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Acta Crystallographica Section E: Structure Reports Online logoLink to Acta Crystallographica Section E: Structure Reports Online
. 2008 Jun 7;64(Pt 7):o1180. doi: 10.1107/S1600536808015705

Diethyl 3-amino-4-[(triphenyl­phosphor­anyl­idene)amino]thieno[2,3-b]thio­phene-2,5-dicarboxyl­ate

Xiang Wang a, Yan Li b,*, Ming-Guo Liu c
PMCID: PMC2961838  PMID: 21202823

Abstract

The asymmetric unit of the title compound, C30H27N2O4PS2, consists of two crystallographically independent mol­ecules. The thieno[2,3-b]thio­phene ring systems are planar. One of the terminal ethyl groups is disordered over two positions; the site occupancy factors are ca 0.7 and 0.3. The crystal structure is stabilized by N—H⋯N, N—H⋯O and C—H⋯O hydrogen bonds.

Related literature

Related preparation and biological activity are described by Walter (1999a ,b ). For related literature, see: Ding et al. (2004). For the crystal structure of another fused pyrimidinone derivative, see: Liu & Hu (2006). For related literature, see: Liao et al. (2007).graphic file with name e-64-o1180-scheme1.jpg

Experimental

Crystal data

  • C30H27N2O4PS2

  • M r = 574.63

  • Triclinic, Inline graphic

  • a = 13.1260 (9) Å

  • b = 15.3616 (10) Å

  • c = 16.6497 (11) Å

  • α = 68.140 (1)°

  • β = 71.043 (1)°

  • γ = 68.969 (1)°

  • V = 2836.5 (3) Å3

  • Z = 4

  • Mo Kα radiation

  • μ = 0.28 mm−1

  • T = 298 (2) K

  • 0.20 × 0.10 × 0.06 mm

Data collection

  • Bruker SMART 4K CCD area-detector diffractometer

  • Absorption correction: multi-scan (SADABS; Bruker, 2001) T min = 0.946, T max = 0.983

  • 20968 measured reflections

  • 10981 independent reflections

  • 6314 reflections with I > 2σ(I)

  • R int = 0.053

Refinement

  • R[F 2 > 2σ(F 2)] = 0.068

  • wR(F 2) = 0.159

  • S = 0.96

  • 10981 reflections

  • 727 parameters

  • 6 restraints

  • H-atom parameters constrained

  • Δρmax = 0.48 e Å−3

  • Δρmin = −0.28 e Å−3

Data collection: SMART (Bruker, 2001); cell refinement: SAINT-Plus (Bruker, 2001); data reduction: SAINT-Plus; program(s) used to solve structure: SHELXS97 (Sheldrick, 2008); program(s) used to refine structure: SHELXL97 (Sheldrick, 2008); molecular graphics: PLATON (Spek, 2003); software used to prepare material for publication: SHELXTL (Sheldrick, 2008).

Supplementary Material

Crystal structure: contains datablocks I, global. DOI: 10.1107/S1600536808015705/bt2711sup1.cif

e-64-o1180-sup1.cif (41.5KB, cif)

Structure factors: contains datablocks I. DOI: 10.1107/S1600536808015705/bt2711Isup2.hkl

e-64-o1180-Isup2.hkl (536.9KB, hkl)

Additional supplementary materials: crystallographic information; 3D view; checkCIF report

Table 1. Hydrogen-bond geometry (Å, °).

D—H⋯A D—H H⋯A DA D—H⋯A
C33—H33⋯O3 0.93 2.46 3.298 (5) 151
N4—H4B⋯O7 0.86 2.16 2.817 (4) 134
N4—H4A⋯N3 0.86 2.29 2.945 (4) 133
N2—H2B⋯O3 0.86 2.19 2.832 (4) 131
N2—H2A⋯N1 0.86 2.33 2.965 (4) 131

Acknowledgments

The authors gratefully acknowledge financial support of this work by the Opening Foundation of the Key Laboratory of Three Gorges University of China (grant No. 2006NP01).

supplementary crystallographic information

Comment

The derivatives of heterocycles containing the thienopyrimidine system, which are well known bioisosteres of quinazolines, are of great importance because of their remarkable biological properties (Walter, 1999a,b; Ding et al., 2004). As a part of our ongoing investigations on the preparation of derivatives of heterocyclic compounds (Liu & Hu, 2006; Liao et al., 2007), we have synthesized and structurally characterized characterized the title compound. In the crystal structure of the title compound two crystallographically independent molecules are found in the asymmetric unit. All ring atoms of the thieno[2,3-b]thiophene ring systems lie in a common plane, with maximum deviations of 0.01 (1) Å and 0.02 (1) Å. The crystal structure is stabilized by N—H···N, N—H···O and C—H···O hydrogen bonds (Table 1).

Refinement

One of the terminal ethyl groups is disordered over two sites with site occupation factors of 0.66 (2) and 0.34 (2). The following restraints have been applied for the disordered atoms: O—CH2 1.45 (1) Å, CH2—CH3 1.54 (1) Å and O···CH3 2.45 (1) Å. All H-atoms were positioned with idealized geometry and refined with fixed isotropic U values (Uiso(H) = 1.5Ueq(C) for methyl H atoms and Uiso(H) = 1.2Ueq(C) for all other H atoms) using a riding model with C—H = 0.93 Å, 0.97 Å = 0.96 Å and N—H = 0.86 Å.

Figures

Fig. 1.

Fig. 1.

Molecular structure of the title compound with labelling and displacement ellipsoids drawn at the 50% probability level.

Crystal data

C30H27N2O4PS2 Z = 4
Mr = 574.63 F000 = 1200
Triclinic, P1 Dx = 1.346 Mg m3
Hall symbol: -P 1 Mo Kα radiation λ = 0.71073 Å
a = 13.1260 (9) Å Cell parameters from 2577 reflections
b = 15.3616 (10) Å θ = 2.3–19.7º
c = 16.6497 (11) Å µ = 0.28 mm1
α = 68.1400 (10)º T = 298 (2) K
β = 71.0430 (10)º Block, yellow
γ = 68.9690 (10)º 0.20 × 0.10 × 0.06 mm
V = 2836.5 (3) Å3

Data collection

Bruker SMART 4K CCD area-detector diffractometer 10981 independent reflections
Radiation source: fine-focus sealed tube 6314 reflections with I > 2σ(I)
Monochromator: graphite Rint = 0.053
T = 298(2) K θmax = 26.0º
φ and ω scans θmin = 1.5º
Absorption correction: multi-scan(SADABS; Bruker, 2001) h = −15→16
Tmin = 0.946, Tmax = 0.983 k = −18→18
20968 measured reflections l = −14→20

