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ISSN: 2056-9890

The crystal structures of 6′-(4-chloro­phen­yl)- and 6′-(4-meth­­oxy­phen­yl)-6a′-nitro-6a′,6b′,7′,9′,10′,12a′-hexa­hydro-2H,6′H,8′H-spiro­[ace­naphthyl­ene-1,12′-chromeno[3,4-a]indolizin]-2-one

CROSSMARK_Color_square_no_text.svg

aPG & Research Department of Physics, The New College (Autonomous), Chennai 600 014, Tamil Nadu, India, bDepartment of Biophysics, All India Institute of medical Science, New Delhi 110 029, India, cCAS in Crystallography and Biophysics, University of Madras, Chennai 600 025, India, and dGVK Biosciences Pvt. Ltd, Hyderabad 500 076, India
*Correspondence e-mail: mnizam.new@gmail.com

Edited by H. Stoeckli-Evans, University of Neuchâtel, Switzerland (Received 2 January 2019; accepted 8 January 2019; online 15 January 2019)

In the title compounds, C32H25ClN2O4 (I) and C33H28N2O5 (II), the six-membered pyran and piperidine rings adopt envelope and chair conformations, respectively. The five-membered pyrrolidine rings adopt twist conformations. Compound (II) crystallizes with two independent mol­ecules (A and B) in the asymmetric unit. In all three mol­ecules there is a C—H⋯O intra­molecular hydrogen bond present enclosing an S(7) ring motif. In (I), both oxygen atoms of the nitro group are disordered, while in (II) the meth­oxy­benzene group is disordered in mol­ecule B. The geometries were regularized by soft restraints. In the crystal of (I), mol­ecules are linked by C—H⋯O hydrogen bonds, forming chains along [010]. The chains are linked by C—H⋯Cl hydrogen bonds, forming layers parallel to (10[\overline{1}]). Within the layer there are C—H⋯π inter­actions present. In the crystal of (II), the A and B mol­ecules are linked via C—H⋯O hydrogen bonds, forming a square four-membered ABAB unit. These units are linked by a number of C—H⋯π inter­actions, forming a three-dimensional supra­molecular structure.

1. Chemical context

Nitro­gen-containing heterocyclic compounds are reported to possess a diverse range of biological activities such as anti­microbial, anti­tumor and anti-inflammatory (Thirunavukkarsu et al., 2017[Thirunavukkarsu, A., Sujatha, T., Umarani, P. R., Nizam Mohideen, M., Silambarasan, A. & Kumar, R. M. (2017). J. Cryst. Growth, 460, 42-47.]) properties. Spiro compounds are encountered in many pharmacologically active alkaloids (NizamMohideen et al., 2009c[NizamMohideen, M., Thenmozhi, S., SubbiahPandi, A., Savitha, G. & Perumal, P. T. (2009c). Acta Cryst. E65, o977-o978.]; Cravotto et al., 2001[Cravotto, G., Giovenzana, G. B., Pilati, T., Sisti, M. & Palmisano, G. (2001). J. Org. Chem. 66, 8447-8453.]). The cornerstone for cyclo­addition reactions, nitro­nes, are excellent spin-trapping and highly versatile synthetic inter­mediates (Bernotas et al., 1996[Bernotas, R. C., Adams, G. & Carr, A. A. (1996). Tetrahedron, 52, 6519-6526.]; NizamMohideen et al., 2009b[NizamMohideen, M., Damodiran, M., SubbiahPandi, A. & Perumal, P. T. (2009b). Acta Cryst. E65, o2305-o2306.]). Highly substituted spiro compounds result from the 1,3-dipolar cyclo­addition of exocylic olefins with nitro­nes and these spiro compounds have also been transformed into complex heterocycles (Hossain et al., 1993[Hossain, N., Papchikhin, A., Plavec, J. & Chattopadhyaya, J. (1993). Tetrahedron, 49, 10133-10156.]; NizamMohideen et al., 2009a[NizamMohideen, M., Damodiran, M., SubbiahPandi, A. & Perumal, P. T. (2009a). Acta Cryst. E65, o1156.]). Recognizing the importance of such compounds in drug discovery and our ongoing research on the construction of novel heterocycles has prompted us to investigate the title compounds and we report herein on their synthesis and crystal structures.

2. Structural commentary

The mol­ecular structure of compound (I)[link] is shown in Fig. 1[link], while the mol­ecular structures of the two independent mol­ecules, A and B, of compound (II)[link] are shown in Figs. 2[link] and 3[link], respectively; they are in fact enanti­omers. The bond lengths and angles in all three mol­ecules are very similar. In (II)[link], the meth­oxy­benzene group of mol­ecule B is positionally disordered and only the major component will be taken into consideration concerning the conformation of the mol­ecule. The structural overlap of compound (I)[link] on the major component of mol­ecule B of compound (II)[link] is shown in Fig. 4[link]. The two mol­ecules have an r.m.s. deviation of 0.212 Å. The mol­ecular overlap of inverted mol­ecule B of compound II (major component) on mol­ecule A is shown in Fig. 5[link]. Here the r.m.s. deviation is 0.297 Å and it can be seen that the major difference between the two mol­ecules concerns the orientation of the 4-meth­oxy­phenyl group. In all three mol­ecules (I and IIA and IIB) the pyran rings have envelope conformations with the methyl­ene C atom C21 as the flap. The piperidine rings adopt chair conformations, while the pyrrolidine rings adopt twist conformations on the N1—C12 bond (N1A—C12A in IIA and N1B—C12B in IIB).

[Scheme 1]
[Figure 1]
Figure 1
View of the mol­ecular structure of compound (I)[link], with the atom labelling. Displacement ellipsoids are drawn at the 50% probability level. The intra­molecular C—H⋯O hydrogen bond (see Table 1[link]) is shown as a dashed line.
[Figure 2]
Figure 2
View of the mol­ecular structure of mol­ecule A of compound (II)[link], with the atom labelling. Displacement ellipsoids are drawn at the 30% probability level. The intra­molecular C—H⋯O hydrogen bond (see Table 2[link]) is shown as a dashed line.
[Figure 3]
Figure 3
View of the mol­ecular structure of mol­ecule B of compound (II)[link], with the atom labelling. Displacement ellipsoids are drawn at the 30% probability level. The intra­molecular C—H⋯O hydrogen bond (see Table 2[link]) is shown as a dashed line.
[Figure 4]
Figure 4
The structural overlay of compound (I)[link] on the major component of mol­ecule B of compound (II)[link].
[Figure 5]
Figure 5
The mol­ecular overlay of inverted mol­ecule B (major component) on mol­ecule A of compound (II)[link].

The mean plane of the five-membered pyrrolidine ring (N1/C12/C13/C21/C22) is inclined to the mean plane of the cyclo­pen3–en-1-one ring (C1/C2/C10–C12) by 85.7 (1)° in compound (I)[link], and the equivalent dihedral angles in mol­ecules A and B of compound (II)[link] are 87.5 (1) and 89.3 (1)°, respectively. In compound (I)[link] the dihedral angles between the ace­naphthyl­ene ring system (C1–C12) and the benzene rings (C14–C19 and C27–C32) are 73.1 (1) and 57.3 (1)°, respectively. In (II)[link] the corresponding dihedral angles are, respectively, 65.1 (2) and 53.6 (2)° for mol­ecule A and 66.7 (2) and 59.3 (5)° for mol­ecule B. The benzene rings (C27–C32 and C14—C19) are inclined to each other by 50.0 (1)° in (I)[link], and 62.2 (2)° in mol­ecule A and 71.6 (2)° in mol­ecule B of (II)[link]. The mean plane of the pyrrolidine ring (N1/C12/C13/C21/C22) makes a dihedral angle with the mean plane of the pyran ring (O2/C13/C14/C219–C21) of 30.2 (2)° in (I)[link], and 33.2 (2) for mol­ecule A and 36.1 (2)° for mol­ecule B in (II)[link], and is inclined to the piperidine ring mean plane (N1/C22–C26) by 9.9 (2)° in (I)[link], and 11.1 (2)° in mol­ecule A and 13.1 (2)° in mol­ecule B of compound (II)[link]. The mean planes of the pyran and piperidine ring are inclined to each other by 29.1 (2)° in (I)[link], and 33.5 (2) in mol­ecule A and 36.2 (2)° in mol­ecule B of compound (II)[link]. Full details of the puckering parameters and lowest displacement asymmetry parameters are given in the supporting information. The keto atom O1 deviates from the mean plane of the plane of the ace­naphthyl­ene ring system (C1—C12) by 0.070 (2) Å in (I)[link], and by 0.049 (2) and 0.162 (1) Å, respectively, in mol­ecules A and B of compound (II)[link]. Chlorine atom Cl1 deviates by 0.109 (2) Å from the plane of the benzene ring (C27–C32) in (I)[link]. It can be seen that the conformations and the values of the dihedral angles in all three mol­ecules of the title compounds are very similar. The bond lengths and angles are also close to those reported for similar compounds (Devi et al., 2013a[Devi, S. K., Srinivasan, T., Rao, J. N. S., Raghunathan, R. & Velmurugan, D. (2013a). Acta Cryst. E69, o1047.],b[Devi, S. K., Srinivasan, T., Rao, J. N. S., Raghunathan, R. & Velmurugan, D. (2013b). Acta Cryst. E69, o993.]).

3. Supra­molecular features

For both compounds, the crystal structure is stabilized by inter­molecular C—H⋯O hydrogen bonds (Tables 1[link] and 2[link]). In (I)[link], the C—H⋯O hydrogen bonds link adjacent mol­ecules, forming chains propagating along the b-axis direction. The chains are linked by C—H⋯Cl hydrogen bonds, forming layers parallel to the (10[\overline{1}]) plane; see Table 1[link] and Fig. 6[link]. Within the layers there are C—H⋯π inter­actions present (Table 1[link]).

