082* | |
C35B | 0.1254 (3) | 0.0101 (3) | 0.1932 (2) | 0.0501 (9) | |
H35B | 0.0927 | −0.0279 | 0.1728 | 0.060* | |
C35A | −0.1038 (3) | 0.5645 (3) | 0.2956 (2) | 0.0620 (11) | |
H35A | −0.1526 | 0.6052 | 0.3139 | 0.074* | |
C36B | 0.2163 (3) | −0.0223 (2) | 0.23029 (17) | 0.0370 (7) | |
C36A | −0.0204 (3) | 0.5134 (2) | 0.33343 (18) | 0.0396 (7) | |
C37B | 0.3501 (3) | −0.1224 (2) | 0.28654 (16) | 0.0342 (7) | |
C37A | 0.0894 (3) | 0.4501 (2) | 0.42181 (17) | 0.0330 (7) | |
C51B | 0.4430 (3) | 0.3075 (2) | −0.05451 (17) | 0.0391 (7) | |
C51A | 0.2227 (3) | 0.8532 (2) | 0.04837 (18) | 0.0434 (8) | |
C52B | 0.4088 (3) | 0.4027 (3) | −0.0863 (2) | 0.0526 (9) | |
H52B | 0.3966 | 0.4420 | −0.0578 | 0.063* | |
C52A | 0.1596 (4) | 0.8708 (3) | −0.0074 (2) | 0.0645 (11) | |
H52A | 0.1286 | 0.8181 | −0.0135 | 0.077* | |
C53B | 0.3926 (3) | 0.4398 (3) | −0.1591 (2) | 0.0526 (9) | |
H53B | 0.3707 | 0.5041 | −0.1797 | 0.063* | |
C53A | 0.1407 (4) | 0.9640 (3) | −0.0545 (2) | 0.0702 (12) | |
H53A | 0.0978 | 0.9734 | −0.0916 | 0.084* | |
C54B | 0.4085 (3) | 0.3825 (2) | −0.20156 (17) | 0.0407 (8) | |
C54A | 0.1851 (3) | 1.0421 (3) | −0.0465 (2) | 0.0586 (10) | |
C55B | 0.4435 (3) | 0.2881 (2) | −0.17192 (19) | 0.0473 (8) | |
H55B | 0.4561 | 0.2493 | −0.2009 | 0.057* | |
C55A | 0.2505 (4) | 1.0263 (3) | 0.0077 (2) | 0.0597 (10) | |
H55A | 0.2830 | 1.0791 | 0.0127 | 0.072* | |
C56B | 0.4595 (3) | 0.2517 (2) | −0.09857 (18) | 0.0468 (8) | |
H56B | 0.4821 | 0.1876 | −0.0783 | 0.056* | |
C56A | 0.2681 (3) | 0.9333 (3) | 0.05454 (19) | 0.0511 (9) | |
H56A | 0.3117 | 0.9243 | 0.0912 | 0.061* | |
N1B | 0.3275 (2) | −0.04168 (17) | 0.38060 (13) | 0.0329 (6) | |
N1A | 0.1396 (2) | 0.30634 (17) | 0.38312 (13) | 0.0336 (6) | |
N2B | 0.4825 (2) | 0.16914 (18) | 0.04989 (14) | 0.0394 (6) | |
N2A | 0.2435 (2) | 0.73521 (18) | 0.17025 (14) | 0.0389 (6) | |
N3B | 0.2667 (2) | −0.11384 (19) | 0.24572 (15) | 0.0378 (6) | |
N3A | 0.0019 (2) | 0.5097 (2) | 0.40164 (16) | 0.0423 (7) | |
O1B | 0.4912 (2) | 0.17151 (15) | 0.28999 (12) | 0.0506 (6) | |
O1A | 0.3175 (2) | 0.40314 (17) | 0.21365 (12) | 0.0573 (7) | |
O2B | 0.40684 (19) | −0.19446 (15) | 0.30953 (13) | 0.0441 (5) | |
O2A | 0.12263 (18) | 0.42887 (15) | 0.48137 (12) | 0.0412 (5) | |
O3B | 0.3894 (2) | 0.42566 (17) | −0.27308 (12) | 0.0518 (6) | |
O3A | 0.1723 (3) | 1.13645 (19) | −0.09003 (17) | 0.0847 (10) | |
S1B | 0.23841 (8) | −0.11082 (7) | 0.52141 (5) | 0.0504 (2) | |
S1A | 0.09202 (9) | 0.12520 (6) | 0.46069 (6) | 0.0564 (3) | |
Cl1B | 0.99560 (8) | −0.20181 (9) | 0.35523 (7) | 0.0754 (3) | |
Cl1A | 0.75107 (9) | 0.38243 (8) | 0.48536 (6) | 0.0711 (3) | |
C57B | 0.3971 (3) | 0.3675 (3) | −0.3168 (2) | 0.0545 (9) | |
H57A | 0.3819 | 0.4063 | −0.3656 | 0.082* | |
H57C | 0.4732 | 0.3421 | −0.3221 | 0.082* | |
H57B | 0.3413 | 0.3146 | −0.2927 | 0.082* | |
C57A | 0.1111 (5) | 1.1555 (4) | −0.1488 (3) | 0.112 (2) | |
H57D | 0.1086 | 1.2246 | −0.1749 | 0.168* | |
H57E | 0.1492 | 1.1259 | −0.1833 | 0.168* | |
H57F | 0.0338 | 1.1288 | −0.1283 | 0.168* | |
H3B | 0.251 (3) | −0.161 (3) | 0.229 (2) | 0.063 (12)* | |
H3A | −0.037 (4) | 0.532 (3) | 0.432 (2) | 0.074 (14)* |
U11 | U22 | U33 | U12 | U13 | U23 | |
C1B | 0.0321 (16) | 0.0331 (15) | 0.0321 (16) | −0.0013 (13) | −0.0072 (13) | −0.0117 (13) |
C1A | 0.0332 (16) | 0.0284 (15) | 0.0301 (15) | 0.0057 (12) | −0.0062 (13) | −0.0105 (12) |
C2B | 0.0333 (16) | 0.0323 (15) | 0.0322 (16) | 0.0036 (13) | −0.0071 (13) | −0.0136 (13) |
C2A | 0.0255 (15) | 0.0279 (14) | 0.0319 (15) | 0.0032 (12) | −0.0055 (12) | −0.0115 (12) |
C3B | 0.0300 (16) | 0.0305 (15) | 0.0361 (16) | 0.0050 (12) | −0.0112 (13) | −0.0138 (13) |
C3A | 0.0325 (16) | 0.0281 (15) | 0.0367 (16) | 0.0046 (12) | −0.0059 (13) | −0.0141 (13) |