Refinement

Refinement on F2 Secondary atom site location: difference Fourier map
Least-squares matrix: full Hydrogen site location: inferred from neighbouring sites
R[F2 > 2σ(F2)] = 0.068 H-atom parameters constrained
wR(F2) = 0.159   w = 1/[σ2(Fo2) + (0.0624P)2] where P = (Fo2 + 2Fc2)/3
S = 0.96 (Δ/σ)max = 0.001
10981 reflections Δρmax = 0.48 e Å3
727 parameters Δρmin = −0.28 e Å3
6 restraints Extinction correction: none
Primary atom site location: structure-invariant direct methods

Special details

Geometry. All e.s.d.'s (except the e.s.d. in the dihedral angle between two l.s. planes) are estimated using the full covariance matrix. The cell e.s.d.'s are taken into account individually in the estimation of e.s.d.'s in distances, angles and torsion angles; correlations between e.s.d.'s in cell parameters are only used when they are defined by crystal symmetry. An approximate (isotropic) treatment of cell e.s.d.'s is used for estimating e.s.d.'s involving l.s. planes.
Refinement. Refinement of F2 against ALL reflections. The weighted R-factor wR and goodness of fit S are based on F2, conventional R-factors R are based on F, with F set to zero for negative F2. The threshold expression of F2 > σ(F2) is used only for calculating R-factors(gt) etc. and is not relevant to the choice of reflections for refinement. R-factors based on F2 are statistically about twice as large as those based on F, and R- factors based on ALL data will be even larger.

Fractional atomic coordinates and isotropic or equivalent isotropic displacement parameters (Å2)