Table 1
Hydrogen-bond geometry (Å, °) for (I)[link]

Cg1 is the centroid of the C14–C19 ring.

D—H⋯A D—H H⋯A DA D—H⋯A
C20—H20⋯O1 0.98 2.46 3.284 (3) 142
C4—H4⋯O4i 0.93 2.59 3.481 (8) 160
C16—H16⋯Cl1ii 0.93 2.79 3.459 (2) 130
C9—H9⋯Cg1iii 0.93 2.88 3.607 (3) 136
Symmetry codes: (i) x, y-1, z; (ii) x-1, y-1, z-1; (iii) -x, -y+1, -z.

Table 2
Hydrogen-bond geometry (Å, °) for (II)[link]

Cg1, Cg2, Cg3 and Cg4 are the centroids of rings C27A–C32A, C14B–C19B, C27B–C32B and C2B–C6B/C11B, respecively.

D—H⋯A D—H H⋯A DA D—H⋯A
C20A—H20A⋯O1A 0.98 2.38 3.225 (2) 144
C20B—H20B⋯O1B 0.98 2.28 3.152 (2) 147
C4B—H4B⋯O1Ai 0.93 2.55 3.315 (2) 139
C25A—H25A⋯O5Bii 0.97 2.53 3.233 (3) 129
C9B—H9BCg1iii 0.93 2.87 3.709 (2) 150
C17A—H17ACg2iv 0.93 2.77 3.667 (2) 161
C26B—H26CCg3v 0.97 2.88 3.575 (3) 129
C33B—H33FCg4ii 0.96 2.86 3.707 (7) 148
Symmetry codes: (i) [x+{\script{1\over 2}}, -y+{\script{1\over 2}}, z+{\script{1\over 2}}]; (ii) [-x+{\script{3\over 2}}, y-{\script{1\over 2}}, -z+{\script{3\over 2}}]; (iii) [-x+{\script{1\over 2}}, y+{\script{1\over 2}}, -z+{\script{3\over 2}}]; (iv) [x-{\script{3\over 2}}, -y-{\script{1\over 2}}, z-{\script{3\over 2}}]; (v) [-x+{\script{3\over 2}}, y+{\script{1\over 2}}, -z+{\script{3\over 2}}].
[Figure 6]
Figure 6
A view normal to plane (10[\overline{1}]) of the crystal structure of (I)[link], showing the C—H⋯O and C—H⋯Cl hydrogen bonds (dashed lines; see Table 1[link]).

In compound (II)[link], the inter­linking of A and B mol­ecules via C—H⋯O hydrogen bonds generates four-membered units (Table 2[link] and Fig. 7[link]). These are linked by C—H⋯π inter­actions, forming a three-dimensional supra­molecular structure (Table 2[link] and Fig. 8[link]).

[Figure 7]
Figure 7
A partial view along the b axis of the crystal packing of compound (II)[link]. The A (blue) and B (red) mol­ecules are linked via C—H⋯O hydrogen bonds (dashed lines; see Table 2[link]).
[Figure 8]
Figure 8
A view along the b axis of the crystal packing of compound (II)[link]. The A (blue) and B (red) mol­ecules are linked via C—H⋯O hydrogen bonds and C—H⋯π inter­actions (dashed lines; see Table 2[link]). For clarity, H atoms not involved in the various inter­molecular inter­actions have been omitted.

4. Database survey

A search of the Cambridge Structural Database (CSD, Version 5.39, August 2018; Groom et al., 2016[Groom, C. R., Bruno, I. J., Lightfoot, M. P. & Ward, S. C. (2016). Acta Cryst. B72, 171-179.]) for the 6′-(4-phen­yl)-6a′-hexa­hydro-2H,6′H,6b′H-spiro­[benzo­pyrano[3,4-a]indolizin]-2-one skeleton yielded two hits: namely 6-(4-meth­oxy­phen­yl)-6a-nitro-6,6a,6b,7,8,9,10,12a-octa­hydro­spiro­[chromeno[3,4-a]indolizine-12,3-indolin]-2-one (CSD refcode AFONEQ; Devi et al., 2013a[Devi, S. K., Srinivasan, T., Rao, J. N. S., Raghunathan, R. & Velmurugan, D. (2013a). Acta Cryst. E69, o1047.]) and 6-(4-meth­oxy­phen­yl)-6a-nitro-6,6a,6b,7,8,9,10,12a-octa­hydro­spiro­[chromeno[3,4-a]indolizine-12,3-indolin]-2-one (FIDCOM; Devi et al., 2013b[Devi, S. K., Srinivasan, T., Rao, J. N. S., Raghunathan, R. & Velmurugan, D. (2013b). Acta Cryst. E69, o993.]).

In both compounds, the piperidine ring has a chair conformation, as do the title compounds. In AFONEQ, the pyran ring has a envelope conformation, as do the title compounds, while in FIDCOM the pyran ring has a planar conformation. In these two compounds, the pyrrolidine ring adopts an envelope conformation, while in the title compounds these rings have twisted conformations. The bond lengths and bond angles are very similar to those reported here for the title compounds.

5. Synthesis and crystallization

To a solution of ace­naphtho­quinone (1.0 mmol) and piperidine-2-carb­oxy­lic acid (1.5 mmol) in dry toluene, was added 2-(4-chloro­phen­yl)-3-nitro-2H-chromene (1 mmol) for (I)[link], and 2-(4-meth­oxy­phen­yl)-3-nitro-2H-chromene (1 mmol) for (II)[link], under a nitro­gen atmosphere. The solutions were refluxed for 18 h in a Dean–Stark apparatus to give the cyclo­adducts. After completion of the reactions as indicated by TLC, the solvent was evaporated under reduced pressure. The crude products obtained were purified by column chromatography using hexa­ne/EtOAc (8:2) as eluent (yield 89%). Colourless block-like crystals of the title compounds, suitable for X-ray diffraction analysis, were obtained by slow evaporation of solutions in ethanol.

6. Refinement

Crystal data, data collection and structure refinement details are summarized in Table 3[link]. For both compounds the H atoms were positioned geometrically and constrained to ride on their parent atoms: C—H = 0.93–0.98 Å with Uiso(H) = 1.5Ueq(C-meth­yl) and 1.2Ueq(C) for other H atoms. In compound (I)[link] the nitro group oxygen atoms, O3 and O4, are disordered over two positions with a refined occupancy ratio of 0.54 (3):0.46 (3). In compound (II)[link], the meth­oxy­benzene group of mol­ecule B is disordered, as detectable from the large displacement parameters for the C and O atoms and short C—C and C—O bond lengths. This disorder over two positions was modelled and the site occupancies refined to 0.739 (5) and 0.261 (5). The geometry was regularized by soft restraints.

Table 3
Experimental details

  (I) (II)
Crystal data
Chemical formula C32H25ClN2O4 C33H28N2O5
Mr 536.99 532.57
Crystal system, space group Triclinic, P[\overline{1}] Monoclinic, P21/n
Temperature (K) 293 293
a, b, c (Å) 10.6777 (4), 11.6095 (4), 12.6037 (8) 19.8942 (2), 13.6097 (7), 20.7822 (1)
α, β, γ (°) 98.383 (3), 105.378 (3), 115.522 (2) 90, 107.268 (3), 90
V3) 1297.32 (11) 5373.2 (3)
Z 2 8
Radiation type Mo Kα Mo Kα
μ (mm−1) 0.19 0.09
Crystal size (mm) 0.20 × 0.15 × 0.10 0.30 × 0.26 × 0.20
 
Data collection
Diffractometer Bruker Kappa APEXII CCD Bruker Kappa APEXII CCD
Absorption correction Multi-scan (SADABS; Bruker, 2008[Bruker (2008). APEX2, SAINT and SADABS. Bruker AXS Inc., Madison, Wisconsin, USA.]) Multi-scan (SADABS; Bruker, 2008[Bruker (2008). APEX2, SAINT and SADABS. Bruker AXS Inc., Madison, Wisconsin, USA.])
Tmin, Tmax 0.752, 0.863 0.789, 0.846
No. of measured, independent and observed [I > 2σ(I)] reflections 19013, 5294, 3713 50874, 13194, 7862
Rint 0.037 0.033
(sin θ/λ)max−1) 0.625 0.667
 
Refinement
R[F2 > 2σ(F2)], wR(F2), S 0.049, 0.150, 1.02 0.048, 0.130, 1.02
No. of reflections 5294 13194
No. of parameters 371 795
No. of restraints 2 31
H-atom treatment H-atom parameters constrained H-atom parameters constrained
Δρmax, Δρmin (e Å−3) 0.29, −0.38 0.30, −0.20
Computer programs: APEX2 and SAINT (Bruker, 2008[Bruker (2008). APEX2, SAINT and SADABS. Bruker AXS Inc., Madison, Wisconsin, USA.]), SHELXS2018/3 (Sheldrick, 2008[Sheldrick, G. M. (2008). Acta Cryst. A64, 112-122.]), SHELXL2018/3 (Sheldrick, 2015[Sheldrick, G. M. (2015). Acta Cryst. C71, 3-8.]), ORTEP-3 for Windows and WinGX (Farrugia, 2012[Farrugia, L. J. (2012). J. Appl. Cryst. 45, 849-854.]), Mercury (Macrae et al., 2008[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.]), PLATON (Spek, 2009[Spek, A. L. (2009). Acta Cryst. D65, 148-155.]), and publCIF (Westrip, 2010[Westrip, S. P. (2010). J. Appl. Cryst. 43, 920-925.]).

Supporting information


Computing details top

For both structures, data collection: APEX2 (Bruker, 2008); cell refinement: SAINT (Bruker, 2008); data reduction: SAINT (Bruker, 2008); program(s) used to solve structure: SHELXS2018/3 (Sheldrick, 2008); program(s) used to refine structure: SHELXL2018/3 (Sheldrick, 2015); molecular graphics: ORTEP-3 for Windows (Farrugia, 2012) and Mercury (Macrae et al., 2008); software used to prepare material for publication: WinGX (Farrugia, 2012), PLATON (Spek, 2009), SHELXL2018/3 (Sheldrick, 2015) and publCIF (Westrip, 2010).