C4B | 0.0326 (16) | 0.0326 (16) | 0.0364 (17) | 0.0001 (13) | −0.0100 (13) | −0.0100 (13) |
C4A | 0.0331 (16) | 0.0301 (15) | 0.0340 (16) | 0.0033 (13) | −0.0053 (13) | −0.0119 (13) |
C5B | 0.0398 (19) | 0.052 (2) | 0.0340 (17) | −0.0041 (15) | −0.0109 (15) | −0.0099 (15) |
C5A | 0.048 (2) | 0.0299 (16) | 0.0466 (19) | 0.0050 (14) | −0.0085 (16) | −0.0112 (14) |
C6B | 0.0390 (19) | 0.0427 (18) | 0.0428 (19) | −0.0013 (15) | −0.0031 (15) | −0.0140 (15) |
C6A | 0.0373 (19) | 0.0365 (17) | 0.060 (2) | −0.0059 (14) | −0.0059 (16) | −0.0130 (16) |
C11B | 0.0303 (16) | 0.0394 (17) | 0.0325 (16) | −0.0012 (13) | −0.0086 (13) | −0.0100 (13) |
C11A | 0.0284 (16) | 0.0301 (15) | 0.0329 (16) | 0.0039 (12) | −0.0060 (13) | −0.0086 (13) |
C12B | 0.0315 (17) | 0.0454 (19) | 0.057 (2) | −0.0010 (14) | −0.0123 (15) | −0.0185 (16) |
C12A | 0.0315 (17) | 0.052 (2) | 0.0418 (19) | 0.0042 (15) | −0.0043 (14) | −0.0177 (16) |
C13B | 0.041 (2) | 0.0433 (19) | 0.057 (2) | 0.0096 (16) | −0.0143 (17) | −0.0164 (17) |
C13A | 0.048 (2) | 0.0467 (19) | 0.0387 (18) | −0.0006 (16) | −0.0112 (16) | −0.0143 (15) |
C14B | 0.0302 (18) | 0.062 (2) | 0.0420 (19) | 0.0042 (16) | −0.0066 (15) | −0.0117 (17) |
C14A | 0.0399 (19) | 0.0363 (17) | 0.050 (2) | −0.0017 (14) | −0.0193 (16) | −0.0099 (15) |
C15B | 0.0294 (18) | 0.063 (2) | 0.059 (2) | −0.0086 (16) | −0.0085 (16) | −0.0143 (19) |
C15A | 0.0334 (18) | 0.0461 (19) | 0.057 (2) | 0.0070 (15) | −0.0095 (16) | −0.0177 (17) |
C16B | 0.0388 (19) | 0.0455 (19) | 0.047 (2) | −0.0065 (15) | −0.0089 (16) | −0.0112 (16) |
C16A | 0.0363 (18) | 0.0392 (17) | 0.0418 (18) | 0.0067 (14) | −0.0083 (15) | −0.0165 (14) |
C21B | 0.0370 (17) | 0.0340 (16) | 0.0394 (18) | 0.0028 (13) | −0.0059 (14) | −0.0176 (14) |
C21A | 0.0331 (17) | 0.0358 (16) | 0.0345 (17) | 0.0053 (13) | −0.0041 (13) | −0.0147 (14) |
C22B | 0.0373 (17) | 0.0338 (16) | 0.0323 (16) | 0.0001 (13) | −0.0014 (13) | −0.0116 (13) |
C22A | 0.0332 (17) | 0.0362 (16) | 0.0327 (16) | 0.0032 (13) | −0.0060 (13) | −0.0113 (13) |
C23B | 0.062 (2) | 0.0357 (17) | 0.0421 (19) | 0.0043 (16) | −0.0073 (17) | −0.0164 (15) |
C23A | 0.053 (2) | 0.0440 (19) | 0.0404 (19) | 0.0042 (16) | −0.0071 (16) | −0.0170 (16) |
C24B | 0.068 (2) | 0.0322 (17) | 0.041 (2) | 0.0078 (16) | −0.0086 (17) | −0.0084 (15) |
C24A | 0.056 (2) | 0.053 (2) | 0.0357 (18) | 0.0036 (17) | −0.0158 (17) | −0.0101 (16) |
C25B | 0.0413 (19) | 0.0405 (18) | 0.0342 (17) | 0.0030 (15) | −0.0029 (14) | −0.0092 (14) |
C25A | 0.0369 (18) | 0.0405 (18) | 0.0396 (19) | 0.0002 (14) | −0.0086 (15) | −0.0072 (15) |
C26B | 0.0331 (16) | 0.0355 (16) | 0.0313 (16) | 0.0015 (13) | −0.0026 (13) | −0.0125 (13) |
C26A | 0.0258 (15) | 0.0376 (17) | 0.0354 (17) | −0.0021 (13) | −0.0037 (13) | −0.0104 (14) |
C27B | 0.0460 (19) | 0.0384 (17) | 0.0358 (17) | 0.0068 (15) | −0.0077 (15) | −0.0170 (14) |
C27A | 0.0384 (18) | 0.0273 (15) | 0.0410 (18) | 0.0000 (13) | −0.0068 (14) | −0.0110 (13) |
C28B | 0.0383 (18) | 0.0347 (16) | 0.0373 (17) | 0.0037 (14) | −0.0066 (14) | −0.0142 (14) |
C28A | 0.0322 (16) | 0.0338 (16) | 0.0335 (16) | 0.0012 (13) | −0.0082 (13) | −0.0123 (13) |
C31B | 0.0326 (17) | 0.0379 (17) | 0.0339 (16) | 0.0051 (13) | −0.0093 (13) | −0.0139 (13) |
C31A | 0.0300 (16) | 0.0375 (17) | 0.0383 (17) | 0.0006 (13) | −0.0101 (14) | −0.0119 (14) |
C32B | 0.043 (2) | 0.0434 (19) | 0.052 (2) | 0.0129 (15) | −0.0165 (16) | −0.0202 (16) |
C32A | 0.046 (2) | 0.048 (2) | 0.050 (2) | 0.0043 (16) | −0.0157 (17) | −0.0213 (16) |
C33B | 0.058 (2) | 0.051 (2) | 0.065 (2) | 0.0263 (19) | −0.023 (2) | −0.0205 (19) |
C33A | 0.053 (2) | 0.073 (3) | 0.054 (2) | −0.001 (2) | −0.0235 (19) | −0.022 (2) |
C34B | 0.048 (2) | 0.067 (3) | 0.065 (3) | 0.0194 (19) | −0.0293 (19) | −0.021 (2) |
C34A | 0.049 (2) | 0.089 (3) | 0.068 (3) | 0.024 (2) | −0.031 (2) | −0.023 (2) |