x y z Uiso*/Ueq Occ. (<1)
C1 0.2610 (3) 0.4257 (3) 0.8472 (2) 0.0461 (9)
C2 0.2866 (3) 0.4036 (3) 0.9289 (3) 0.0608 (11)
H2 0.2896 0.4528 0.9471 0.073*
C3 0.3074 (4) 0.3091 (3) 0.9823 (3) 0.0705 (13)
H3 0.3214 0.2951 1.0378 0.085*
C4 0.3078 (4) 0.2357 (3) 0.9548 (4) 0.0772 (15)
H4 0.3238 0.1717 0.9909 0.093*
C5 0.2847 (4) 0.2559 (3) 0.8746 (3) 0.0759 (14)
H5 0.2846 0.2057 0.8562 0.091*
C6 0.2617 (3) 0.3504 (3) 0.8208 (3) 0.0609 (12)
H6 0.2465 0.3636 0.7660 0.073*
C7 0.1246 (3) 0.6316 (3) 0.8246 (2) 0.0464 (9)
C8 0.0934 (3) 0.7258 (3) 0.7712 (3) 0.0639 (12)
H8 0.1283 0.7422 0.7114 0.077*
C9 0.0103 (4) 0.7958 (3) 0.8068 (3) 0.0803 (15)
H9 −0.0104 0.8592 0.7705 0.096*
C10 −0.0415 (4) 0.7735 (3) 0.8939 (4) 0.0783 (14)
H10 −0.0966 0.8214 0.9173 0.094*
C11 −0.0122 (4) 0.6801 (4) 0.9473 (3) 0.0740 (14)
H11 −0.0475 0.6644 1.0071 0.089*
C12 0.0699 (3) 0.6089 (3) 0.9126 (3) 0.0591 (11)
H12 0.0883 0.5452 0.9488 0.071*
C13 0.3626 (3) 0.5803 (3) 0.7625 (3) 0.0474 (10)
C14 0.4623 (3) 0.5437 (3) 0.7082 (3) 0.0580 (11)
H14 0.4629 0.5054 0.6759 0.070*
C15 0.5600 (4) 0.5627 (3) 0.7009 (4) 0.0758 (14)
H15 0.6260 0.5372 0.6644 0.091*
C16 0.5595 (5) 0.6190 (4) 0.7476 (4) 0.0951 (18)
H16 0.6252 0.6328 0.7423 0.114*
C17 0.4628 (5) 0.6557 (4) 0.8025 (4) 0.0954 (17)
H17 0.4638 0.6931 0.8350 0.114*
C18 0.3640 (4) 0.6374 (3) 0.8099 (3) 0.0712 (13)
H18 0.2985 0.6633 0.8465 0.085*
C19 0.1617 (3) 0.5670 (2) 0.6309 (2) 0.0390 (9)
C20 0.0575 (3) 0.5474 (3) 0.6605 (2) 0.0466 (9)
C21 0.0036 (3) 0.5049 (3) 0.7492 (3) 0.0523 (10)
C22 −0.1442 (4) 0.4291 (4) 0.8356 (3) 0.106 (2)
H22A −0.2206 0.4370 0.8349 0.127*
H22B −0.1461 0.4526 0.8829 0.127*
C23 −0.0812 (6) 0.3255 (5) 0.8516 (4) 0.156 (3)
H23A −0.0794 0.3029 0.8044 0.233*
H23B −0.1171 0.2882 0.9070 0.233*
H23C −0.0062 0.3181 0.8535 0.233*
C24 0.1894 (3) 0.5986 (2) 0.5359 (2) 0.0375 (8)
C25 0.1080 (3) 0.6043 (2) 0.4975 (2) 0.0460 (9)
C26 0.2835 (3) 0.6265 (2) 0.4709 (2) 0.0402 (9)
C27 0.2694 (3) 0.6522 (2) 0.3857 (2) 0.0429 (9)
N2 0.3742 (3) 0.6258 (2) 0.4942 (2) 0.0568 (9)
H2A 0.3759 0.6025 0.5494 0.068*
H2B 0.4255 0.6458 0.4504 0.068*
C28 0.3516 (3) 0.6807 (3) 0.3064 (3) 0.0508 (10)
C29 0.3981 (4) 0.7238 (4) 0.1496 (3) 0.0856 (16)
H29A 0.3780 0.7941 0.1241 0.103*
H29B 0.4725 0.7034 0.1607 0.103*
C30 0.3979 (5) 0.6781 (4) 0.0880 (3) 0.111 (2)
H30A 0.4189 0.6086 0.1129 0.166*
H30B 0.4503 0.6963 0.0333 0.166*
H30C 0.3243 0.6989 0.0767 0.166*
C31 0.7449 (3) 0.8334 (3) 0.3607 (3) 0.0460 (9)
C32 0.6524 (3) 0.8387 (3) 0.3338 (3) 0.0507 (10)
H32 0.6151 0.8976 0.2995 0.061*
C33 0.6157 (3) 0.7574 (3) 0.3577 (3) 0.0583 (11)
H33 0.5528 0.7620 0.3404 0.070*
C34 0.6709 (4) 0.6700 (3) 0.4066 (3) 0.0672 (13)
H34 0.6462 0.6151 0.4216 0.081*
C35 0.7622 (4) 0.6624 (3) 0.4337 (3) 0.0756 (14)
H35 0.7987 0.6027 0.4677 0.091*
C36 0.8008 (3) 0.7439 (3) 0.4105 (3) 0.0639 (12)
H36 0.8635 0.7385 0.4283 0.077*
C37 0.8032 (3) 0.9893 (3) 0.2095 (3) 0.0467 (9)
C38 0.7843 (4) 1.0884 (3) 0.1696 (3) 0.0755 (14)
H38 0.7583 1.1301 0.2048 0.091*
C39 0.8030 (5) 1.1264 (4) 0.0797 (3) 0.0946 (17)
H39 0.7896 1.1935 0.0546 0.114*
C40 0.8409 (4) 1.0675 (5) 0.0260 (3) 0.0891 (16)
H40 0.8532 1.0939 −0.0353 0.107*
C41 0.8603 (4) 0.9702 (5) 0.0631 (4) 0.0893 (16)
H41 0.8871 0.9295 0.0268 0.107*
C42 0.8409 (4) 0.9297 (4) 0.1547 (3) 0.0713 (13)
H42 0.8532 0.8626 0.1792 0.086*
C43 0.6981 (3) 1.0324 (2) 0.3743 (2) 0.0402 (9)
C44 0.5824 (3) 1.0483 (3) 0.3927 (3) 0.0601 (11)
H44 0.5530 1.0056 0.3855 0.072*
C45 0.5117 (4) 1.1272 (3) 0.4216 (3) 0.0675 (13)
H45 0.4346 1.1377 0.4337 0.081*
C46 0.5541 (4) 1.1899 (3) 0.4326 (3) 0.0674 (13)
H46 0.5058 1.2433 0.4517 0.081*
C47 0.6676 (4) 1.1749 (3) 0.4157 (3) 0.0595 (11)
H47 0.6962 1.2175 0.4240 0.071*
C48 0.7390 (3) 1.0968 (3) 0.3864 (2) 0.0509 (10)
H48 0.8160 1.0871 0.3746 0.061*
C49 0.9839 (3) 0.9001 (2) 0.3903 (2) 0.0395 (9)
C50 0.9597 (3) 0.8761 (2) 0.4826 (3) 0.0422 (9)
C51 0.8587 (3) 0.8594 (3) 0.5433 (3) 0.0538 (11)
C52 0.7663 (10) 0.8289 (6) 0.7033 (9) 0.081 (4) 0.66 (2)
H52A 0.6978 0.8565 0.6817 0.097* 0.66 (2)
H52B 0.7626 0.8626 0.7436 0.097* 0.66 (2)
C53 0.7848 (11) 0.7206 (7) 0.7484 (9) 0.106 (5) 0.66 (2)
H53A 0.7859 0.6891 0.7078 0.159* 0.66 (2)
H53B 0.7253 0.7096 0.7996 0.159* 0.66 (2)
H53C 0.8550 0.6943 0.7662 0.159* 0.66 (2)
C52' 0.774 (2) 0.788 (3) 0.6825 (9) 0.081 (8) 0.34 (2)
H52C 0.7843 0.7311 0.6660 0.097* 0.34 (2)
H52D 0.7023 0.8332 0.6734 0.097* 0.34 (2)
C53' 0.781 (2) 0.760 (2) 0.7789 (8) 0.112 (9) 0.34 (2)
H53D 0.8497 0.7107 0.7882 0.167* 0.34 (2)
H53E 0.7188 0.7353 0.8170 0.167* 0.34 (2)
H53F 0.7791 0.8162 0.7925 0.167* 0.34 (2)
C54 1.0954 (3) 0.9101 (2) 0.3543 (2) 0.0375 (8)
C55 1.1516 (3) 0.8942 (2) 0.4175 (2) 0.0400 (9)
C56 1.1601 (3) 0.9351 (2) 0.2662 (2) 0.0408 (9)
C57 1.2648 (3) 0.9386 (2) 0.2658 (2) 0.0446 (9)
N4 1.1221 (3) 0.9535 (2) 0.1935 (2) 0.0571 (9)
H4A 1.0559 0.9473 0.2040 0.068*
H4B 1.1662 0.9747 0.1446 0.068*
C58 1.3466 (3) 0.9665 (3) 0.1870 (3) 0.0515 (10)
C59 1.5255 (3) 1.0003 (4) 0.1294 (3) 0.0823 (16)
H59A 1.5148 0.9979 0.0753 0.099*
H59B 1.5997 0.9596 0.1371 0.099*
C60 1.5155 (5) 1.1006 (4) 0.1224 (5) 0.142 (3)
H60A 1.4414 1.1403 0.1160 0.214*
H60B 1.5693 1.1252 0.0716 0.214*
H60C 1.5292 1.1022 0.1750 0.214*
N1 0.2389 (2) 0.5576 (2) 0.67443 (19) 0.0448 (8)
O1 0.0358 (2) 0.4854 (2) 0.81614 (18) 0.0624 (8)
O2 −0.0900 (2) 0.4850 (2) 0.75083 (18) 0.0763 (9)
O3 0.4411 (2) 0.6868 (2) 0.30673 (18) 0.0635 (8)
O4 0.3190 (2) 0.6972 (2) 0.23237 (18) 0.0648 (8)
N3 0.9225 (2) 0.9157 (2) 0.3315 (2) 0.0482 (8)
O5 0.7744 (2) 0.8654 (2) 0.52373 (19) 0.0656 (8)
O6 0.8661 (2) 0.8356 (2) 0.6283 (2) 0.0808 (10)
O7 1.3321 (2) 0.9920 (2) 0.1115 (2) 0.0711 (9)
O8 1.4417 (2) 0.9638 (2) 0.20472 (18) 0.0662 (8)
P1 0.23784 (8) 0.54841 (7) 0.77260 (7) 0.0440 (3)
P2 0.79766 (8) 0.93793 (7) 0.32758 (7) 0.0426 (3)
S1 −0.00477 (8) 0.56927 (8) 0.57338 (7) 0.0555 (3)
S2 0.14118 (8) 0.64202 (8) 0.38364 (7) 0.0533 (3)
S3 1.07321 (8) 0.86553 (7) 0.52315 (6) 0.0502 (3)
S4 1.28460 (8) 0.90910 (8) 0.37331 (7) 0.0526 (3)

Atomic displacement parameters (Å2)