6'-(4-Chlorophenyl)-6a'-nitro-6a',6b',7',9',10',12a'-hexahydro-2H,6'H,8'H-spiro[acenaphthylene-1,12'-chromeno[3,4-a]indolizin]-2-one (I) top
Crystal data top
C32H25ClN2O4Z = 2
Mr = 536.99F(000) = 560
Triclinic, P1Dx = 1.375 Mg m3
a = 10.6777 (4) ÅMo Kα radiation, λ = 0.71073 Å
b = 11.6095 (4) ÅCell parameters from 5294 reflections
c = 12.6037 (8) Åθ = 1.8–26.4°
α = 98.383 (3)°µ = 0.19 mm1
β = 105.378 (3)°T = 293 K
γ = 115.522 (2)°Block, colourless
V = 1297.32 (11) Å30.20 × 0.15 × 0.10 mm
Data collection top
Bruker Kappa APEXII CCD
diffractometer
3713 reflections with I > 2σ(I)
ω and φ scansRint = 0.037
Absorption correction: multi-scan
(SADABS; Bruker, 2008)
θmax = 26.4°, θmin = 1.8°
Tmin = 0.752, Tmax = 0.863h = 1113
19013 measured reflectionsk = 1414
5294 independent reflectionsl = 1515
Refinement top
Refinement on F22 restraints
Least-squares matrix: fullHydrogen site location: inferred from neighbouring sites
R[F2 > 2σ(F2)] = 0.049H-atom parameters constrained
wR(F2) = 0.150 w = 1/[σ2(Fo2) + (0.0789P)2 + 0.345P]
where P = (Fo2 + 2Fc2)/3
S = 1.02(Δ/σ)max = 0.001
5294 reflectionsΔρmax = 0.29 e Å3
371 parametersΔρmin = 0.38 e Å3
Special details top

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.