C35B | 0.044 (2) | 0.058 (2) | 0.055 (2) | 0.0074 (17) | −0.0232 (17) | −0.0214 (18) |
C35A | 0.044 (2) | 0.079 (3) | 0.067 (3) | 0.029 (2) | −0.0198 (19) | −0.030 (2) |
C36B | 0.0349 (17) | 0.0376 (17) | 0.0379 (17) | 0.0036 (14) | −0.0114 (14) | −0.0113 (14) |
C36A | 0.0311 (17) | 0.0419 (18) | 0.0435 (19) | 0.0067 (14) | −0.0054 (14) | −0.0146 (15) |
C37B | 0.0335 (17) | 0.0344 (16) | 0.0352 (17) | 0.0041 (13) | −0.0099 (14) | −0.0120 (13) |
C37A | 0.0306 (16) | 0.0316 (15) | 0.0371 (17) | 0.0005 (13) | −0.0039 (14) | −0.0142 (13) |
C51B | 0.0400 (18) | 0.0371 (17) | 0.0349 (17) | 0.0017 (14) | −0.0053 (14) | −0.0085 (14) |
C51A | 0.045 (2) | 0.0366 (17) | 0.0416 (19) | −0.0016 (15) | −0.0101 (16) | −0.0054 (15) |
C52B | 0.065 (2) | 0.046 (2) | 0.046 (2) | 0.0096 (18) | −0.0132 (18) | −0.0164 (17) |
C52A | 0.076 (3) | 0.046 (2) | 0.071 (3) | −0.001 (2) | −0.040 (2) | −0.0081 (19) |
C53B | 0.062 (2) | 0.0424 (19) | 0.048 (2) | 0.0092 (17) | −0.0147 (18) | −0.0086 (17) |
C53A | 0.082 (3) | 0.056 (2) | 0.069 (3) | 0.004 (2) | −0.042 (2) | −0.005 (2) |
C54B | 0.0330 (17) | 0.0470 (19) | 0.0338 (17) | 0.0016 (14) | −0.0051 (14) | −0.0060 (15) |
C54A | 0.063 (3) | 0.047 (2) | 0.049 (2) | 0.0032 (19) | −0.0100 (19) | 0.0007 (18) |
C55B | 0.052 (2) | 0.0453 (19) | 0.044 (2) | 0.0076 (16) | −0.0097 (16) | −0.0155 (16) |
C55A | 0.078 (3) | 0.044 (2) | 0.053 (2) | −0.0039 (19) | −0.011 (2) | −0.0130 (18) |
C56B | 0.055 (2) | 0.0403 (18) | 0.0395 (19) | 0.0086 (16) | −0.0094 (16) | −0.0087 (15) |
C56A | 0.058 (2) | 0.052 (2) | 0.0384 (19) | −0.0020 (18) | −0.0086 (17) | −0.0116 (16) |
N1B | 0.0287 (13) | 0.0336 (13) | 0.0365 (14) | 0.0015 (11) | −0.0087 (11) | −0.0121 (11) |
N1A | 0.0303 (14) | 0.0285 (13) | 0.0409 (14) | 0.0016 (10) | −0.0077 (11) | −0.0112 (11) |
N2B | 0.0431 (16) | 0.0391 (15) | 0.0322 (14) | 0.0039 (12) | −0.0059 (12) | −0.0098 (12) |
N2A | 0.0345 (15) | 0.0352 (14) | 0.0419 (16) | −0.0001 (11) | −0.0102 (12) | −0.0066 (12) |
N3B | 0.0388 (15) | 0.0352 (14) | 0.0447 (16) | 0.0011 (12) | −0.0164 (13) | −0.0166 (12) |
N3A | 0.0369 (16) | 0.0492 (17) | 0.0423 (17) | 0.0120 (13) | −0.0048 (13) | −0.0215 (14) |
O1B | 0.0823 (18) | 0.0331 (12) | 0.0411 (13) | 0.0022 (12) | −0.0141 (12) | −0.0178 (10) |
O1A | 0.0852 (19) | 0.0486 (14) | 0.0425 (14) | 0.0285 (13) | −0.0128 (13) | −0.0248 (12) |
O2B | 0.0461 (14) | 0.0334 (12) | 0.0592 (15) | 0.0087 (10) | −0.0226 (11) | −0.0192 (11) |
O2A | 0.0410 (13) | 0.0474 (13) | 0.0384 (13) | 0.0095 (10) | −0.0080 (10) | −0.0201 (10) |
O3B | 0.0545 (15) | 0.0529 (14) | 0.0413 (13) | 0.0095 (12) | −0.0129 (11) | −0.0086 (11) |
O3A | 0.111 (3) | 0.0476 (16) | 0.081 (2) | 0.0039 (16) | −0.0381 (19) | 0.0030 (15) |
S1B | 0.0416 (5) | 0.0637 (6) | 0.0402 (5) | −0.0072 (4) | −0.0027 (4) | −0.0140 (4) |
S1A | 0.0539 (6) | 0.0348 (5) | 0.0721 (7) | −0.0071 (4) | −0.0061 (5) | −0.0121 (4) |
Cl1B | 0.0347 (5) | 0.0922 (8) | 0.0890 (8) | 0.0150 (5) | −0.0113 (5) | −0.0234 (6) |
Cl1A | 0.0504 (6) | 0.0867 (7) | 0.0837 (7) | −0.0068 (5) | −0.0301 (5) | −0.0301 (6) |
C57B | 0.051 (2) | 0.070 (2) | 0.046 (2) | 0.0097 (19) | −0.0162 (17) | −0.0227 (19) |
C57A | 0.151 (6) | 0.072 (3) | 0.091 (4) | 0.016 (3) | −0.061 (4) | 0.013 (3) |
C1B—C11B | 1.509 (4) | C24A—H24A | 0.9300 |
C1B—C4B | 1.526 (4) | C25B—N2B | 1.349 (4) |
C1B—C2B | 1.580 (4) | C25B—C51B | 1.475 (4) |
C1B—H1B | 0.9800 | C25A—N2A | 1.343 (4) |
C1A—C11A | 1.512 (4) | C25A—C51A | 1.490 (4) |
C1A—C4A | 1.521 (4) | C26B—N2B | 1.327 (4) |
C1A—C2A | 1.582 (4) | C26B—C27B | 1.491 (4) |
C1A—H1A | 0.9800 | C26A—N2A | 1.344 (4) |
C2B—C28B | 1.529 (4) | C26A—C27A | 1.489 (4) |
C2B—C21B | 1.535 (4) | C27B—C28B | 1.520 (4) |
C2B—C3B | 1.601 (4) | C27B—H27A | 0.9700 |
C2A—C28A | 1.523 (4) | C27B—H27B | 0.9700 |