U11 U22 U33 U12 U13 U23
C1 0.048 (2) 0.048 (2) 0.040 (2) −0.0129 (18) −0.0072 (18) −0.0120 (18)
C2 0.067 (3) 0.059 (3) 0.054 (3) −0.012 (2) −0.018 (2) −0.015 (2)
C3 0.075 (3) 0.068 (3) 0.050 (3) −0.011 (3) −0.016 (2) −0.003 (2)
C4 0.064 (3) 0.055 (3) 0.084 (4) −0.007 (2) −0.016 (3) 0.003 (3)
C5 0.089 (4) 0.045 (3) 0.091 (4) −0.019 (2) −0.017 (3) −0.017 (3)
C6 0.068 (3) 0.049 (3) 0.063 (3) −0.017 (2) −0.009 (2) −0.017 (2)
C7 0.050 (2) 0.046 (2) 0.046 (2) −0.0141 (18) −0.0124 (19) −0.0133 (18)
C8 0.070 (3) 0.053 (3) 0.053 (3) −0.008 (2) −0.007 (2) −0.012 (2)
C9 0.078 (3) 0.050 (3) 0.087 (4) −0.003 (2) −0.005 (3) −0.017 (3)
C10 0.076 (3) 0.063 (3) 0.094 (4) −0.014 (3) 0.001 (3) −0.042 (3)
C11 0.068 (3) 0.087 (4) 0.063 (3) −0.020 (3) 0.005 (2) −0.036 (3)
C12 0.063 (3) 0.057 (3) 0.051 (3) −0.009 (2) −0.008 (2) −0.019 (2)
C13 0.056 (2) 0.044 (2) 0.049 (2) −0.0127 (19) −0.023 (2) −0.0117 (19)
C14 0.055 (3) 0.049 (2) 0.071 (3) −0.011 (2) −0.020 (2) −0.017 (2)
C15 0.054 (3) 0.070 (3) 0.101 (4) −0.020 (2) −0.023 (3) −0.014 (3)
C16 0.076 (4) 0.102 (4) 0.125 (5) −0.045 (3) −0.037 (4) −0.019 (4)
C17 0.106 (5) 0.111 (4) 0.107 (5) −0.052 (4) −0.036 (4) −0.041 (4)
C18 0.076 (3) 0.075 (3) 0.081 (3) −0.022 (3) −0.029 (3) −0.032 (3)
C19 0.042 (2) 0.0315 (18) 0.048 (2) −0.0106 (16) −0.0103 (18) −0.0157 (16)
C20 0.048 (2) 0.050 (2) 0.043 (2) −0.0181 (18) −0.0085 (18) −0.0119 (18)
C21 0.046 (2) 0.054 (2) 0.056 (3) −0.018 (2) −0.008 (2) −0.013 (2)
C22 0.088 (4) 0.137 (5) 0.084 (4) −0.074 (4) −0.026 (3) 0.024 (4)
C23 0.197 (8) 0.157 (7) 0.116 (6) −0.106 (6) −0.051 (5) 0.027 (5)
C24 0.039 (2) 0.0314 (18) 0.041 (2) −0.0080 (16) −0.0125 (17) −0.0077 (16)
C25 0.041 (2) 0.045 (2) 0.048 (2) −0.0110 (17) −0.0105 (18) −0.0098 (18)
C26 0.044 (2) 0.0341 (19) 0.047 (2) −0.0090 (16) −0.0127 (18) −0.0153 (17)
C27 0.047 (2) 0.044 (2) 0.042 (2) −0.0147 (17) −0.0108 (18) −0.0136 (17)
N2 0.056 (2) 0.079 (2) 0.044 (2) −0.0329 (18) −0.0101 (16) −0.0139 (17)
C28 0.058 (3) 0.055 (2) 0.046 (3) −0.021 (2) −0.008 (2) −0.019 (2)
C29 0.101 (4) 0.119 (4) 0.051 (3) −0.069 (3) 0.007 (3) −0.022 (3)
C30 0.121 (5) 0.157 (6) 0.065 (4) −0.082 (4) 0.013 (3) −0.031 (4)
C31 0.039 (2) 0.047 (2) 0.059 (3) −0.0080 (17) −0.0128 (19) −0.0254 (19)
C32 0.047 (2) 0.057 (2) 0.059 (3) −0.0169 (19) −0.015 (2) −0.022 (2)
C33 0.051 (2) 0.072 (3) 0.071 (3) −0.024 (2) −0.011 (2) −0.036 (2)
C34 0.065 (3) 0.054 (3) 0.094 (4) −0.023 (2) −0.005 (3) −0.038 (3)
C35 0.077 (3) 0.043 (3) 0.109 (4) −0.005 (2) −0.033 (3) −0.025 (3)
C36 0.056 (3) 0.048 (2) 0.099 (4) −0.006 (2) −0.032 (2) −0.028 (2)
C37 0.033 (2) 0.064 (3) 0.052 (3) −0.0135 (18) −0.0104 (18) −0.025 (2)
C38 0.104 (4) 0.073 (3) 0.048 (3) −0.022 (3) −0.014 (3) −0.020 (2)
C39 0.137 (5) 0.089 (4) 0.057 (4) −0.035 (4) −0.023 (3) −0.015 (3)
C40 0.100 (4) 0.116 (5) 0.057 (3) −0.047 (4) −0.012 (3) −0.019 (3)
C41 0.099 (4) 0.121 (5) 0.065 (4) −0.042 (4) 0.006 (3) −0.054 (3)
C42 0.074 (3) 0.084 (3) 0.066 (3) −0.026 (3) −0.003 (3) −0.039 (3)
C43 0.039 (2) 0.047 (2) 0.036 (2) −0.0132 (17) −0.0080 (16) −0.0136 (17)
C44 0.049 (3) 0.061 (3) 0.069 (3) −0.020 (2) −0.006 (2) −0.019 (2)
C45 0.045 (3) 0.068 (3) 0.074 (3) −0.011 (2) −0.002 (2) −0.018 (3)
C46 0.078 (3) 0.055 (3) 0.055 (3) −0.006 (2) −0.005 (2) −0.021 (2)
C47 0.074 (3) 0.054 (3) 0.062 (3) −0.014 (2) −0.019 (2) −0.029 (2)
C48 0.053 (2) 0.049 (2) 0.057 (3) −0.0088 (19) −0.017 (2) −0.024 (2)
C49 0.039 (2) 0.0315 (18) 0.052 (3) −0.0061 (16) −0.0138 (18) −0.0168 (17)
C50 0.037 (2) 0.039 (2) 0.052 (3) −0.0110 (16) −0.0116 (18) −0.0114 (17)
C51 0.047 (3) 0.051 (2) 0.058 (3) −0.013 (2) −0.012 (2) −0.010 (2)
C52 0.079 (6) 0.084 (7) 0.064 (8) −0.014 (5) −0.003 (6) −0.024 (5)
C53 0.116 (8) 0.099 (8) 0.114 (12) −0.054 (7) 0.004 (8) −0.044 (7)
C52' 0.076 (12) 0.12 (2) 0.038 (10) −0.050 (16) 0.017 (9) −0.013 (12)
C53' 0.139 (18) 0.11 (2) 0.087 (15) −0.060 (18) −0.008 (14) −0.013 (14)
C54 0.039 (2) 0.0356 (19) 0.045 (2) −0.0086 (16) −0.0151 (18) −0.0156 (16)
C55 0.0346 (19) 0.041 (2) 0.047 (2) −0.0129 (16) −0.0118 (17) −0.0102 (17)
C56 0.041 (2) 0.042 (2) 0.044 (2) −0.0057 (17) −0.0170 (18) −0.0161 (17)
C57 0.042 (2) 0.048 (2) 0.048 (2) −0.0153 (18) −0.0134 (18) −0.0128 (18)
N4 0.0465 (19) 0.082 (2) 0.047 (2) −0.0200 (17) −0.0123 (16) −0.0198 (18)
C58 0.051 (2) 0.052 (2) 0.048 (3) −0.0124 (19) −0.013 (2) −0.011 (2)
C59 0.046 (3) 0.122 (4) 0.062 (3) −0.034 (3) −0.003 (2) −0.005 (3)
C60 0.099 (5) 0.097 (5) 0.192 (7) −0.051 (4) −0.037 (5) 0.030 (4)
N1 0.0485 (18) 0.0506 (18) 0.0420 (19) −0.0201 (15) −0.0104 (15) −0.0138 (15)
O1 0.0661 (19) 0.080 (2) 0.0462 (18) −0.0334 (15) −0.0117 (15) −0.0117 (15)
O2 0.0663 (19) 0.108 (2) 0.0554 (19) −0.0536 (18) −0.0124 (15) 0.0029 (17)
O3 0.0550 (18) 0.083 (2) 0.065 (2) −0.0353 (16) −0.0010 (15) −0.0294 (16)
O4 0.0712 (19) 0.090 (2) 0.0372 (17) −0.0402 (16) −0.0035 (14) −0.0119 (15)
N3 0.0374 (17) 0.063 (2) 0.058 (2) −0.0117 (15) −0.0158 (15) −0.0293 (17)
O5 0.0432 (17) 0.077 (2) 0.078 (2) −0.0220 (15) −0.0091 (15) −0.0223 (16)
O6 0.0546 (18) 0.111 (3) 0.053 (2) −0.0268 (17) −0.0046 (15) −0.0002 (18)
O7 0.0635 (19) 0.094 (2) 0.0507 (19) −0.0274 (16) −0.0103 (15) −0.0122 (17)
O8 0.0489 (17) 0.092 (2) 0.0561 (19) −0.0327 (15) −0.0109 (14) −0.0076 (15)
P1 0.0494 (6) 0.0432 (5) 0.0414 (6) −0.0139 (5) −0.0122 (5) −0.0112 (4)
P2 0.0369 (5) 0.0489 (6) 0.0498 (6) −0.0116 (4) −0.0124 (5) −0.0204 (5)
S1 0.0443 (6) 0.0740 (7) 0.0502 (7) −0.0234 (5) −0.0116 (5) −0.0123 (5)
S2 0.0501 (6) 0.0683 (7) 0.0440 (6) −0.0205 (5) −0.0137 (5) −0.0118 (5)
S3 0.0464 (6) 0.0618 (6) 0.0438 (6) −0.0194 (5) −0.0160 (5) −0.0070 (5)
S4 0.0426 (6) 0.0695 (7) 0.0497 (6) −0.0240 (5) −0.0155 (5) −0.0085 (5)