Fractional atomic coordinates and isotropic or equivalent isotropic displacement parameters (Å2) top
xyzUiso*/UeqOcc. (<1)
C10.2881 (2)0.3825 (2)0.25371 (18)0.0459 (5)
C20.1842 (2)0.2368 (2)0.21187 (17)0.0466 (5)
C30.2047 (3)0.1270 (2)0.20568 (19)0.0561 (6)
H30.2998840.1371070.2323410.067*
C40.0781 (3)0.0002 (2)0.1582 (2)0.0646 (7)
H40.0907710.0748250.1553820.077*
C50.0632 (3)0.0190 (2)0.11575 (19)0.0609 (6)
H50.1438480.1054150.0837820.073*
C60.0885 (3)0.0914 (2)0.11975 (17)0.0492 (5)
C70.2264 (3)0.0891 (2)0.07867 (19)0.0579 (6)
H70.3144920.0079430.0417610.069*
C80.2302 (3)0.2063 (2)0.0933 (2)0.0606 (6)
H80.3221350.2027630.0665180.073*
C90.1006 (2)0.3325 (2)0.1472 (2)0.0550 (6)
H90.1072960.4103280.1570640.066*
C100.0346 (2)0.33842 (19)0.18448 (17)0.0438 (5)
C110.0387 (2)0.21777 (19)0.17054 (16)0.0438 (5)
C120.1921 (2)0.45489 (18)0.24065 (17)0.0419 (4)
C130.2339 (2)0.55885 (18)0.17313 (16)0.0409 (4)
H130.1464190.5700800.1443360.049*
C140.2711 (2)0.52501 (19)0.06933 (17)0.0453 (5)
C150.1738 (3)0.4053 (2)0.02013 (18)0.0578 (6)
H150.0895280.3411490.0124000.069*
C160.2015 (3)0.3815 (3)0.11943 (19)0.0674 (7)
H160.1372580.3003860.1771200.081*
C170.3231 (3)0.4764 (3)0.13407 (19)0.0622 (7)
H170.3389600.4608430.2025450.075*
C180.4217 (3)0.5951 (2)0.04682 (19)0.0563 (6)
H180.5052570.6592640.0554680.068*
C190.3945 (2)0.6173 (2)0.05370 (17)0.0467 (5)
C200.5079 (2)0.7327 (2)0.25230 (17)0.0437 (5)
H200.5303500.6605890.2622830.052*
C210.3561 (2)0.69182 (18)0.26509 (16)0.0398 (4)
C220.3564 (2)0.66574 (19)0.38201 (17)0.0423 (4)
H220.4376920.6464990.4111120.051*
C230.3709 (3)0.7696 (2)0.48007 (18)0.0509 (5)
H23A0.4651230.8513670.5025120.061*
H23B0.2907540.7899810.4554250.061*
C240.3637 (3)0.7141 (2)0.58148 (19)0.0601 (6)
H24B0.3670400.7774580.6430880.072*
H24A0.4495530.7020640.6103300.072*
C250.2216 (3)0.5812 (2)0.5462 (2)0.0642 (6)
H25A0.2223400.5448210.6108010.077*
H25B0.1360130.5949540.5254250.077*
C260.2080 (3)0.4825 (2)0.44468 (19)0.0567 (6)
H26A0.2879000.4613950.4673600.068*
H26B0.1136440.4002310.4199120.068*
C270.6420 (2)0.8610 (2)0.33494 (17)0.0445 (5)
C280.6967 (2)0.9762 (2)0.30247 (18)0.0528 (5)
H280.6495860.9741010.2280770.063*
C290.8183 (3)1.0935 (2)0.37688 (19)0.0563 (6)
H290.8542671.1695950.3529500.068*
C300.8866 (2)1.0972 (2)0.48772 (19)0.0540 (5)
C310.8373 (3)0.9844 (3)0.5221 (2)0.0630 (6)
H310.8849240.9873650.5966960.076*
C320.7169 (2)0.8664 (2)0.4457 (2)0.0571 (6)
H320.6852130.7892440.4685680.069*
N20.3151 (2)0.80137 (17)0.24890 (16)0.0485 (4)
N10.21621 (18)0.54109 (15)0.34986 (14)0.0438 (4)
O10.42335 (18)0.43921 (15)0.29281 (15)0.0614 (4)
O20.49612 (16)0.73855 (14)0.13750 (12)0.0521 (4)
Cl11.03556 (8)1.24711 (7)0.58385 (6)0.0799 (2)
O30.3964 (11)0.9095 (5)0.3177 (6)0.0596 (18)0.54 (3)
O40.2186 (17)0.7792 (7)0.1611 (8)0.076 (3)0.54 (3)
O3'0.4053 (12)0.9176 (7)0.281 (2)0.107 (5)0.46 (3)
O4'0.1793 (6)0.7649 (6)0.214 (2)0.085 (5)0.46 (3)
Atomic displacement parameters (Å2) top
U11U22U33U12U13U23
C10.0514 (13)0.0431 (10)0.0460 (11)0.0284 (10)0.0115 (9)0.0154 (9)
C20.0584 (13)0.0423 (10)0.0409 (10)0.0299 (10)0.0114 (9)0.0137 (8)
C30.0726 (15)0.0511 (12)0.0515 (12)0.0417 (12)0.0125 (11)0.0169 (10)
C40.096 (2)0.0437 (12)0.0574 (14)0.0436 (13)0.0162 (13)0.0155 (10)
C50.0838 (18)0.0366 (11)0.0481 (12)0.0257 (11)0.0110 (12)0.0115 (9)
C60.0636 (14)0.0391 (10)0.0381 (10)0.0229 (10)0.0125 (10)0.0128 (8)
C70.0543 (14)0.0459 (12)0.0502 (12)0.0130 (10)0.0050 (10)0.0155 (10)
C80.0460 (13)0.0537 (13)0.0694 (15)0.0213 (11)0.0064 (11)0.0221 (11)
C90.0512 (13)0.0452 (11)0.0678 (14)0.0268 (10)0.0129 (11)0.0209 (10)
C100.0474 (12)0.0372 (10)0.0453 (11)0.0226 (9)0.0103 (9)0.0147 (8)
C110.0536 (12)0.0387 (10)0.0375 (10)0.0245 (9)0.0103 (9)0.0135 (8)
C120.0447 (11)0.0374 (10)0.0435 (10)0.0236 (9)0.0100 (9)0.0126 (8)
C130.0417 (11)0.0371 (10)0.0438 (10)0.0233 (9)0.0079 (8)0.0135 (8)
C140.0540 (12)0.0423 (10)0.0390 (10)0.0294 (10)0.0056 (9)0.0128 (8)
C150.0722 (16)0.0471 (12)0.0417 (12)0.0277 (11)0.0061 (11)0.0124 (9)
C160.098 (2)0.0561 (14)0.0375 (11)0.0412 (14)0.0056 (12)0.0090 (10)
C170.0880 (18)0.0741 (16)0.0391 (11)0.0563 (15)0.0170 (12)0.0155 (11)
C180.0625 (14)0.0684 (14)0.0487 (12)0.0430 (12)0.0169 (11)0.0183 (11)
C190.0539 (13)0.0490 (11)0.0413 (11)0.0333 (10)0.0104 (9)0.0122 (9)
C200.0449 (11)0.0450 (10)0.0418 (10)0.0243 (9)0.0134 (9)0.0124 (9)
C210.0430 (11)0.0336 (9)0.0453 (10)0.0234 (8)0.0116 (9)0.0119 (8)
C220.0420 (11)0.0398 (10)0.0450 (11)0.0218 (9)0.0122 (9)0.0138 (8)
C230.0495 (12)0.0435 (11)0.0521 (12)0.0199 (10)0.0163 (10)0.0075 (9)
C240.0644 (15)0.0601 (14)0.0450 (12)0.0274 (12)0.0143 (11)0.0074 (10)
C250.0713 (16)0.0615 (14)0.0509 (13)0.0249 (13)0.0226 (12)0.0175 (11)
C260.0623 (14)0.0477 (12)0.0529 (13)0.0207 (11)0.0190 (11)0.0199 (10)
C270.0406 (11)0.0495 (11)0.0437 (11)0.0228 (9)0.0149 (9)0.0139 (9)
C280.0537 (13)0.0553 (13)0.0396 (11)0.0206 (11)0.0125 (10)0.0161 (10)
C290.0571 (14)0.0511 (12)0.0470 (12)0.0170 (11)0.0154 (10)0.0155 (10)
C300.0461 (12)0.0584 (13)0.0435 (11)0.0181 (10)0.0132 (10)0.0080 (10)
C310.0509 (13)0.0762 (16)0.0445 (12)0.0220 (12)0.0063 (10)0.0220 (12)
C320.0483 (13)0.0594 (13)0.0568 (13)0.0218 (11)0.0122 (10)0.0274 (11)
N20.0535 (11)0.0410 (10)0.0576 (11)0.0287 (9)0.0184 (9)0.0182 (9)
N10.0466 (10)0.0367 (8)0.0452 (9)0.0198 (7)0.0136 (8)0.0127 (7)
O10.0505 (10)0.0527 (9)0.0795 (11)0.0307 (8)0.0117 (8)0.0208 (8)
O20.0527 (9)0.0507 (8)0.0434 (8)0.0196 (7)0.0161 (7)0.0099 (6)
Cl10.0707 (4)0.0686 (4)0.0534 (4)0.0104 (3)0.0042 (3)0.0021 (3)
O30.073 (4)0.026 (2)0.066 (4)0.021 (2)0.014 (2)0.005 (2)
O40.095 (5)0.056 (2)0.065 (3)0.049 (3)0.008 (3)0.015 (2)
O3'0.064 (4)0.044 (3)0.224 (13)0.030 (3)0.057 (7)0.057 (5)
O4'0.059 (3)0.058 (3)0.131 (11)0.039 (2)0.008 (3)0.023 (4)
Geometric parameters (Å, º) top
C1—O11.213 (3)C20—O21.433 (2)
C1—C21.477 (3)C20—C271.507 (3)
C1—C121.574 (3)C20—C211.542 (3)
C2—C31.378 (3)C20—H200.9800
C2—C111.406 (3)C21—N21.535 (2)
C3—C41.399 (3)C21—C221.547 (3)
C3—H30.9300C22—N11.463 (2)
C4—C51.365 (4)C22—C231.519 (3)
C4—H40.9300C22—H220.9800
C5—C61.416 (3)C23—C241.518 (3)
C5—H50.9300C23—H23A0.9700
C6—C111.398 (3)C23—H23B0.9700
C6—C71.412 (3)C24—C251.519 (3)
C7—C81.366 (3)C24—H24B0.9700
C7—H70.9300C24—H24A0.9700
C8—C91.409 (3)C25—C261.517 (3)
C8—H80.9300C25—H25A0.9700
C9—C101.362 (3)C25—H25B0.9700
C9—H90.9300C26—N11.463 (3)
C10—C111.407 (3)C26—H26A0.9700
C10—C121.512 (3)C26—H26B0.9700
C12—N11.466 (3)C27—C281.383 (3)
C12—C131.555 (3)C27—C321.390 (3)
C13—C141.511 (3)C28—C291.371 (3)
C13—C211.539 (3)C28—H280.9300
C13—H130.9800C29—C301.379 (3)
C14—C191.380 (3)C29—H290.9300
C14—C151.400 (3)C30—C311.368 (3)
C15—C161.377 (3)C30—Cl11.734 (2)
C15—H150.9300C31—C321.378 (3)
C16—C171.374 (4)C31—H310.9300
C16—H160.9300C32—H320.9300
C17—C181.382 (3)N2—O3'1.194 (6)
C17—H170.9300N2—O31.194 (5)
C18—C191.386 (3)N2—O41.199 (4)
C18—H180.9300N2—O4'1.247 (5)
C19—O21.385 (2)
O1—C1—C2127.43 (19)C27—C20—H20106.7