C2A—C21A | 1.533 (4) | C27A—C28A | 1.527 (4) |
C2A—C3A | 1.601 (4) | C27A—H27C | 0.9700 |
C3B—N1B | 1.455 (4) | C27A—H27D | 0.9700 |
C3B—C31B | 1.503 (4) | C28B—H28A | 0.9700 |
C3B—C37B | 1.550 (4) | C28B—H28B | 0.9700 |
C3A—N1A | 1.455 (3) | C28A—H28C | 0.9700 |
C3A—C31A | 1.501 (4) | C28A—H28D | 0.9700 |
C3A—C37A | 1.551 (4) | C31B—C36B | 1.377 (4) |
C4B—N1B | 1.457 (4) | C31B—C32B | 1.379 (4) |
C4B—C5B | 1.509 (4) | C31A—C32A | 1.371 (4) |
C4B—H4B | 0.9800 | C31A—C36A | 1.381 (4) |
C4A—N1A | 1.454 (4) | C32B—C33B | 1.391 (4) |
C4A—C5A | 1.513 (4) | C32B—H32B | 0.9300 |
C4A—H4A | 0.9800 | C32A—C33A | 1.392 (5) |
C5B—S1B | 1.819 (3) | C32A—H32A | 0.9300 |
C5B—H5A | 0.9700 | C33B—C34B | 1.378 (5) |
C5B—H5B | 0.9700 | C33B—H33B | 0.9300 |
C5A—S1A | 1.822 (3) | C33A—C34A | 1.368 (5) |
C5A—H5A1 | 0.9700 | C33A—H33A | 0.9300 |
C5A—H5A2 | 0.9700 | C34B—C35B | 1.377 (5) |
C6B—N1B | 1.435 (4) | C34B—H34B | 0.9300 |
C6B—S1B | 1.814 (3) | C34A—C35A | 1.371 (5) |
C6B—H6A | 0.9700 | C34A—H34A | 0.9300 |
C6B—H6B | 0.9700 | C35B—C36B | 1.383 (4) |
C6A—N1A | 1.437 (4) | C35B—H35B | 0.9300 |
C6A—S1A | 1.815 (3) | C35A—C36A | 1.376 (4) |
C6A—H6A1 | 0.9700 | C35A—H35A | 0.9300 |
C6A—H6A2 | 0.9700 | C36B—N3B | 1.401 (4) |
C11B—C16B | 1.383 (4) | C36A—N3A | 1.389 (4) |
C11B—C12B | 1.384 (4) | C37B—O2B | 1.218 (3) |
C11A—C12A | 1.382 (4) | C37B—N3B | 1.360 (4) |
C11A—C16A | 1.387 (4) | C37A—O2A | 1.226 (3) |
C12B—C13B | 1.387 (4) | C37A—N3A | 1.348 (4) |
C12B—H12B | 0.9300 | C51B—C56B | 1.377 (4) |
C12A—C13A | 1.385 (4) | C51B—C52B | 1.387 (4) |
C12A—H12A | 0.9300 | C51A—C56A | 1.374 (5) |
C13B—C14B | 1.357 (5) | C51A—C52A | 1.380 (5) |
C13B—H13B | 0.9300 | C52B—C53B | 1.370 (5) |
C13A—C14A | 1.358 (5) | C52B—H52B | 0.9300 |
C13A—H13A | 0.9300 | C52A—C53A | 1.381 (5) |
C14B—C15B | 1.363 (5) | C52A—H52A | 0.9300 |
C14B—Cl1B | 1.735 (3) | C53B—C54B | 1.370 (5) |
C14A—C15A | 1.363 (5) | C53B—H53B | 0.9300 |
C14A—Cl1A | 1.740 (3) | C53A—C54A | 1.360 (6) |
C15B—C16B | 1.389 (5) | C53A—H53A | 0.9300 |
C15B—H15B | 0.9300 | C54B—O3B | 1.364 (4) |
C15A—C16A | 1.381 (4) | C54B—C55B | 1.376 (4) |
C15A—H15A | 0.9300 | C54A—O3A | 1.357 (4) |
C16B—H16B | 0.9300 | C54A—C55A | 1.377 (5) |
C16A—H16A | 0.9300 | C55B—C56B | 1.380 (4) |
C21B—O1B | 1.207 (3) | C55B—H55B | 0.9300 |
C21B—C22B | 1.476 (4) | C55A—C56A | 1.373 (5) |
C21A—O1A | 1.203 (3) | C55A—H55A | 0.9300 |
C21A—C22A | 1.492 (4) | C56B—H56B | 0.9300 |
C22B—C23B | 1.389 (4) | C56A—H56A | 0.9300 |
C22B—C26B | 1.392 (4) | N3B—H3B | 0.90 (4) |
C22A—C23A | 1.384 (4) | N3A—H3A | 0.84 (4) |
C22A—C26A | 1.387 (4) | O3B—C57B | 1.405 (4) |
C23B—C24B | 1.363 (4) | O3A—C57A | 1.411 (5) |
C23B—H23B | 0.9300 | C57B—H57A | 0.9600 |
C23A—C24A | 1.363 (4) | C57B—H57C | 0.9600 |
C23A—H23A | 0.9300 | C57B—H57B | 0.9600 |
C24B—C25B | 1.384 (4) | C57A—H57D | 0.9600 |
C24B—H24B | 0.9300 | C57A—H57E | 0.9600 |
C24A—C25A | 1.382 (5) | C57A—H57F | 0.9600 |
C11B—C1B—C4B | 116.3 (2) | N2B—C26B—C22B | 122.9 (3) |
C11B—C1B—C2B | 115.1 (2) | N2B—C26B—C27B | 116.7 (3) |
C4B—C1B—C2B | 105.5 (2) | C22B—C26B—C27B | 120.4 (3) |
C11B—C1B—H1B | 106.4 | N2A—C26A—C22A | 122.7 (3) |
C4B—C1B—H1B | 106.4 | N2A—C26A—C27A | 117.1 (3) |
C2B—C1B—H1B | 106.4 | C22A—C26A—C27A | 120.2 (3) |
C11A—C1A—C4A | 114.8 (2) | C26B—C27B—C28B | 112.6 (2) |
C11A—C1A—C2A | 116.2 (2) | C26B—C27B—H27A | 109.1 |
C4A—C1A—C2A | 104.9 (2) | C28B—C27B—H27A | 109.1 |
C11A—C1A—H1A | 106.8 | C26B—C27B—H27B | 109.1 |
C4A—C1A—H1A | 106.8 | C28B—C27B—H27B | 109.1 |
C2A—C1A—H1A | 106.8 | H27A—C27B—H27B | 107.8 |
C28B—C2B—C21B | 106.4 (2) | C26A—C27A—C28A | 113.2 (2) |
C28B—C2B—C1B | 115.1 (2) | C26A—C27A—H27C | 108.9 |
C21B—C2B—C1B | 109.1 (2) | C28A—C27A—H27C | 108.9 |
C28B—C2B—C3B | 113.6 (2) | C26A—C27A—H27D | 108.9 |