Geometric parameters (Å, °)

C1—C6 1.379 (5) C33—C34 1.365 (5)
C1—C2 1.396 (5) C33—H33 0.9300
C1—P1 1.811 (4) C34—C35 1.366 (6)
C2—C3 1.372 (5) C34—H34 0.9300
C2—H2 0.9300 C35—C36 1.393 (6)
C3—C4 1.365 (6) C35—H35 0.9300
C3—H3 0.9300 C36—H36 0.9300
C4—C5 1.364 (6) C37—C38 1.380 (5)
C4—H4 0.9300 C37—C42 1.385 (5)
C5—C6 1.376 (5) C37—P2 1.812 (4)
C5—H5 0.9300 C38—C39 1.362 (6)
C6—H6 0.9300 C38—H38 0.9300
C7—C12 1.378 (5) C39—C40 1.362 (7)
C7—C8 1.380 (5) C39—H39 0.9300
C7—P1 1.794 (4) C40—C41 1.350 (7)
C8—C9 1.382 (5) C40—H40 0.9300
C8—H8 0.9300 C41—C42 1.390 (6)
C9—C10 1.356 (6) C41—H41 0.9300
C9—H9 0.9300 C42—H42 0.9300
C10—C11 1.369 (6) C43—C48 1.381 (5)
C10—H10 0.9300 C43—C44 1.395 (5)
C11—C12 1.383 (5) C43—P2 1.800 (4)
C11—H11 0.9300 C44—C45 1.377 (5)
C12—H12 0.9300 C44—H44 0.9300
C13—C14 1.388 (5) C45—C46 1.361 (6)
C13—C18 1.389 (5) C45—H45 0.9300
C13—P1 1.812 (4) C46—C47 1.372 (6)
C14—C15 1.374 (6) C46—H46 0.9300
C14—H14 0.9300 C47—C48 1.373 (5)
C15—C16 1.359 (7) C47—H47 0.9300
C15—H15 0.9300 C48—H48 0.9300
C16—C17 1.371 (7) C49—N3 1.365 (4)
C16—H16 0.9300 C49—C50 1.393 (5)
C17—C18 1.381 (6) C49—C54 1.432 (5)
C17—H17 0.9300 C50—C51 1.423 (5)
C18—H18 0.9300 C50—S3 1.761 (4)
C19—N1 1.367 (4) C51—O5 1.216 (4)
C19—C20 1.396 (5) C51—O6 1.349 (5)
C19—C24 1.433 (5) C52—O6 1.492 (7)
C20—C21 1.429 (5) C52—C53 1.513 (8)
C20—S1 1.760 (4) C52—H52A 0.9700
C21—O1 1.216 (4) C52—H52B 0.9700
C21—O2 1.359 (5) C53—H53A 0.9600
C22—O2 1.456 (5) C53—H53B 0.9600
C22—C23 1.473 (8) C53—H53C 0.9600
C22—H22A 0.9700 C52'—O6 1.491 (9)
C22—H22B 0.9700 C52'—C53' 1.523 (10)
C23—H23A 0.9600 C52'—H52C 0.9700
C23—H23B 0.9600 C52'—H52D 0.9700
C23—H23C 0.9600 C53'—H53D 0.9600
C24—C25 1.376 (5) C53'—H53E 0.9600
C24—C26 1.431 (5) C53'—H53F 0.9600
C25—S1 1.711 (4) C54—C55 1.376 (5)
C25—S2 1.716 (4) C54—C56 1.424 (5)
C26—N2 1.362 (4) C55—S3 1.709 (4)
C26—C27 1.380 (5) C55—S4 1.722 (3)
C27—C28 1.443 (5) C56—N4 1.352 (4)
C27—S2 1.757 (4) C56—C57 1.392 (5)
N2—H2A 0.8581 C57—C58 1.433 (5)
N2—H2B 0.8612 C57—S4 1.759 (4)
C28—O3 1.213 (4) N4—H4A 0.8621
C28—O4 1.342 (4) N4—H4B 0.8573
C29—C30 1.445 (6) C58—O7 1.225 (4)
C29—O4 1.449 (5) C58—O8 1.357 (5)
C29—H29A 0.9700 C59—O8 1.455 (5)
C29—H29B 0.9700 C59—C60 1.462 (7)
C30—H30A 0.9600 C59—H59A 0.9700
C30—H30B 0.9600 C59—H59B 0.9700
C30—H30C 0.9600 C60—H60A 0.9600
C31—C32 1.392 (5) C60—H60B 0.9600
C31—C36 1.393 (5) C60—H60C 0.9600
C31—P2 1.804 (4) N1—P1 1.583 (3)
C32—C33 1.373 (5) N3—P2 1.568 (3)
C32—H32 0.9300
C6—C1—C2 118.4 (4) C31—C36—H36 120.1
C6—C1—P1 119.7 (3) C35—C36—H36 120.1
C2—C1—P1 121.7 (3) C38—C37—C42 117.4 (4)
C3—C2—C1 120.0 (4) C38—C37—P2 121.1 (3)
C3—C2—H2 120.0 C42—C37—P2 120.9 (3)
C1—C2—H2 120.0 C39—C38—C37 121.5 (4)
C4—C3—C2 120.5 (5) C39—C38—H38 119.3
C4—C3—H3 119.7 C37—C38—H38 119.3
C2—C3—H3 119.7 C40—C39—C38 120.9 (5)
C5—C4—C3 120.1 (4) C40—C39—H39 119.6
C5—C4—H4 119.9 C38—C39—H39 119.6
C3—C4—H4 119.9 C41—C40—C39 119.0 (5)
C4—C5—C6 120.1 (5) C41—C40—H40 120.5
C4—C5—H5 120.0 C39—C40—H40 120.5
C6—C5—H5 120.0 C40—C41—C42 121.2 (5)
C5—C6—C1 120.8 (4) C40—C41—H41 119.4
C5—C6—H6 119.6 C42—C41—H41 119.4
C1—C6—H6 119.6 C37—C42—C41 120.0 (4)
C12—C7—C8 118.9 (4) C37—C42—H42 120.0
C12—C7—P1 125.1 (3) C41—C42—H42 120.0
C8—C7—P1 116.0 (3) C48—C43—C44 118.5 (4)
C7—C8—C9 119.9 (4) C48—C43—P2 117.6 (3)
C7—C8—H8 120.1 C44—C43—P2 123.8 (3)
C9—C8—H8 120.1 C45—C44—C43 120.1 (4)
C10—C9—C8 121.0 (4) C45—C44—H44 120.0
C10—C9—H9 119.5 C43—C44—H44 120.0
C8—C9—H9 119.5 C46—C45—C44 120.3 (4)
C9—C10—C11 119.7 (4) C46—C45—H45 119.8
C9—C10—H10 120.2 C44—C45—H45 119.8
C11—C10—H10 120.2 C45—C46—C47 120.4 (4)
C10—C11—C12 120.1 (4) C45—C46—H46 119.8
C10—C11—H11 120.0 C47—C46—H46 119.8
C12—C11—H11 120.0 C46—C47—C48 119.9 (4)
C7—C12—C11 120.5 (4) C46—C47—H47 120.1
C7—C12—H12 119.8 C48—C47—H47 120.1
C11—C12—H12 119.8 C47—C48—C43 120.8 (4)
C14—C13—C18 118.0 (4) C47—C48—H48 119.6
C14—C13—P1 119.4 (3) C43—C48—H48 119.6