O1—C1—C12124.78 (18)C21—C20—H20106.7
C2—C1—C12107.79 (17)N2—C21—C13108.98 (15)
C3—C2—C11119.4 (2)N2—C21—C20108.70 (15)
C3—C2—C1133.3 (2)C13—C21—C20110.44 (15)
C11—C2—C1107.33 (17)N2—C21—C22111.16 (15)
C2—C3—C4118.1 (2)C13—C21—C22105.13 (15)
C2—C3—H3120.9C20—C21—C22112.37 (15)
C4—C3—H3120.9N1—C22—C23110.13 (17)
C5—C4—C3122.6 (2)N1—C22—C21103.32 (15)
C5—C4—H4118.7C23—C22—C21120.98 (16)
C3—C4—H4118.7N1—C22—H22107.2
C4—C5—C6120.9 (2)C23—C22—H22107.2
C4—C5—H5119.5C21—C22—H22107.2
C6—C5—H5119.5C24—C23—C22108.70 (18)
C11—C6—C7116.29 (18)C24—C23—H23A110.0
C11—C6—C5115.8 (2)C22—C23—H23A110.0
C7—C6—C5127.9 (2)C24—C23—H23B110.0
C8—C7—C6119.8 (2)C22—C23—H23B110.0
C8—C7—H7120.1H23A—C23—H23B108.3
C6—C7—H7120.1C23—C24—C25110.87 (19)
C7—C8—C9122.8 (2)C23—C24—H24B109.5
C7—C8—H8118.6C25—C24—H24B109.5
C9—C8—H8118.6C23—C24—H24A109.5
C10—C9—C8118.8 (2)C25—C24—H24A109.5
C10—C9—H9120.6H24B—C24—H24A108.1
C8—C9—H9120.6C26—C25—C24110.8 (2)
C9—C10—C11118.46 (19)C26—C25—H25A109.5
C9—C10—C12132.14 (18)C24—C25—H25A109.5
C11—C10—C12109.40 (17)C26—C25—H25B109.5
C6—C11—C2123.11 (18)C24—C25—H25B109.5
C6—C11—C10123.72 (19)H25A—C25—H25B108.1
C2—C11—C10113.16 (18)N1—C26—C25109.29 (18)
N1—C12—C10112.51 (17)N1—C26—H26A109.8
N1—C12—C13100.06 (14)C25—C26—H26A109.8
C10—C12—C13114.76 (15)N1—C26—H26B109.8
N1—C12—C1114.02 (15)C25—C26—H26B109.8
C10—C12—C1102.23 (15)H26A—C26—H26B108.3
C13—C12—C1113.83 (16)C28—C27—C32117.78 (19)
C14—C13—C21114.28 (17)C28—C27—C20121.29 (18)
C14—C13—C12118.24 (15)C32—C27—C20120.91 (19)
C21—C13—C12105.24 (15)C29—C28—C27121.8 (2)
C14—C13—H13106.1C29—C28—H28119.1
C21—C13—H13106.1C27—C28—H28119.1
C12—C13—H13106.1C28—C29—C30119.0 (2)
C19—C14—C15117.5 (2)C28—C29—H29120.5
C19—C14—C13120.89 (17)C30—C29—H29120.5
C15—C14—C13121.3 (2)C31—C30—C29120.7 (2)
C16—C15—C14120.8 (2)C31—C30—Cl1120.15 (18)
C16—C15—H15119.6C29—C30—Cl1119.15 (18)
C14—C15—H15119.6C30—C31—C32119.7 (2)
C17—C16—C15120.6 (2)C30—C31—H31120.2
C17—C16—H16119.7C32—C31—H31120.2
C15—C16—H16119.7C31—C32—C27120.9 (2)
C16—C17—C18119.9 (2)C31—C32—H32119.5
C16—C17—H17120.1C27—C32—H32119.5
C18—C17—H17120.1O3—N2—O4123.8 (5)
C17—C18—C19119.1 (2)O3'—N2—O4'120.1 (7)
C17—C18—H18120.4O3'—N2—C21123.1 (7)
C19—C18—H18120.4O3—N2—C21116.7 (5)
C14—C19—O2121.30 (18)O4—N2—C21118.5 (3)
C14—C19—C18122.1 (2)O4'—N2—C21116.0 (4)
O2—C19—C18116.6 (2)C22—N1—C26112.40 (16)
O2—C20—C27107.76 (16)C22—N1—C12107.98 (16)
O2—C20—C21110.04 (16)C26—N1—C12116.80 (15)
C27—C20—C21118.30 (16)C19—O2—C20113.34 (15)
O2—C20—H20106.7
O1—C1—C2—C31.2 (4)C14—C13—C21—C2021.1 (2)
C12—C1—C2—C3178.0 (2)C12—C13—C21—C20110.28 (17)
O1—C1—C2—C11177.8 (2)C14—C13—C21—C22142.51 (16)
C12—C1—C2—C113.0 (2)C12—C13—C21—C2211.14 (19)
C11—C2—C3—C40.1 (3)O2—C20—C21—N264.05 (19)
C1—C2—C3—C4179.0 (2)C27—C20—C21—N260.4 (2)
C2—C3—C4—C51.5 (4)O2—C20—C21—C1355.46 (19)
C3—C4—C5—C61.1 (4)C27—C20—C21—C13179.88 (16)
C4—C5—C6—C110.8 (3)O2—C20—C21—C22172.49 (15)
C4—C5—C6—C7179.1 (2)C27—C20—C21—C2263.1 (2)
C11—C6—C7—C82.2 (3)N2—C21—C22—N1103.19 (17)
C5—C6—C7—C8177.9 (2)C13—C21—C22—N114.58 (18)
C6—C7—C8—C90.8 (4)C20—C21—C22—N1134.74 (15)
C7—C8—C9—C101.3 (4)N2—C21—C22—C2320.5 (2)
C8—C9—C10—C111.8 (3)C13—C21—C22—C23138.27 (18)
C8—C9—C10—C12177.6 (2)C20—C21—C22—C23101.6 (2)
C7—C6—C11—C2177.70 (19)N1—C22—C23—C2458.2 (2)
C5—C6—C11—C22.3 (3)C21—C22—C23—C24178.58 (18)
C7—C6—C11—C101.6 (3)C22—C23—C24—C2555.8 (3)
C5—C6—C11—C10178.4 (2)C23—C24—C25—C2655.5 (3)
C3—C2—C11—C61.8 (3)C24—C25—C26—N155.7 (3)
C1—C2—C11—C6177.29 (18)O2—C20—C27—C2823.7 (3)
C3—C2—C11—C10178.78 (19)C21—C20—C27—C28101.8 (2)
C1—C2—C11—C102.1 (2)O2—C20—C27—C32154.8 (2)
C9—C10—C11—C60.4 (3)C21—C20—C27—C3279.7 (3)
C12—C10—C11—C6179.14 (18)C32—C27—C28—C291.6 (3)
C9—C10—C11—C2179.76 (19)C20—C27—C28—C29179.9 (2)
C12—C10—C11—C20.2 (2)C27—C28—C29—C301.0 (4)
C9—C10—C12—N159.4 (3)C28—C29—C30—C312.3 (4)
C11—C10—C12—N1121.17 (18)C28—C29—C30—Cl1177.30 (18)
C9—C10—C12—C1354.1 (3)C29—C30—C31—C320.9 (4)
C11—C10—C12—C13125.30 (18)Cl1—C30—C31—C32178.65 (19)
C9—C10—C12—C1177.9 (2)C30—C31—C32—C271.7 (4)
C11—C10—C12—C11.6 (2)C28—C27—C32—C312.9 (3)
O1—C1—C12—N160.3 (3)C20—C27—C32—C31178.5 (2)
C2—C1—C12—N1118.94 (18)C13—C21—N2—O3'156.1 (16)
O1—C1—C12—C10178.0 (2)C20—C21—N2—O3'35.7 (16)
C2—C1—C12—C102.8 (2)C22—C21—N2—O3'88.5 (16)
O1—C1—C12—C1353.7 (3)C13—C21—N2—O3176.6 (5)
C2—C1—C12—C13127.12 (18)C20—C21—N2—O362.9 (6)
N1—C12—C13—C14161.39 (17)C22—C21—N2—O361.2 (6)
C10—C12—C13—C1477.9 (2)C13—C21—N2—O413.9 (11)
C1—C12—C13—C1439.4 (2)C20—C21—N2—O4106.6 (11)
N1—C12—C13—C2132.34 (18)C22—C21—N2—O4129.3 (11)
C10—C12—C13—C21153.01 (16)C13—C21—N2—O4'33.7 (14)
C1—C12—C13—C2189.68 (18)C20—C21—N2—O4'154.1 (14)
C21—C13—C14—C199.2 (2)C22—C21—N2—O4'81.7 (14)
C12—C13—C14—C19133.89 (19)C23—C22—N1—C2661.6 (2)
C21—C13—C14—C15177.82 (17)C21—C22—N1—C26167.85 (16)
C12—C13—C14—C1553.1 (2)C23—C22—N1—C12168.13 (16)
C19—C14—C15—C160.2 (3)C21—C22—N1—C1237.57 (18)
C13—C14—C15—C16173.4 (2)C25—C26—N1—C2259.5 (2)
C14—C15—C16—C171.8 (4)C25—C26—N1—C12174.91 (18)
C15—C16—C17—C182.3 (4)C10—C12—N1—C22166.20 (15)
C16—C17—C18—C191.1 (3)C13—C12—N1—C2243.92 (18)
C15—C14—C19—O2179.66 (17)C1—C12—N1—C2277.97 (19)
C13—C14—C19—O26.4 (3)C10—C12—N1—C2666.0 (2)
C15—C14—C19—C181.0 (3)C13—C12—N1—C26171.71 (17)
C13—C14—C19—C18172.22 (18)C1—C12—N1—C2649.8 (2)
C17—C18—C19—C140.6 (3)C14—C19—O2—C2029.9 (2)
C17—C18—C19—O2179.25 (18)C18—C19—O2—C20151.41 (18)
C14—C13—C21—N298.26 (18)C27—C20—O2—C19168.71 (16)
C12—C13—C21—N2130.38 (16)C21—C20—O2—C1961.0 (2)
Hydrogen-bond geometry (Å, º) top
Cg1 is the centroid of the C14–C19 ring.
D—H···AD—HH···AD···AD—H···A
C20—H20···O10.982.463.284 (3)142
C4—H4···O4i0.932.593.481 (8)160
C16—H16···Cl1ii0.932.793.459 (2)130
C9—H9···Cg1iii0.932.883.607 (3)136
Symmetry codes: (i) x, y1, z; (ii) x1, y1, z1; (iii) x, y+1, z.
6'-(4-Methoxyphenyl)-6a'-nitro-6a',6b',7',9',10',12a'-hexahydro-2H,6'H,8'H-spiro[acenaphthylene-1,12'-chromeno[3,4-a]indolizin]-2-one (II) top
Crystal data top
C33H28N2O5F(000) = 2240
Mr = 532.57Dx = 1.317 Mg m3
Monoclinic, P21/nMo Kα radiation, λ = 0.71073 Å
a = 19.8942 (2) ÅCell parameters from 13194 reflections
b = 13.6097 (7) Åθ = 1.8–28.3°
c = 20.7822 (1) ŵ = 0.09 mm1
β = 107.268 (3)°T = 293 K
V = 5373.2 (3) Å3Block, colourless
Z = 80.30 × 0.26 × 0.20 mm
Data collection top
Bruker Kappa APEXII CCD
diffractometer
7862 reflections with I > 2σ(I)
ω and φ scansRint = 0.033
Absorption correction: multi-scan
(SADABS; Bruker, 2008)
θmax = 28.3°, θmin = 1.8°
Tmin = 0.789, Tmax = 0.846h = 2626
50874 measured reflectionsk = 1317
13194 independent reflectionsl = 2722
Refinement top
Refinement on F231 restraints
Least-squares matrix: fullHydrogen site location: inferred from neighbouring sites
R[F2 > 2σ(F2)] = 0.048H-atom parameters constrained
wR(F2) = 0.130 w = 1/[σ2(Fo2) + (0.049P)2 + 1.2075P]
where P = (Fo2 + 2Fc2)/3
S = 1.02(Δ/σ)max = 0.001
13194 reflectionsΔρmax = 0.30 e Å3
795 parametersΔρmin = 0.20 e Å3
Special details top