C21B—C2B—C3B | 109.0 (2) | C28A—C27A—H27D | 108.9 |
C1B—C2B—C3B | 103.5 (2) | H27C—C27A—H27D | 107.7 |
C28A—C2A—C21A | 107.1 (2) | C27B—C28B—C2B | 113.2 (2) |
C28A—C2A—C1A | 114.8 (2) | C27B—C28B—H28A | 108.9 |
C21A—C2A—C1A | 109.8 (2) | C2B—C28B—H28A | 108.9 |
C28A—C2A—C3A | 114.6 (2) | C27B—C28B—H28B | 108.9 |
C21A—C2A—C3A | 107.3 (2) | C2B—C28B—H28B | 108.9 |
C1A—C2A—C3A | 103.0 (2) | H28A—C28B—H28B | 107.7 |
N1B—C3B—C31B | 110.7 (2) | C2A—C28A—C27A | 115.4 (2) |
N1B—C3B—C37B | 112.4 (2) | C2A—C28A—H28C | 108.4 |
C31B—C3B—C37B | 101.7 (2) | C27A—C28A—H28C | 108.4 |
N1B—C3B—C2B | 100.6 (2) | C2A—C28A—H28D | 108.4 |
C31B—C3B—C2B | 121.1 (2) | C27A—C28A—H28D | 108.4 |
C37B—C3B—C2B | 110.8 (2) | H28C—C28A—H28D | 107.5 |
N1A—C3A—C31A | 112.7 (2) | C36B—C31B—C32B | 119.6 (3) |
N1A—C3A—C37A | 113.2 (2) | C36B—C31B—C3B | 108.8 (3) |
C31A—C3A—C37A | 101.4 (2) | C32B—C31B—C3B | 131.1 (3) |
N1A—C3A—C2A | 101.2 (2) | C32A—C31A—C36A | 120.2 (3) |
C31A—C3A—C2A | 117.9 (2) | C32A—C31A—C3A | 131.1 (3) |
C37A—C3A—C2A | 110.9 (2) | C36A—C31A—C3A | 108.6 (3) |
N1B—C4B—C5B | 104.0 (2) | C31B—C32B—C33B | 118.8 (3) |
N1B—C4B—C1B | 101.4 (2) | C31B—C32B—H32B | 120.6 |
C5B—C4B—C1B | 119.6 (3) | C33B—C32B—H32B | 120.6 |
N1B—C4B—H4B | 110.3 | C31A—C32A—C33A | 118.6 (3) |
C5B—C4B—H4B | 110.3 | C31A—C32A—H32A | 120.7 |
C1B—C4B—H4B | 110.3 | C33A—C32A—H32A | 120.7 |
N1A—C4A—C5A | 105.0 (2) | C34B—C33B—C32B | 120.3 (3) |
N1A—C4A—C1A | 101.1 (2) | C34B—C33B—H33B | 119.9 |
C5A—C4A—C1A | 119.9 (3) | C32B—C33B—H33B | 119.9 |
N1A—C4A—H4A | 110.0 | C34A—C33A—C32A | 120.3 (4) |
C5A—C4A—H4A | 110.0 | C34A—C33A—H33A | 119.9 |
C1A—C4A—H4A | 110.0 | C32A—C33A—H33A | 119.9 |
C4B—C5B—S1B | 104.5 (2) | C35B—C34B—C33B | 121.8 (3) |
C4B—C5B—H5A | 110.9 | C35B—C34B—H34B | 119.1 |
S1B—C5B—H5A | 110.9 | C33B—C34B—H34B | 119.1 |
C4B—C5B—H5B | 110.9 | C33A—C34A—C35A | 121.5 (3) |
S1B—C5B—H5B | 110.9 | C33A—C34A—H34A | 119.2 |
H5A—C5B—H5B | 108.9 | C35A—C34A—H34A | 119.2 |
C4A—C5A—S1A | 104.8 (2) | C34B—C35B—C36B | 116.9 (3) |
C4A—C5A—H5A1 | 110.8 | C34B—C35B—H35B | 121.6 |
S1A—C5A—H5A1 | 110.8 | C36B—C35B—H35B | 121.6 |
C4A—C5A—H5A2 | 110.8 | C34A—C35A—C36A | 118.0 (3) |
S1A—C5A—H5A2 | 110.8 | C34A—C35A—H35A | 121.0 |
H5A1—C5A—H5A2 | 108.9 | C36A—C35A—H35A | 121.0 |
N1B—C6B—S1B | 103.7 (2) | C31B—C36B—C35B | 122.6 (3) |
N1B—C6B—H6A | 111.0 | C31B—C36B—N3B | 110.6 (3) |
S1B—C6B—H6A | 111.0 | C35B—C36B—N3B | 126.7 (3) |
N1B—C6B—H6B | 111.0 | C35A—C36A—C31A | 121.3 (3) |
S1B—C6B—H6B | 111.0 | C35A—C36A—N3A | 128.4 (3) |
H6A—C6B—H6B | 109.0 | C31A—C36A—N3A | 110.3 (3) |
N1A—C6A—S1A | 103.5 (2) | O2B—C37B—N3B | 125.4 (3) |
N1A—C6A—H6A1 | 111.1 | O2B—C37B—C3B | 126.4 (3) |
S1A—C6A—H6A1 | 111.1 | N3B—C37B—C3B | 108.2 (2) |
N1A—C6A—H6A2 | 111.1 | O2A—C37A—N3A | 125.3 (3) |
S1A—C6A—H6A2 | 111.1 | O2A—C37A—C3A | 126.8 (3) |
H6A1—C6A—H6A2 | 109.0 | N3A—C37A—C3A | 107.9 (3) |
C16B—C11B—C12B | 117.4 (3) | C56B—C51B—C52B | 117.6 (3) |
C16B—C11B—C1B | 119.7 (3) | C56B—C51B—C25B | 119.8 (3) |
C12B—C11B—C1B | 122.9 (3) | C52B—C51B—C25B | 122.6 (3) |
C12A—C11A—C16A | 117.5 (3) | C56A—C51A—C52A | 116.8 (3) |
C12A—C11A—C1A | 122.9 (3) | C56A—C51A—C25A | 122.2 (3) |
C16A—C11A—C1A | 119.6 (3) | C52A—C51A—C25A | 121.0 (3) |
C11B—C12B—C13B | 121.3 (3) | C53B—C52B—C51B | 121.1 (3) |
C11B—C12B—H12B | 119.4 | C53B—C52B—H52B | 119.4 |
C13B—C12B—H12B | 119.4 | C51B—C52B—H52B | 119.4 |
C11A—C12A—C13A | 121.3 (3) | C51A—C52A—C53A | 122.3 (4) |
C11A—C12A—H12A | 119.4 | C51A—C52A—H52A | 118.9 |
C13A—C12A—H12A | 119.4 | C53A—C52A—H52A | 118.9 |
C14B—C13B—C12B | 119.7 (3) | C52B—C53B—C54B | 120.1 (3) |
C14B—C13B—H13B | 120.1 | C52B—C53B—H53B | 119.9 |
C12B—C13B—H13B | 120.1 | C54B—C53B—H53B | 119.9 |
C14A—C13A—C12A | 119.3 (3) | C54A—C53A—C52A | 119.8 (4) |
C14A—C13A—H13A | 120.3 | C54A—C53A—H53A | 120.1 |