C18—C13—P1 122.5 (3) N3—C49—C50 132.5 (3)
C15—C14—C13 121.6 (4) N3—C49—C54 117.2 (3)
C15—C14—H14 119.2 C50—C49—C54 110.3 (3)
C13—C14—H14 119.2 C49—C50—C51 128.1 (4)
C16—C15—C14 119.4 (5) C49—C50—S3 112.4 (3)
C16—C15—H15 120.3 C51—C50—S3 119.6 (3)
C14—C15—H15 120.3 O5—C51—O6 122.4 (4)
C15—C16—C17 120.5 (5) O5—C51—C50 125.8 (4)
C15—C16—H16 119.7 O6—C51—C50 111.7 (4)
C16—C17—C18 120.5 (5) O6—C52—C53 103.9 (6)
C16—C17—H17 119.8 O6—C52—H52A 111.0
C18—C17—H17 119.8 C53—C52—H52A 111.0
C17—C18—C13 119.9 (5) O6—C52—H52B 111.0
C17—C18—H18 120.0 C53—C52—H52B 111.0
C13—C18—H18 120.0 H52A—C52—H52B 109.0
N1—C19—C20 132.6 (3) O6—C52'—C53' 106.4 (9)
N1—C19—C24 117.7 (3) O6—C52'—H52C 110.4
C20—C19—C24 109.7 (3) C53'—C52'—H52C 110.4
C19—C20—C21 128.2 (4) O6—C52'—H52D 110.4
C19—C20—S1 113.1 (3) C53'—C52'—H52D 110.4
C21—C20—S1 118.4 (3) H52C—C52'—H52D 108.6
O1—C21—O2 122.3 (4) C52'—C53'—H53D 109.5
O1—C21—C20 126.3 (4) C52'—C53'—H53E 109.5
O2—C21—C20 111.3 (4) H53D—C53'—H53E 109.5
O2—C22—C23 109.0 (5) C52'—C53'—H53F 109.5
O2—C22—H22A 109.9 H53D—C53'—H53F 109.5
C23—C22—H22A 109.9 H53E—C53'—H53F 109.5
O2—C22—H22B 109.9 C55—C54—C56 112.9 (3)
C23—C22—H22B 109.9 C55—C54—C49 113.9 (3)
H22A—C22—H22B 108.3 C56—C54—C49 133.3 (3)
C22—C23—H23A 109.5 C54—C55—S3 112.7 (3)
C22—C23—H23B 109.5 C54—C55—S4 113.4 (3)
H23A—C23—H23B 109.5 S3—C55—S4 133.8 (2)
C22—C23—H23C 109.5 N4—C56—C57 125.6 (3)
H23A—C23—H23C 109.5 N4—C56—C54 123.2 (3)
H23B—C23—H23C 109.5 C57—C56—C54 111.2 (3)
C25—C24—C26 112.0 (3) C56—C57—C58 124.3 (4)
C25—C24—C19 113.9 (3) C56—C57—S4 112.5 (3)
C26—C24—C19 134.2 (3) C58—C57—S4 123.1 (3)
C24—C25—S1 113.1 (3) C56—N4—H4A 115.3
C24—C25—S2 113.9 (3) C56—N4—H4B 113.5
S1—C25—S2 133.0 (2) H4A—N4—H4B 130.9
N2—C26—C27 126.4 (3) O7—C58—O8 123.2 (4)
N2—C26—C24 121.9 (3) O7—C58—C57 124.1 (4)
C27—C26—C24 111.7 (3) O8—C58—C57 112.7 (4)
C26—C27—C28 124.4 (3) O8—C59—C60 109.7 (4)
C26—C27—S2 112.5 (3) O8—C59—H59A 109.7
C28—C27—S2 123.1 (3) C60—C59—H59A 109.7
C26—N2—H2A 117.3 O8—C59—H59B 109.7
C26—N2—H2B 115.0 C60—C59—H59B 109.7
H2A—N2—H2B 127.6 H59A—C59—H59B 108.2
O3—C28—O4 123.9 (4) C59—C60—H60A 109.5
O3—C28—C27 123.9 (4) C59—C60—H60B 109.5
O4—C28—C27 112.2 (4) H60A—C60—H60B 109.5
C30—C29—O4 110.2 (4) C59—C60—H60C 109.5
C30—C29—H29A 109.6 H60A—C60—H60C 109.5
O4—C29—H29A 109.6 H60B—C60—H60C 109.5
C30—C29—H29B 109.6 C19—N1—P1 135.7 (3)
O4—C29—H29B 109.6 C21—O2—C22 116.8 (3)
H29A—C29—H29B 108.1 C28—O4—C29 115.9 (3)
C29—C30—H30A 109.5 C49—N3—P2 139.8 (3)
C29—C30—H30B 109.5 C51—O6—C52' 105.2 (7)
H30A—C30—H30B 109.5 C51—O6—C52 121.7 (8)
C29—C30—H30C 109.5 C52'—O6—C52 30.3 (9)
H30A—C30—H30C 109.5 C58—O8—C59 116.8 (3)
H30B—C30—H30C 109.5 N1—P1—C7 116.42 (16)
C32—C31—C36 118.7 (4) N1—P1—C1 115.43 (17)
C32—C31—P2 121.5 (3) C7—P1—C1 111.13 (17)
C36—C31—P2 119.6 (3) N1—P1—C13 104.62 (17)
C33—C32—C31 120.5 (4) C7—P1—C13 105.05 (18)
C33—C32—H32 119.7 C1—P1—C13 102.30 (17)
C31—C32—H32 119.7 N3—P2—C43 116.30 (17)
C34—C33—C32 120.3 (4) N3—P2—C31 116.02 (16)
C34—C33—H33 119.8 C43—P2—C31 111.32 (16)
C32—C33—H33 119.8 N3—P2—C37 102.20 (16)
C33—C34—C35 120.5 (4) C43—P2—C37 104.06 (16)
C33—C34—H34 119.7 C31—P2—C37 104.99 (18)
C35—C34—H34 119.7 C25—S1—C20 90.27 (18)
C34—C35—C36 120.1 (4) C25—S2—C27 89.98 (18)
C34—C35—H35 119.9 C55—S3—C50 90.79 (17)
C36—C35—H35 119.9 C55—S4—C57 89.99 (17)
C31—C36—C35 119.7 (4)
C6—C1—C2—C3 −2.6 (6) C55—C54—C56—N4 179.7 (3)
P1—C1—C2—C3 −177.7 (3) C49—C54—C56—N4 −1.8 (6)
C1—C2—C3—C4 2.7 (7) C55—C54—C56—C57 −0.8 (4)
C2—C3—C4—C5 −1.6 (7) C49—C54—C56—C57 177.7 (3)
C3—C4—C5—C6 0.4 (7) N4—C56—C57—C58 2.7 (6)
C4—C5—C6—C1 −0.4 (7) C54—C56—C57—C58 −176.7 (3)
C2—C1—C6—C5 1.5 (6) N4—C56—C57—S4 −179.5 (3)
P1—C1—C6—C5 176.7 (3) C54—C56—C57—S4 1.1 (4)
C12—C7—C8—C9 1.4 (6) C56—C57—C58—O7 1.5 (6)
P1—C7—C8—C9 −177.1 (4) S4—C57—C58—O7 −176.1 (3)
C7—C8—C9—C10 0.1 (8) C56—C57—C58—O8 −180.0 (3)
C8—C9—C10—C11 −0.8 (8) S4—C57—C58—O8 2.4 (5)