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.

Fractional atomic coordinates and isotropic or equivalent isotropic displacement parameters (Å2) top
xyzUiso*/UeqOcc. (<1)
C33A0.11183 (18)0.0458 (3)0.94638 (17)0.1429 (14)
H33A0.0910280.1007670.9186730.214*
H33B0.0868290.0335490.9786170.214*
H33C0.1602070.0600570.9696420.214*
C1A0.37825 (8)0.08129 (11)0.65483 (8)0.0434 (4)
C1B0.66638 (8)0.51698 (11)0.87412 (8)0.0426 (4)
C2A0.41462 (8)0.11334 (12)0.60633 (8)0.0453 (4)
C2B0.65231 (8)0.54727 (11)0.93711 (8)0.0422 (4)
C3A0.39800 (10)0.18088 (14)0.55500 (9)0.0600 (5)
H3A0.3562400.2164080.5451170.072*
C3B0.69487 (9)0.56035 (13)1.00181 (8)0.0541 (4)
H3B0.7428030.5468461.0133310.065*
C4A0.44547 (13)0.19487 (17)0.51797 (10)0.0736 (6)
H4A0.4346720.2404010.4830240.088*
C4B0.66398 (10)0.59473 (16)1.05019 (9)0.0650 (5)
H4B0.6923620.6043391.0941710.078*
C5A0.50731 (12)0.14379 (17)0.53144 (10)0.0706 (6)
H5A0.5370900.1547490.5051120.085*
C5B0.59352 (10)0.61455 (15)1.03476 (9)0.0620 (5)
H5B0.5753390.6378061.0682460.074*
C6A0.52695 (9)0.07461 (14)0.58457 (9)0.0535 (4)
C6B0.54800 (9)0.60039 (12)0.96908 (8)0.0477 (4)
C7A0.58937 (10)0.01846 (16)0.60677 (11)0.0653 (5)
H7A0.6236160.0237720.5847100.078*
C7B0.47451 (9)0.61578 (13)0.94512 (10)0.0571 (5)
H7B0.4504230.6376860.9744940.069*
C8A0.59949 (9)0.04308 (15)0.66006 (11)0.0647 (5)
H8A0.6412450.0786070.6739490.078*
C8B0.43870 (9)0.59871 (14)0.87922 (9)0.0578 (5)
H8B0.3904270.6100090.8645800.069*
C9A0.54936 (8)0.05575 (13)0.69556 (9)0.0539 (4)
H9A0.5577950.0989700.7317480.065*
C9B0.47216 (9)0.56451 (13)0.83236 (9)0.0524 (4)
H9B0.4464130.5535790.7876570.063*
C10A0.48837 (8)0.00295 (11)0.67535 (8)0.0421 (4)
C10B0.54287 (8)0.54781 (11)0.85382 (8)0.0419 (4)
C11A0.47845 (8)0.06154 (12)0.62081 (8)0.0429 (4)
C11B0.57983 (8)0.56623 (11)0.92149 (8)0.0406 (3)
C12A0.42520 (7)0.00163 (11)0.70198 (8)0.0392 (3)
C12B0.59354 (8)0.51258 (11)0.81684 (8)0.0398 (3)
C13A0.38740 (8)0.09837 (11)0.70197 (8)0.0412 (3)
H13A0.4243610.1480540.7172930.049*
C13B0.57563 (8)0.40974 (11)0.78342 (8)0.0424 (4)
H13B0.5246550.4089680.7617280.051*
C14A0.33912 (8)0.13395 (12)0.63518 (8)0.0467 (4)
C14B0.59240 (8)0.31992 (12)0.82777 (8)0.0457 (4)
C15A0.36298 (10)0.14494 (15)0.57927 (10)0.0666 (5)
H15A0.4090680.1276700.5824030.080*
C15B0.55970 (10)0.30295 (14)0.87725 (10)0.0594 (5)
H15B0.5297110.3505700.8854270.071*
C16A0.31992 (12)0.18082 (18)0.51933 (11)0.0812 (7)
H16A0.3366010.1861720.4821450.097*
C16B0.57045 (12)0.21752 (15)0.91455 (10)0.0701 (6)
H16B0.5475530.2075810.9470490.084*
C17A0.25206 (11)0.20883 (18)0.51445 (11)0.0788 (6)
H17A0.2228300.2329120.4738960.095*
C17B0.61539 (12)0.14692 (14)0.90334 (10)0.0670 (5)
H17B0.6229040.0891310.9283490.080*
C18A0.22761 (10)0.20122 (16)0.56933 (10)0.0664 (5)
H18A0.1821570.2214500.5664550.080*
C18B0.64890 (11)0.16181 (13)0.85549 (9)0.0597 (5)
H18B0.6799670.1147690.8486030.072*
C19A0.27095 (9)0.16322 (13)0.62912 (9)0.0503 (4)
C19B0.63656 (9)0.24711 (12)0.81718 (8)0.0487 (4)
C20A0.27049 (8)0.07604 (12)0.72646 (8)0.0460 (4)
H20A0.2632580.0168510.6983690.055*
C20B0.67977 (8)0.34979 (11)0.74663 (8)0.0455 (4)
H20B0.7105660.3814350.7870270.055*
C21A0.35131 (8)0.08860 (11)0.75771 (8)0.0428 (4)
C21B0.61020 (8)0.41002 (11)0.72630 (8)0.0436 (4)
C22A0.38451 (8)0.00405 (12)0.79834 (8)0.0476 (4)
H22A0.3507620.0578970.7834130.057*
C22B0.62549 (9)0.51980 (11)0.71546 (8)0.0455 (4)
H22B0.6760450.5302830.7362310.055*
C23A0.40814 (11)0.00510 (16)0.87480 (9)0.0700 (6)
H23A0.3683020.0073010.8915350.084*
H23B0.4429390.0458890.8918700.084*
C23B0.60610 (12)0.56658 (14)0.64586 (9)0.0653 (5)
H23C0.5560700.5589950.6237430.078*
H23D0.6315220.5345710.6184570.078*
C24A0.43983 (13)0.10576 (18)0.89869 (11)0.0858 (7)
H24A0.4581270.1058550.9474600.103*
H24B0.4033090.1554120.8856460.103*
C24B0.62518 (13)0.67563 (15)0.65357 (11)0.0756 (6)
H24C0.6758300.6825270.6717950.091*
H24D0.6106960.7068730.6096490.091*
C25A0.49835 (11)0.13104 (16)0.86895 (10)0.0730 (6)
H25A0.5375400.0864820.8866930.088*
H25B0.5147350.1972990.8820730.088*
C25B0.58989 (11)0.72645 (14)0.69972 (10)0.0636 (5)
H25C0.6050440.7944460.7059380.076*
H25D0.5392440.7255630.6794180.076*
C26A0.47364 (9)0.12383 (13)0.79310 (9)0.0567 (5)
H26A0.5127460.1356990.7752190.068*
H26B0.4377930.1730140.7747230.068*
C26B0.60860 (9)0.67515 (12)0.76724 (9)0.0526 (4)
H26C0.6587650.6807340.7893920.063*
H26D0.5838570.7057500.7957850.063*
C27A0.22640 (9)0.06439 (13)0.77352 (8)0.0487 (4)
C28A0.19594 (10)0.14391 (15)0.79585 (9)0.0613 (5)
H28A0.2026400.2068920.7815130.074*
C29A0.15615 (12)0.13088 (18)0.83872 (11)0.0742 (6)
H29A0.1351110.1849390.8522160.089*
C30A0.14685 (11)0.0391 (2)0.86210 (11)0.0758 (6)
C31A0.17454 (11)0.04134 (18)0.83929 (12)0.0781 (6)
H31A0.1674280.1040560.8537960.094*
C32A0.21313 (10)0.02820 (15)0.79449 (10)0.0642 (5)
H32A0.2306220.0829920.7780220.077*
N1A0.44484 (6)0.02564 (9)0.77373 (6)0.0427 (3)
N1B0.58882 (7)0.57169 (9)0.75699 (6)0.0422 (3)
N2A0.36328 (8)0.18310 (11)0.79905 (8)0.0563 (4)
N2B0.56029 (8)0.35936 (11)0.66512 (8)0.0554 (4)
O1A0.32294 (6)0.11223 (9)0.66020 (6)0.0587 (3)
O1B0.72347 (6)0.50202 (9)0.86615 (6)0.0570 (3)
O2A0.24319 (6)0.15690 (9)0.68239 (6)0.0563 (3)
O2B0.66760 (7)0.25215 (8)0.76614 (6)0.0551 (3)
O3A0.38209 (11)0.25581 (11)0.77596 (9)0.1030 (6)
O3B0.51849 (9)0.30057 (12)0.67531 (7)0.0853 (5)
O4A0.34989 (9)0.18385 (12)0.85182 (8)0.0898 (5)
O4B0.56698 (8)0.37447 (11)0.60975 (7)0.0736 (4)
O5A0.10816 (11)0.03538 (18)0.90686 (10)0.1248 (7)
C27B0.7205 (4)0.3453 (5)0.6970 (3)0.0462 (18)0.739 (5)
C28B0.7051 (4)0.2848 (5)0.6416 (3)0.0641 (18)0.739 (5)
H28B0.6698680.2378600.6357180.077*0.739 (5)
C32B0.77906 (17)0.4073 (3)0.70849 (18)0.0493 (9)0.739 (5)
H32B0.7927270.4450900.7474970.059*0.739 (5)
C31B0.81621 (16)0.4127 (3)0.66306 (17)0.0554 (8)0.739 (5)
H31B0.8557710.4527690.6718790.066*0.739 (5)
C29B0.7415 (2)0.2927 (3)0.5943 (2)0.0547 (10)0.739 (5)
H29B0.7294650.2534080.5559340.066*0.739 (5)
C30B0.79578 (18)0.3597 (3)0.60473 (18)0.0543 (10)0.739 (5)
O5B0.83334 (10)0.3747 (2)0.56040 (11)0.0872 (11)0.739 (5)