C12A—C13A—H13A | 120.3 | C52A—C53A—H53A | 120.1 |
C13B—C14B—C15B | 120.8 (3) | O3B—C54B—C53B | 115.8 (3) |
C13B—C14B—Cl1B | 118.9 (3) | O3B—C54B—C55B | 124.0 (3) |
C15B—C14B—Cl1B | 120.3 (3) | C53B—C54B—C55B | 120.2 (3) |
C13A—C14A—C15A | 121.3 (3) | O3A—C54A—C53A | 124.5 (4) |
C13A—C14A—Cl1A | 118.8 (3) | O3A—C54A—C55A | 116.6 (4) |
C15A—C14A—Cl1A | 119.9 (3) | C53A—C54A—C55A | 118.9 (3) |
C14B—C15B—C16B | 119.4 (3) | C54B—C55B—C56B | 119.0 (3) |
C14B—C15B—H15B | 120.3 | C54B—C55B—H55B | 120.5 |
C16B—C15B—H15B | 120.3 | C56B—C55B—H55B | 120.5 |
C14A—C15A—C16A | 119.2 (3) | C56A—C55A—C54A | 120.8 (4) |
C14A—C15A—H15A | 120.4 | C56A—C55A—H55A | 119.6 |
C16A—C15A—H15A | 120.4 | C54A—C55A—H55A | 119.6 |
C11B—C16B—C15B | 121.4 (3) | C51B—C56B—C55B | 121.9 (3) |
C11B—C16B—H16B | 119.3 | C51B—C56B—H56B | 119.1 |
C15B—C16B—H16B | 119.3 | C55B—C56B—H56B | 119.1 |
C15A—C16A—C11A | 121.4 (3) | C55A—C56A—C51A | 121.4 (3) |
C15A—C16A—H16A | 119.3 | C55A—C56A—H56A | 119.3 |
C11A—C16A—H16A | 119.3 | C51A—C56A—H56A | 119.3 |
O1B—C21B—C22B | 120.4 (3) | C6B—N1B—C3B | 120.8 (2) |
O1B—C21B—C2B | 122.3 (3) | C6B—N1B—C4B | 108.9 (2) |
C22B—C21B—C2B | 117.4 (2) | C3B—N1B—C4B | 108.6 (2) |
O1A—C21A—C22A | 119.3 (3) | C6A—N1A—C4A | 110.1 (2) |
O1A—C21A—C2A | 122.0 (3) | C6A—N1A—C3A | 120.4 (2) |
C22A—C21A—C2A | 118.7 (2) | C4A—N1A—C3A | 107.3 (2) |
C23B—C22B—C26B | 117.6 (3) | C26B—N2B—C25B | 119.1 (3) |
C23B—C22B—C21B | 119.9 (3) | C25A—N2A—C26A | 117.8 (3) |
C26B—C22B—C21B | 122.3 (3) | C37B—N3B—C36B | 110.7 (3) |
C23A—C22A—C26A | 118.1 (3) | C37B—N3B—H3B | 123 (2) |
C23A—C22A—C21A | 119.4 (3) | C36B—N3B—H3B | 127 (2) |
C26A—C22A—C21A | 122.5 (3) | C37A—N3A—C36A | 111.4 (3) |
C24B—C23B—C22B | 119.5 (3) | C37A—N3A—H3A | 119 (3) |
C24B—C23B—H23B | 120.3 | C36A—N3A—H3A | 129 (3) |
C22B—C23B—H23B | 120.3 | C54B—O3B—C57B | 117.7 (3) |
C24A—C23A—C22A | 119.8 (3) | C54A—O3A—C57A | 118.2 (4) |
C24A—C23A—H23A | 120.1 | C6B—S1B—C5B | 93.18 (14) |
C22A—C23A—H23A | 120.1 | C6A—S1A—C5A | 93.69 (14) |
C23B—C24B—C25B | 120.0 (3) | O3B—C57B—H57A | 109.5 |
C23B—C24B—H24B | 120.0 | O3B—C57B—H57C | 109.5 |
C25B—C24B—H24B | 120.0 | H57A—C57B—H57C | 109.5 |
C23A—C24A—C25A | 119.0 (3) | O3B—C57B—H57B | 109.5 |
C23A—C24A—H24A | 120.5 | H57A—C57B—H57B | 109.5 |
C25A—C24A—H24A | 120.5 | H57C—C57B—H57B | 109.5 |
N2B—C25B—C24B | 120.8 (3) | O3A—C57A—H57D | 109.5 |
N2B—C25B—C51B | 116.3 (3) | O3A—C57A—H57E | 109.5 |
C24B—C25B—C51B | 122.8 (3) | H57D—C57A—H57E | 109.5 |
N2A—C25A—C24A | 122.6 (3) | O3A—C57A—H57F | 109.5 |
N2A—C25A—C51A | 117.7 (3) | H57D—C57A—H57F | 109.5 |
C24A—C25A—C51A | 119.7 (3) | H57E—C57A—H57F | 109.5 |
C11B—C1B—C2B—C28B | 9.1 (4) | C37B—C3B—C31B—C36B | 1.6 (3) |
C4B—C1B—C2B—C28B | −120.5 (3) | C2B—C3B—C31B—C36B | 124.8 (3) |
C11B—C1B—C2B—C21B | −110.4 (3) | N1B—C3B—C31B—C32B | 54.8 (4) |
C4B—C1B—C2B—C21B | 120.1 (3) | C37B—C3B—C31B—C32B | 174.4 (3) |
C11B—C1B—C2B—C3B | 133.7 (2) | C2B—C3B—C31B—C32B | −62.4 (4) |
C4B—C1B—C2B—C3B | 4.1 (3) | N1A—C3A—C31A—C32A | −51.8 (4) |
C11A—C1A—C2A—C28A | −10.6 (4) | C37A—C3A—C31A—C32A | −173.2 (3) |
C4A—C1A—C2A—C28A | 117.3 (3) | C2A—C3A—C31A—C32A | 65.6 (4) |
C11A—C1A—C2A—C21A | 110.1 (3) | N1A—C3A—C31A—C36A | 126.0 (3) |
C4A—C1A—C2A—C21A | −122.0 (2) | C37A—C3A—C31A—C36A | 4.6 (3) |
C11A—C1A—C2A—C3A | −135.8 (2) | C2A—C3A—C31A—C36A | −116.6 (3) |
C4A—C1A—C2A—C3A | −7.9 (3) | C36B—C31B—C32B—C33B | −2.5 (5) |
C28B—C2B—C3B—N1B | 147.3 (2) | C3B—C31B—C32B—C33B | −174.7 (3) |
C21B—C2B—C3B—N1B | −94.3 (2) | C36A—C31A—C32A—C33A | 3.5 (5) |
C1B—C2B—C3B—N1B | 21.8 (3) | C3A—C31A—C32A—C33A | −178.9 (3) |
C28B—C2B—C3B—C31B | −90.5 (3) | C31B—C32B—C33B—C34B | 1.0 (6) |
C21B—C2B—C3B—C31B | 28.0 (3) | C31A—C32A—C33A—C34A | −0.7 (6) |
C1B—C2B—C3B—C31B | 144.0 (3) | C32B—C33B—C34B—C35B | 0.8 (6) |