C9—C10—C11—C12 0.0 (8) C20—C19—N1—P1 −19.4 (6)
C8—C7—C12—C11 −2.2 (6) C24—C19—N1—P1 163.9 (3)
P1—C7—C12—C11 176.2 (3) O1—C21—O2—C22 −6.6 (6)
C10—C11—C12—C7 1.5 (7) C20—C21—O2—C22 171.7 (4)
C18—C13—C14—C15 0.1 (6) C23—C22—O2—C21 −78.1 (6)
P1—C13—C14—C15 −177.5 (3) O3—C28—O4—C29 −0.1 (6)
C13—C14—C15—C16 −0.3 (7) C27—C28—O4—C29 −178.5 (3)
C14—C15—C16—C17 0.9 (8) C30—C29—O4—C28 141.1 (4)
C15—C16—C17—C18 −1.2 (9) C50—C49—N3—P2 17.1 (7)
C16—C17—C18—C13 1.0 (8) C54—C49—N3—P2 −162.3 (3)
C14—C13—C18—C17 −0.4 (6) O5—C51—O6—C52' 19.1 (18)
P1—C13—C18—C17 177.1 (4) C50—C51—O6—C52' −161.2 (17)
N1—C19—C20—C21 −4.0 (6) O5—C51—O6—C52 −8.9 (7)
C24—C19—C20—C21 172.9 (4) C50—C51—O6—C52 170.9 (5)
N1—C19—C20—S1 −177.7 (3) C53'—C52'—O6—C51 180 (3)
C24—C19—C20—S1 −0.8 (4) C53'—C52'—O6—C52 −52.4 (19)
C19—C20—C21—O1 6.6 (7) C53—C52—O6—C51 107.4 (14)
S1—C20—C21—O1 180.0 (3) C53—C52—O6—C52' 44 (2)
C19—C20—C21—O2 −171.6 (3) O7—C58—O8—C59 4.6 (6)
S1—C20—C21—O2 1.8 (4) C57—C58—O8—C59 −174.0 (3)
N1—C19—C24—C25 178.8 (3) C60—C59—O8—C58 98.3 (5)
C20—C19—C24—C25 1.4 (4) C19—N1—P1—C7 −45.8 (4)
N1—C19—C24—C26 −1.6 (5) C19—N1—P1—C1 87.2 (4)
C20—C19—C24—C26 −179.0 (3) C19—N1—P1—C13 −161.2 (3)
C26—C24—C25—S1 178.9 (2) C12—C7—P1—N1 141.8 (3)
C19—C24—C25—S1 −1.4 (4) C8—C7—P1—N1 −39.8 (4)
C26—C24—C25—S2 0.3 (4) C12—C7—P1—C1 6.9 (4)
C19—C24—C25—S2 −179.9 (2) C8—C7—P1—C1 −174.7 (3)
C25—C24—C26—N2 −179.6 (3) C12—C7—P1—C13 −103.0 (4)
C19—C24—C26—N2 0.8 (6) C8—C7—P1—C13 75.4 (3)
C25—C24—C26—C27 0.0 (4) C6—C1—P1—N1 −9.4 (4)
C19—C24—C26—C27 −179.6 (3) C2—C1—P1—N1 165.7 (3)
N2—C26—C27—C28 1.5 (6) C6—C1—P1—C7 126.0 (3)
C24—C26—C27—C28 −178.0 (3) C2—C1—P1—C7 −58.9 (4)
N2—C26—C27—S2 179.2 (3) C6—C1—P1—C13 −122.3 (3)
C24—C26—C27—S2 −0.3 (4) C2—C1—P1—C13 52.8 (3)
C26—C27—C28—O3 −1.5 (6) C14—C13—P1—N1 −43.2 (3)
S2—C27—C28—O3 −178.9 (3) C18—C13—P1—N1 139.3 (3)
C26—C27—C28—O4 176.9 (3) C14—C13—P1—C7 −166.4 (3)
S2—C27—C28—O4 −0.6 (5) C18—C13—P1—C7 16.2 (4)
C36—C31—C32—C33 1.3 (6) C14—C13—P1—C1 77.5 (3)
P2—C31—C32—C33 178.1 (3) C18—C13—P1—C1 −100.0 (4)
C31—C32—C33—C34 −1.3 (6) C49—N3—P2—C43 46.9 (4)
C32—C33—C34—C35 1.1 (7) C49—N3—P2—C31 −87.0 (4)
C33—C34—C35—C36 −0.9 (7) C49—N3—P2—C37 159.5 (4)
C32—C31—C36—C35 −1.1 (6) C48—C43—P2—N3 18.3 (3)
P2—C31—C36—C35 −177.9 (3) C44—C43—P2—N3 −166.5 (3)
C34—C35—C36—C31 0.9 (7) C48—C43—P2—C31 154.2 (3)
C42—C37—C38—C39 −0.6 (7) C44—C43—P2—C31 −30.6 (4)
P2—C37—C38—C39 171.0 (4) C48—C43—P2—C37 −93.2 (3)
C37—C38—C39—C40 0.1 (8) C44—C43—P2—C37 82.0 (3)
C38—C39—C40—C41 −0.2 (9) C32—C31—P2—N3 −158.5 (3)
C39—C40—C41—C42 0.9 (9) C36—C31—P2—N3 18.2 (4)
C38—C37—C42—C41 1.2 (6) C32—C31—P2—C43 65.4 (4)
P2—C37—C42—C41 −170.5 (4) C36—C31—P2—C43 −117.8 (3)
C40—C41—C42—C37 −1.4 (8) C32—C31—P2—C37 −46.6 (3)
C48—C43—C44—C45 0.5 (6) C36—C31—P2—C37 130.2 (3)
P2—C43—C44—C45 −174.6 (3) C38—C37—P2—N3 −91.4 (3)
C43—C44—C45—C46 −0.2 (6) C42—C37—P2—N3 79.9 (3)
C44—C45—C46—C47 −0.5 (7) C38—C37—P2—C43 30.0 (4)
C45—C46—C47—C48 0.8 (6) C42—C37—P2—C43 −158.6 (3)
C46—C47—C48—C43 −0.5 (6) C38—C37—P2—C31 147.0 (3)
C44—C43—C48—C47 −0.2 (6) C42—C37—P2—C31 −41.6 (4)
P2—C43—C48—C47 175.3 (3) C24—C25—S1—C20 0.7 (3)
N3—C49—C50—C51 0.9 (6) S2—C25—S1—C20 178.9 (3)
C54—C49—C50—C51 −179.7 (3) C19—C20—S1—C25 0.1 (3)
N3—C49—C50—S3 −179.8 (3) C21—C20—S1—C25 −174.3 (3)
C54—C49—C50—S3 −0.4 (4) C24—C25—S2—C27 −0.5 (3)
C49—C50—C51—O5 −1.6 (6) S1—C25—S2—C27 −178.6 (3)
S3—C50—C51—O5 179.1 (3) C26—C27—S2—C25 0.5 (3)
C49—C50—C51—O6 178.7 (3) C28—C27—S2—C25 178.2 (3)
S3—C50—C51—O6 −0.6 (4) C54—C55—S3—C50 −0.6 (3)
N3—C49—C54—C55 179.4 (3) S4—C55—S3—C50 178.3 (3)
C50—C49—C54—C55 −0.1 (4) C49—C50—S3—C55 0.6 (3)
N3—C49—C54—C56 0.9 (5) C51—C50—S3—C55 180.0 (3)
C50—C49—C54—C56 −178.5 (3) C54—C55—S4—C57 0.4 (3)
C56—C54—C55—S3 179.3 (2) S3—C55—S4—C57 −178.6 (3)
C49—C54—C55—S3 0.5 (4) C56—C57—S4—C55 −0.8 (3)
C56—C54—C55—S4 0.2 (4) C58—C57—S4—C55 177.0 (3)
C49—C54—C55—S4 −178.6 (2)