C33B0.8100 (5)0.3359 (5)0.49718 (19)0.120 (2)0.739 (5)
H33D0.8420410.3529810.4723710.180*0.739 (5)
H33E0.8073070.2657290.5001470.180*0.739 (5)
H33F0.7641640.3617720.4745120.180*0.739 (5)
C30C0.7756 (7)0.3199 (7)0.5848 (5)0.071 (4)0.261 (5)
C31C0.7930 (8)0.3979 (8)0.6284 (7)0.093 (6)0.261 (5)
H31C0.8250930.4448310.6234080.112*0.261 (5)
C29C0.7286 (6)0.2499 (8)0.5939 (5)0.054 (3)0.261 (5)
H29C0.7186890.1930410.5679700.064*0.261 (5)
C27C0.7154 (9)0.3417 (11)0.6924 (7)0.044 (5)0.261 (5)
C28C0.6974 (7)0.2692 (10)0.6437 (6)0.037 (3)0.261 (5)
H28C0.6599490.2287930.6446410.044*0.261 (5)
C32C0.7625 (6)0.4060 (9)0.6799 (5)0.064 (3)0.261 (5)
H32C0.7751750.4599980.7083560.077*0.261 (5)
C33C0.8139 (10)0.3749 (10)0.4920 (6)0.088 (4)0.261 (5)
H33G0.8289980.3464160.4562790.133*0.261 (5)
H33H0.7727750.4142950.4730550.133*0.261 (5)
H33I0.8508860.4152650.5195690.133*0.261 (5)
O5C0.7985 (8)0.3018 (5)0.5303 (5)0.174 (6)0.261 (5)
Atomic displacement parameters (Å2) top
U11U22U33U12U13U23
C33A0.118 (2)0.221 (4)0.104 (2)0.017 (3)0.055 (2)0.049 (3)
C1A0.0380 (8)0.0415 (9)0.0464 (9)0.0001 (7)0.0060 (7)0.0003 (7)
C1B0.0433 (8)0.0379 (8)0.0448 (9)0.0023 (6)0.0103 (7)0.0032 (7)
C2A0.0458 (9)0.0473 (9)0.0396 (9)0.0007 (7)0.0076 (7)0.0014 (7)
C2B0.0452 (8)0.0399 (8)0.0399 (9)0.0006 (7)0.0101 (7)0.0022 (7)
C3A0.0672 (11)0.0629 (12)0.0453 (10)0.0053 (9)0.0097 (9)0.0095 (9)
C3B0.0495 (9)0.0629 (11)0.0445 (10)0.0003 (8)0.0056 (8)0.0021 (8)
C4A0.0940 (16)0.0789 (14)0.0477 (11)0.0054 (12)0.0207 (11)0.0126 (10)
C4B0.0667 (12)0.0880 (15)0.0366 (10)0.0059 (10)0.0100 (9)0.0078 (9)
C5A0.0842 (15)0.0859 (15)0.0502 (11)0.0204 (12)0.0331 (11)0.0082 (11)
C5B0.0680 (12)0.0772 (13)0.0454 (10)0.0058 (10)0.0238 (9)0.0120 (9)
C6A0.0567 (10)0.0590 (11)0.0486 (10)0.0130 (8)0.0214 (8)0.0180 (9)
C6B0.0540 (9)0.0490 (10)0.0435 (9)0.0033 (7)0.0197 (8)0.0044 (8)
C7A0.0522 (10)0.0785 (14)0.0725 (14)0.0085 (10)0.0299 (10)0.0268 (12)
C7B0.0579 (11)0.0627 (11)0.0583 (12)0.0011 (9)0.0289 (9)0.0082 (9)
C8A0.0433 (9)0.0676 (13)0.0813 (15)0.0093 (9)0.0158 (9)0.0210 (11)
C8B0.0427 (9)0.0698 (12)0.0624 (12)0.0050 (8)0.0178 (8)0.0078 (9)
C9A0.0456 (9)0.0499 (10)0.0610 (11)0.0076 (7)0.0079 (8)0.0058 (8)
C9B0.0454 (9)0.0622 (11)0.0474 (10)0.0025 (8)0.0105 (8)0.0064 (8)
C10A0.0379 (8)0.0406 (8)0.0451 (9)0.0025 (6)0.0079 (7)0.0069 (7)
C10B0.0445 (8)0.0411 (8)0.0400 (9)0.0020 (7)0.0123 (7)0.0040 (7)
C11A0.0425 (8)0.0439 (9)0.0407 (9)0.0041 (7)0.0099 (7)0.0071 (7)
C11B0.0459 (8)0.0380 (8)0.0381 (8)0.0016 (6)0.0128 (7)0.0026 (7)
C12A0.0369 (7)0.0378 (8)0.0405 (9)0.0011 (6)0.0080 (6)0.0001 (7)
C12B0.0399 (8)0.0420 (8)0.0366 (8)0.0022 (6)0.0101 (6)0.0052 (7)
C13A0.0408 (8)0.0392 (8)0.0421 (9)0.0009 (6)0.0099 (7)0.0010 (7)
C13B0.0434 (8)0.0429 (9)0.0397 (9)0.0014 (7)0.0105 (7)0.0081 (7)
C14A0.0482 (9)0.0464 (9)0.0461 (10)0.0052 (7)0.0150 (7)0.0071 (7)
C14B0.0526 (9)0.0417 (9)0.0421 (9)0.0084 (7)0.0132 (7)0.0066 (7)
C15A0.0598 (11)0.0842 (14)0.0623 (12)0.0224 (10)0.0281 (10)0.0286 (11)
C15B0.0708 (12)0.0508 (11)0.0636 (12)0.0091 (9)0.0307 (10)0.0035 (9)
C16A0.0805 (14)0.1118 (18)0.0593 (13)0.0331 (13)0.0329 (11)0.0383 (12)
C16B0.0945 (15)0.0601 (13)0.0634 (13)0.0204 (11)0.0351 (11)0.0010 (10)
C17A0.0696 (13)0.1061 (17)0.0602 (13)0.0260 (12)0.0184 (11)0.0340 (12)
C17B0.0973 (15)0.0454 (11)0.0553 (12)0.0147 (10)0.0180 (11)0.0025 (9)
C18A0.0509 (10)0.0855 (14)0.0622 (12)0.0183 (10)0.0158 (9)0.0207 (11)
C18B0.0807 (13)0.0430 (10)0.0507 (11)0.0003 (9)0.0121 (10)0.0029 (8)
C19A0.0485 (9)0.0563 (10)0.0470 (10)0.0070 (8)0.0155 (8)0.0074 (8)
C19B0.0606 (10)0.0434 (9)0.0395 (9)0.0034 (8)0.0108 (8)0.0058 (7)
C20A0.0470 (9)0.0486 (9)0.0419 (9)0.0051 (7)0.0126 (7)0.0018 (7)
C20B0.0535 (9)0.0400 (9)0.0410 (9)0.0032 (7)0.0107 (7)0.0058 (7)
C21A0.0481 (8)0.0417 (9)0.0372 (8)0.0021 (7)0.0106 (7)0.0046 (7)
C21B0.0495 (9)0.0421 (9)0.0364 (8)0.0019 (7)0.0084 (7)0.0076 (7)
C22A0.0485 (9)0.0474 (9)0.0461 (10)0.0013 (7)0.0129 (7)0.0044 (7)
C22B0.0518 (9)0.0439 (9)0.0413 (9)0.0053 (7)0.0145 (7)0.0019 (7)
C23A0.0767 (13)0.0877 (15)0.0461 (11)0.0142 (11)0.0187 (10)0.0157 (10)
C23B0.0923 (14)0.0616 (12)0.0473 (11)0.0162 (10)0.0290 (10)0.0067 (9)
C24A0.0932 (16)0.1017 (18)0.0651 (14)0.0218 (13)0.0273 (12)0.0403 (13)
C24B0.1044 (17)0.0631 (13)0.0685 (14)0.0133 (11)0.0398 (13)0.0208 (11)
C25A0.0659 (12)0.0767 (14)0.0724 (14)0.0132 (10)0.0141 (10)0.0339 (11)
C25B0.0795 (13)0.0463 (10)0.0662 (13)0.0087 (9)0.0236 (10)0.0090 (9)
C26A0.0525 (10)0.0478 (10)0.0674 (12)0.0068 (8)0.0141 (9)0.0137 (9)
C26B0.0587 (10)0.0411 (9)0.0579 (11)0.0040 (8)0.0172 (8)0.0023 (8)
C27A0.0495 (9)0.0541 (10)0.0441 (9)0.0036 (8)0.0165 (8)0.0023 (8)
C28A0.0729 (12)0.0595 (11)0.0572 (11)0.0113 (9)0.0282 (10)0.0017 (9)
C29A0.0859 (15)0.0831 (16)0.0632 (13)0.0219 (12)0.0371 (12)0.0039 (12)
C30A0.0720 (13)0.1079 (19)0.0574 (13)0.0161 (12)0.0344 (11)0.0134 (12)
C31A0.0748 (14)0.0784 (15)0.0916 (17)0.0060 (11)0.0407 (13)0.0218 (13)
C32A0.0627 (11)0.0590 (12)0.0786 (14)0.0051 (9)0.0329 (10)0.0009 (10)
N1A0.0425 (7)0.0423 (7)0.0406 (7)0.0028 (5)0.0081 (6)0.0054 (6)
N1B0.0484 (7)0.0395 (7)0.0384 (7)0.0049 (6)0.0127 (6)0.0026 (6)
N2A0.0664 (9)0.0497 (9)0.0507 (9)0.0029 (7)0.0141 (7)0.0073 (7)
N2B0.0612 (9)0.0555 (9)0.0433 (9)0.0045 (7)0.0061 (7)0.0119 (7)
O1A0.0418 (6)0.0598 (8)0.0754 (9)0.0114 (5)0.0189 (6)0.0147 (6)
O1B0.0413 (6)0.0716 (8)0.0559 (7)0.0046 (6)0.0113 (5)0.0160 (6)
O2A0.0507 (6)0.0699 (8)0.0507 (7)0.0178 (6)0.0187 (6)0.0121 (6)
O2B0.0748 (8)0.0418 (6)0.0523 (7)0.0087 (6)0.0245 (6)0.0013 (5)
O3A0.1712 (18)0.0495 (9)0.1053 (13)0.0144 (10)0.0669 (13)0.0157 (9)
O3B0.1002 (11)0.0800 (10)0.0658 (9)0.0357 (9)0.0096 (8)0.0199 (8)
O4A0.1308 (14)0.0838 (11)0.0629 (10)0.0117 (9)0.0410 (9)0.0272 (8)
O4B0.0853 (10)0.0923 (10)0.0396 (7)0.0054 (8)0.0127 (7)0.0163 (7)
O5A0.1276 (15)0.177 (2)0.0977 (14)0.0317 (14)0.0767 (12)0.0416 (14)
C27B0.050 (3)0.045 (4)0.041 (3)0.002 (2)0.009 (2)0.002 (2)
C28B0.055 (2)0.065 (3)0.071 (4)0.0138 (19)0.016 (2)0.011 (2)