C28B—C2B—C3B—C37B | 28.3 (3) | C32A—C33A—C34A—C35A | −1.8 (7) |
C21B—C2B—C3B—C37B | 146.7 (2) | C33B—C34B—C35B—C36B | −1.0 (6) |
C1B—C2B—C3B—C37B | −97.3 (3) | C33A—C34A—C35A—C36A | 1.3 (6) |
C28A—C2A—C3A—N1A | −145.2 (2) | C32B—C31B—C36B—C35B | 2.3 (5) |
C21A—C2A—C3A—N1A | 96.1 (2) | C3B—C31B—C36B—C35B | 176.1 (3) |
C1A—C2A—C3A—N1A | −19.7 (3) | C32B—C31B—C36B—N3B | −175.2 (3) |
C28A—C2A—C3A—C31A | 91.5 (3) | C3B—C31B—C36B—N3B | −1.4 (4) |
C21A—C2A—C3A—C31A | −27.2 (3) | C34B—C35B—C36B—C31B | −0.6 (5) |
C1A—C2A—C3A—C31A | −143.1 (2) | C34B—C35B—C36B—N3B | 176.6 (3) |
C28A—C2A—C3A—C37A | −24.7 (3) | C34A—C35A—C36A—C31A | 1.6 (6) |
C21A—C2A—C3A—C37A | −143.5 (2) | C34A—C35A—C36A—N3A | −177.2 (4) |
C1A—C2A—C3A—C37A | 100.7 (2) | C32A—C31A—C36A—C35A | −4.0 (5) |
C11B—C1B—C4B—N1B | −157.4 (2) | C3A—C31A—C36A—C35A | 177.9 (3) |
C2B—C1B—C4B—N1B | −28.5 (3) | C32A—C31A—C36A—N3A | 175.0 (3) |
C11B—C1B—C4B—C5B | 89.0 (3) | C3A—C31A—C36A—N3A | −3.1 (4) |
C2B—C1B—C4B—C5B | −142.1 (3) | N1B—C3B—C37B—O2B | −60.6 (4) |
C11A—C1A—C4A—N1A | 161.6 (2) | C31B—C3B—C37B—O2B | −179.1 (3) |
C2A—C1A—C4A—N1A | 32.8 (3) | C2B—C3B—C37B—O2B | 51.0 (4) |
C11A—C1A—C4A—C5A | −83.7 (3) | N1B—C3B—C37B—N3B | 117.2 (3) |
C2A—C1A—C4A—C5A | 147.5 (3) | C31B—C3B—C37B—N3B | −1.2 (3) |
N1B—C4B—C5B—S1B | 38.7 (3) | C2B—C3B—C37B—N3B | −131.2 (3) |
C1B—C4B—C5B—S1B | 150.9 (2) | N1A—C3A—C37A—O2A | 52.9 (4) |
N1A—C4A—C5A—S1A | −35.1 (3) | C31A—C3A—C37A—O2A | 173.9 (3) |
C1A—C4A—C5A—S1A | −147.7 (2) | C2A—C3A—C37A—O2A | −60.0 (4) |
C4B—C1B—C11B—C16B | −142.6 (3) | N1A—C3A—C37A—N3A | −125.8 (3) |
C2B—C1B—C11B—C16B | 93.4 (3) | C31A—C3A—C37A—N3A | −4.7 (3) |
C4B—C1B—C11B—C12B | 37.7 (4) | C2A—C3A—C37A—N3A | 121.3 (3) |
C2B—C1B—C11B—C12B | −86.3 (4) | N2B—C25B—C51B—C56B | −6.5 (5) |
C4A—C1A—C11A—C12A | −49.6 (4) | C24B—C25B—C51B—C56B | 173.3 (3) |
C2A—C1A—C11A—C12A | 73.3 (4) | N2B—C25B—C51B—C52B | 173.2 (3) |
C4A—C1A—C11A—C16A | 129.4 (3) | C24B—C25B—C51B—C52B | −7.0 (5) |
C2A—C1A—C11A—C16A | −107.7 (3) | N2A—C25A—C51A—C56A | 37.5 (5) |
C16B—C11B—C12B—C13B | −0.6 (5) | C24A—C25A—C51A—C56A | −142.6 (4) |
C1B—C11B—C12B—C13B | 179.0 (3) | N2A—C25A—C51A—C52A | −143.9 (4) |
C16A—C11A—C12A—C13A | 0.7 (5) | C24A—C25A—C51A—C52A | 36.0 (5) |
C1A—C11A—C12A—C13A | 179.7 (3) | C56B—C51B—C52B—C53B | −0.3 (5) |
C11B—C12B—C13B—C14B | −0.7 (5) | C25B—C51B—C52B—C53B | 180.0 (3) |
C11A—C12A—C13A—C14A | −0.2 (5) | C56A—C51A—C52A—C53A | −0.9 (6) |
C12B—C13B—C14B—C15B | 1.5 (5) | C25A—C51A—C52A—C53A | −179.6 (4) |
C12B—C13B—C14B—Cl1B | −179.2 (3) | C51B—C52B—C53B—C54B | 0.9 (6) |
C12A—C13A—C14A—C15A | 0.3 (5) | C51A—C52A—C53A—C54A | −0.1 (7) |
C12A—C13A—C14A—Cl1A | 179.1 (2) | C52B—C53B—C54B—O3B | 179.5 (3) |
C13B—C14B—C15B—C16B | −0.8 (5) | C52B—C53B—C54B—C55B | −1.5 (5) |
Cl1B—C14B—C15B—C16B | 179.8 (3) | C52A—C53A—C54A—O3A | 179.5 (4) |
C13A—C14A—C15A—C16A | −0.9 (5) | C52A—C53A—C54A—C55A | 1.4 (7) |
Cl1A—C14A—C15A—C16A | −179.7 (2) | O3B—C54B—C55B—C56B | −179.6 (3) |
C12B—C11B—C16B—C15B | 1.3 (5) | C53B—C54B—C55B—C56B | 1.5 (5) |
C1B—C11B—C16B—C15B | −178.4 (3) | O3A—C54A—C55A—C56A | 179.9 (4) |
C14B—C15B—C16B—C11B | −0.6 (5) | C53A—C54A—C55A—C56A | −1.8 (6) |
C14A—C15A—C16A—C11A | 1.4 (5) | C52B—C51B—C56B—C55B | 0.3 (5) |
C12A—C11A—C16A—C15A | −1.3 (4) | C25B—C51B—C56B—C55B | −180.0 (3) |
C1A—C11A—C16A—C15A | 179.6 (3) | C54B—C55B—C56B—C51B | −0.9 (5) |
C28B—C2B—C21B—O1B | −141.2 (3) | C54A—C55A—C56A—C51A | 0.8 (6) |
C1B—C2B—C21B—O1B | −16.5 (4) | C52A—C51A—C56A—C55A | 0.5 (6) |
C3B—C2B—C21B—O1B | 95.9 (3) | C25A—C51A—C56A—C55A | 179.2 (3) |
C28B—C2B—C21B—C22B | 38.4 (3) | S1B—C6B—N1B—C3B | 170.4 (2) |
C1B—C2B—C21B—C22B | 163.1 (2) | S1B—C6B—N1B—C4B | 43.7 (3) |
C3B—C2B—C21B—C22B | −84.5 (3) | C31B—C3B—N1B—C6B | 60.9 (3) |