Hydrogen-bond geometry (Å, °)

D—H···A D—H H···A D···A D—H···A
C33—H33···O3 0.93 2.46 3.298 (5) 151
N4—H4B···O7 0.86 2.16 2.817 (4) 134
N4—H4A···N3 0.86 2.29 2.945 (4) 133
N2—H2B···O3 0.86 2.19 2.832 (4) 131
N2—H2A···N1 0.86 2.33 2.965 (4) 131

Footnotes

Supplementary data and figures for this paper are available from the IUCr electronic archives (Reference: BT2711).

References

  1. Bruker (2001). SMART, SAINT-Plus and SADABS Bruker AXS Inc., Madison, Wisconsin, USA.
  2. Ding, M. W., Xu, S. Z. & Zhao, J. F. (2004). J. Org. Chem.69, 8366–8371. [DOI] [PubMed]
  3. Liao, Q.-B., Huang, J., Yang, Z.-Z. & Liu, M.-G. (2007). Acta Cryst. E63, o3824.
  4. Liu, M.-G. & Hu, Y.-G. (2006). Acta Cryst. E62, o3206–o3208.
  5. Sheldrick, G. M. (2008). Acta Cryst. A64, 112–122. [DOI] [PubMed]
  6. Spek, A. L. (2003). J. Appl. Cryst.36, 7–13.
  7. Walter, H. (1999a). PCT Int. Appl. No. 44; WO 9911631.
  8. Walter, H. (1999b). PCT Int. Appl. No. 89; WO 9914202.

Associated Data

This section collects any data citations, data availability statements, or supplementary materials included in this article.

Supplementary Materials

Crystal structure: contains datablocks I, global. DOI: 10.1107/S1600536808015705/bt2711sup1.cif

e-64-o1180-sup1.cif (41.5KB, cif)

Structure factors: contains datablocks I. DOI: 10.1107/S1600536808015705/bt2711Isup2.hkl

e-64-o1180-Isup2.hkl (536.9KB, hkl)

Additional supplementary materials: crystallographic information; 3D view; checkCIF report


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