C28A—C2A—C21A—O1A | 147.6 (3) | C37B—C3B—N1B—C6B | −52.0 (3) |
C1A—C2A—C21A—O1A | 22.3 (4) | C2B—C3B—N1B—C6B | −169.9 (2) |
C3A—C2A—C21A—O1A | −89.0 (3) | C31B—C3B—N1B—C4B | −172.2 (2) |
C28A—C2A—C21A—C22A | −35.4 (3) | C37B—C3B—N1B—C4B | 74.9 (3) |
C1A—C2A—C21A—C22A | −160.7 (2) | C2B—C3B—N1B—C4B | −43.0 (3) |
C3A—C2A—C21A—C22A | 88.0 (3) | C5B—C4B—N1B—C6B | −55.4 (3) |
O1B—C21B—C22B—C23B | −11.0 (5) | C1B—C4B—N1B—C6B | 179.8 (2) |
C2B—C21B—C22B—C23B | 169.4 (3) | C5B—C4B—N1B—C3B | 171.2 (2) |
O1B—C21B—C22B—C26B | 173.7 (3) | C1B—C4B—N1B—C3B | 46.4 (3) |
C2B—C21B—C22B—C26B | −6.0 (4) | S1A—C6A—N1A—C4A | −43.0 (3) |
O1A—C21A—C22A—C23A | 8.0 (5) | S1A—C6A—N1A—C3A | −168.6 (2) |
C2A—C21A—C22A—C23A | −169.1 (3) | C5A—C4A—N1A—C6A | 52.7 (3) |
O1A—C21A—C22A—C26A | −172.8 (3) | C1A—C4A—N1A—C6A | 178.1 (2) |
C2A—C21A—C22A—C26A | 10.2 (4) | C5A—C4A—N1A—C3A | −174.6 (2) |
C26B—C22B—C23B—C24B | 2.1 (5) | C1A—C4A—N1A—C3A | −49.2 (3) |
C21B—C22B—C23B—C24B | −173.5 (3) | C31A—C3A—N1A—C6A | −63.0 (3) |
C26A—C22A—C23A—C24A | −1.0 (5) | C37A—C3A—N1A—C6A | 51.4 (4) |
C21A—C22A—C23A—C24A | 178.2 (3) | C2A—C3A—N1A—C6A | 170.1 (3) |
C22B—C23B—C24B—C25B | 1.1 (5) | C31A—C3A—N1A—C4A | 170.1 (2) |
C22A—C23A—C24A—C25A | 0.9 (5) | C37A—C3A—N1A—C4A | −75.5 (3) |
C23B—C24B—C25B—N2B | −3.3 (5) | C2A—C3A—N1A—C4A | 43.3 (3) |
C23B—C24B—C25B—C51B | 176.9 (3) | C22B—C26B—N2B—C25B | 1.2 (5) |
C23A—C24A—C25A—N2A | −0.2 (5) | C27B—C26B—N2B—C25B | −178.7 (3) |
C23A—C24A—C25A—C51A | 179.9 (3) | C24B—C25B—N2B—C26B | 2.2 (5) |
C23B—C22B—C26B—N2B | −3.3 (5) | C51B—C25B—N2B—C26B | −178.0 (3) |
C21B—C22B—C26B—N2B | 172.1 (3) | C24A—C25A—N2A—C26A | −0.4 (5) |
C23B—C22B—C26B—C27B | 176.5 (3) | C51A—C25A—N2A—C26A | 179.5 (3) |
C21B—C22B—C26B—C27B | −8.0 (5) | C22A—C26A—N2A—C25A | 0.2 (4) |
C23A—C22A—C26A—N2A | 0.5 (4) | C27A—C26A—N2A—C25A | −178.0 (3) |
C21A—C22A—C26A—N2A | −178.8 (3) | O2B—C37B—N3B—C36B | 178.3 (3) |
C23A—C22A—C26A—C27A | 178.6 (3) | C3B—C37B—N3B—C36B | 0.5 (3) |
C21A—C22A—C26A—C27A | −0.6 (4) | C31B—C36B—N3B—C37B | 0.6 (4) |
N2B—C26B—C27B—C28B | 166.4 (3) | C35B—C36B—N3B—C37B | −176.8 (3) |
C22B—C26B—C27B—C28B | −13.5 (4) | O2A—C37A—N3A—C36A | −175.5 (3) |
N2A—C26A—C27A—C28A | −163.0 (3) | C3A—C37A—N3A—C36A | 3.2 (3) |
C22A—C26A—C27A—C28A | 18.8 (4) | C35A—C36A—N3A—C37A | 178.8 (4) |
C26B—C27B—C28B—C2B | 49.4 (4) | C31A—C36A—N3A—C37A | −0.2 (4) |
C21B—C2B—C28B—C27B | −60.4 (3) | C53B—C54B—O3B—C57B | −175.7 (3) |
C1B—C2B—C28B—C27B | 178.6 (2) | C55B—C54B—O3B—C57B | 5.3 (5) |
C3B—C2B—C28B—C27B | 59.5 (3) | C53A—C54A—O3A—C57A | −1.5 (7) |
C21A—C2A—C28A—C27A | 54.7 (3) | C55A—C54A—O3A—C57A | 176.7 (4) |
C1A—C2A—C28A—C27A | 176.9 (2) | N1B—C6B—S1B—C5B | −16.2 (2) |
C3A—C2A—C28A—C27A | −64.2 (3) | C4B—C5B—S1B—C6B | −13.1 (2) |
C26A—C27A—C28A—C2A | −48.1 (4) | N1A—C6A—S1A—C5A | 17.3 (2) |
N1B—C3B—C31B—C36B | −118.0 (3) | C4A—C5A—S1A—C6A | 10.3 (2) |
Cg8 and Cg17 are the centroids of the C51A–C56A and C11B–C16B rings, respectively. |
D—H···A | D—H | H···A | D···A | D—H···A |
N3A—H3A···O2Ai | 0.83 (4) | 2.05 (4) | 2.874 (4) | 172 (4) |
N3B—H3B···N2Aii | 0.91 (4) | 2.24 (4) | 3.136 (4) | 169 (3) |
C23B—H23B···O1A | 0.93 | 2.36 | 3.066 (4) | 132 |
C27A—H27D···O2Biii | 0.97 | 2.40 | 3.371 (4) | 177 |
C28A—H28C···O3Biv | 0.97 | 2.55 | 3.517 (4) | 175 |
C57B—H57C···O2Bv | 0.96 | 2.50 | 3.349 (5) | 147 |
C5A—H5A1···Cg17vi | 0.97 | 2.91 | 3.711 (4) | 140 |
C27B—H27A···Cg8iv | 0.97 | 2.89 | 3.783 (4) | 154 |
Symmetry codes: (i) −x, −y+1, −z+1; (ii) x, y−1, z; (iii) x, y+1, z; (iv) −x+1, −y+1, −z; (v) −x+1, −y, −z; (vi) −x+1, −y, −z+1. |
Acknowledgements
JS and RV thank the management of Madura College for their encouragement.
Funding information
JS thanks the UGC for funds under project No. F MRP-7018/16(SERO/UGC).
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