C32B0.0444 (15)0.0466 (16)0.051 (2)0.0017 (12)0.0045 (15)0.0137 (17)
C31B0.0461 (15)0.0484 (17)0.068 (2)0.0019 (12)0.0111 (15)0.0030 (14)
C29B0.0517 (19)0.065 (3)0.0460 (19)0.003 (2)0.0115 (14)0.016 (2)
C30B0.0475 (16)0.066 (3)0.049 (2)0.0010 (18)0.0131 (16)0.0008 (18)
O5B0.0664 (13)0.135 (3)0.0689 (15)0.0143 (12)0.0334 (11)0.0017 (14)
C33B0.179 (5)0.131 (5)0.081 (3)0.036 (5)0.085 (4)0.016 (3)
C30C0.098 (11)0.052 (7)0.084 (8)0.002 (6)0.061 (8)0.008 (5)
C31C0.130 (13)0.062 (8)0.121 (13)0.029 (7)0.089 (11)0.021 (7)
C29C0.074 (7)0.050 (6)0.040 (5)0.013 (5)0.022 (4)0.005 (5)
C27C0.044 (9)0.030 (9)0.061 (11)0.006 (6)0.020 (8)0.015 (7)
C28C0.041 (6)0.054 (6)0.020 (5)0.015 (4)0.014 (4)0.015 (4)
C32C0.074 (7)0.052 (5)0.066 (7)0.009 (5)0.021 (6)0.030 (6)
C33C0.091 (8)0.119 (11)0.057 (7)0.012 (7)0.023 (6)0.006 (6)
O5C0.365 (17)0.056 (5)0.200 (10)0.013 (7)0.238 (12)0.003 (6)
Geometric parameters (Å, º) top
C33A—O5A1.365 (4)C20B—C27B1.491 (4)
C33A—H33A0.9600C20B—C27C1.5031 (10)
C33A—H33B0.9600C20B—C21B1.555 (2)
C33A—H33C0.9600C20B—H20B0.9800
C1A—O1A1.2139 (18)C21A—N2A1.526 (2)
C1A—C2A1.471 (2)C21A—C22A1.552 (2)
C1A—C12A1.570 (2)C21B—N2B1.526 (2)
C1B—O1B1.2126 (18)C21B—C22B1.554 (2)
C1B—C2B1.476 (2)C22A—N1A1.467 (2)
C1B—C12B1.580 (2)C22A—C23A1.518 (2)
C2A—C3A1.372 (2)C22A—H22A0.9800
C2A—C11A1.405 (2)C22B—N1B1.4663 (19)
C2B—C3B1.371 (2)C22B—C23B1.521 (2)
C2B—C11B1.405 (2)C22B—H22B0.9800
C3A—C4A1.397 (3)C23A—C24A1.528 (3)
C3A—H3A0.9300C23A—H23A0.9700
C3B—C4B1.405 (2)C23A—H23B0.9700
C3B—H3B0.9300C23B—C24B1.529 (3)
C4A—C5A1.368 (3)C23B—H23C0.9700
C4A—H4A0.9300C23B—H23D0.9700
C4B—C5B1.369 (3)C24A—C25A1.511 (3)
C4B—H4B0.9300C24A—H24A0.9700
C5A—C6A1.415 (3)C24A—H24B0.9700
C5A—H5A0.9300C24B—C25B1.514 (3)
C5B—C6B1.409 (2)C24B—H24C0.9700
C5B—H5B0.9300C24B—H24D0.9700
C6A—C11A1.400 (2)C25A—C26A1.509 (3)
C6A—C7A1.414 (3)C25A—H25A0.9700
C6B—C11B1.403 (2)C25A—H25B0.9700
C6B—C7B1.413 (2)C25B—C26B1.512 (2)
C7A—C8A1.355 (3)C25B—H25C0.9700
C7A—H7A0.9300C25B—H25D0.9700
C7B—C8B1.363 (3)C26A—N1A1.463 (2)
C7B—H7B0.9300C26A—H26A0.9700
C8A—C9A1.416 (3)C26A—H26B0.9700
C8A—H8A0.9300C26B—N1B1.461 (2)
C8B—C9B1.412 (2)C26B—H26C0.9700
C8B—H8B0.9300C26B—H26D0.9700
C9A—C10A1.365 (2)C27A—C32A1.384 (3)
C9A—H9A0.9300C27A—C28A1.386 (2)
C9B—C10B1.363 (2)C28A—C29A1.368 (3)
C9B—H9B0.9300C28A—H28A0.9300
C10A—C11A1.400 (2)C29A—C30A1.372 (3)
C10A—C12A1.517 (2)C29A—H29A0.9300
C10B—C11B1.403 (2)C30A—C31A1.372 (3)
C10B—C12B1.515 (2)C30A—O5A1.373 (2)
C12A—N1A1.4617 (19)C31A—C32A1.383 (3)
C12A—C13A1.555 (2)C31A—H31A0.9300
C12B—N1B1.461 (2)C32A—H32A0.9300
C12B—C13B1.556 (2)N2A—O4A1.2028 (19)
C13A—C14A1.514 (2)N2A—O3A1.207 (2)
C13A—C21A1.539 (2)N2B—O4B1.2146 (19)
C13A—H13A0.9800N2B—O3B1.217 (2)
C13B—C14B1.507 (2)C27B—C28B1.374 (4)
C13B—C21B1.538 (2)C27B—C32B1.399 (5)
C13B—H13B0.9800C28B—C29B1.387 (5)
C14A—C19A1.383 (2)C28B—H28B0.9300
C14A—C15A1.387 (2)C32B—C31B1.363 (5)
C14B—C19B1.385 (2)C32B—H32B0.9300
C14B—C15B1.390 (2)C31B—C30B1.364 (5)
C15A—C16A1.375 (3)C31B—H31B0.9300
C15A—H15A0.9300C29B—C30B1.380 (5)
C15B—C16B1.378 (3)C29B—H29B0.9300
C15B—H15B0.9300C30B—O5B1.363 (4)
C16A—C17A1.377 (3)O5B—C33B1.3632 (10)
C16A—H16A0.9300C33B—H33D0.9600
C16B—C17B1.378 (3)C33B—H33E0.9600
C16B—H16B0.9300C33B—H33F0.9600
C17A—C18A1.370 (3)C30C—O5C1.3620 (10)
C17A—H17A0.9300C30C—C31C1.3718 (10)
C17B—C18B1.367 (3)C30C—C29C1.3868 (10)
C17B—H17B0.9300C31C—C32C1.3820 (10)
C18A—C19A1.385 (2)C31C—H31C0.9300
C18A—H18A0.9300C29C—C28C1.3819 (10)
C18B—C19B1.388 (2)C29C—H29C0.9300
C18B—H18B0.9300C27C—C32C1.3631 (10)
C19A—O2A1.3789 (19)C27C—C28C1.3814 (6)
C19B—O2B1.378 (2)C28C—H28C0.9300
C20A—O2A1.4316 (19)C32C—H32C0.9300
C20A—C27A1.504 (2)C33C—O5C1.3660 (7)
C20A—C21A1.555 (2)C33C—H33G0.9600
C20A—H20A0.9800C33C—H33H0.9600
C20B—O2B1.4308 (19)C33C—H33I0.9600
O5A—C33A—H33A109.5C22A—C21A—C20A111.00 (13)
O5A—C33A—H33B109.5N2B—C21B—C13B108.21 (13)
H33A—C33A—H33B109.5N2B—C21B—C22B114.86 (13)
O5A—C33A—H33C109.5C13B—C21B—C22B105.42 (12)
H33A—C33A—H33C109.5N2B—C21B—C20B107.13 (12)
H33B—C33A—H33C109.5C13B—C21B—C20B110.77 (13)
O1A—C1A—C2A127.15 (15)C22B—C21B—C20B110.44 (13)
O1A—C1A—C12A124.73 (14)N1A—C22A—C23A109.40 (14)
C2A—C1A—C12A108.06 (12)N1A—C22A—C21A103.48 (12)
O1B—C1B—C2B126.86 (14)C23A—C22A—C21A121.79 (15)
O1B—C1B—C12B125.27 (14)N1A—C22A—H22A107.1
C2B—C1B—C12B107.81 (12)C23A—C22A—H22A107.1
C3A—C2A—C11A119.79 (16)C21A—C22A—H22A107.1
C3A—C2A—C1A132.64 (16)N1B—C22B—C23B109.15 (13)
C11A—C2A—C1A107.55 (13)N1B—C22B—C21B102.97 (12)
C3B—C2B—C11B119.70 (15)C23B—C22B—C21B122.32 (14)
C3B—C2B—C1B132.94 (15)N1B—C22B—H22B107.2
C11B—C2B—C1B107.35 (13)C23B—C22B—H22B107.2
C2A—C3A—C4A118.24 (18)C21B—C22B—H22B107.2
C2A—C3A—H3A120.9C22A—C23A—C24A108.55 (17)
C4A—C3A—H3A120.9C22A—C23A—H23A110.0
C2B—C3B—C4B118.10 (16)C24A—C23A—H23A110.0
C2B—C3B—H3B121.0C22A—C23A—H23B110.0
C4B—C3B—H3B121.0C24A—C23A—H23B110.0
C5A—C4A—C3A122.14 (19)H23A—C23A—H23B108.4
C5A—C4A—H4A118.9C22B—C23B—C24B108.76 (16)
C3A—C4A—H4A118.9C22B—C23B—H23C109.9
C5B—C4B—C3B122.20 (17)C24B—C23B—H23C109.9
C5B—C4B—H4B118.9C22B—C23B—H23D109.9
C3B—C4B—H4B118.9C24B—C23B—H23D109.9
C4A—C5A—C6A121.40 (18)H23C—C23B—H23D108.3
C4A—C5A—H5A119.3C25A—C24A—C23A111.41 (17)
C6A—C5A—H5A119.3C25A—C24A—H24A109.3
C4B—C5B—C6B121.26 (17)C23A—C24A—H24A109.3
C4B—C5B—H5B119.4C25A—C24A—H24B109.3
C6B—C5B—H5B119.4C23A—C24A—H24B109.3
C11A—C6A—C7A115.75 (17)H24A—C24A—H24B108.0
C11A—C6A—C5A115.45 (17)C25B—C24B—C23B111.26 (17)
C7A—C6A—C5A128.79 (18)C25B—C24B—H24C109.4
C11B—C6B—C5B115.69 (15)C23B—C24B—H24C109.4
C11B—C6B—C7B115.91 (15)C25B—C24B—H24D109.4
C5B—C6B—C7B128.40 (16)C23B—C24B—H24D109.4
C8A—C7A—C6A120.24 (17)H24C—C24B—H24D108.0
C8A—C7A—H7A119.9C26A—C25A—C24A111.15 (17)
C6A—C7A—H7A119.9C26A—C25A—H25A109.4
C8B—C7B—C6B120.42 (16)C24A—C25A—H25A109.4
C8B—C7B—H7B119.8C26A—C25A—H25B109.4
C6B—C7B—H7B119.8C24A—C25A—H25B109.4
C7A—C8A—C9A122.98 (17)H25A—C25A—H25B108.0
C7A—C8A—H8A118.5C26B—C25B—C24B110.15 (15)
C9A—C8A—H8A118.5C26B—C25B—H25C109.6
C7B—C8B—C9B122.44 (16)C24B—C25B—H25C109.6
C7B—C8B—H8B118.8C26B—C25B—H25D109.6
C9B—C8B—H8B118.8C24B—C25B—H25D109.6
C10A—C9A—C8A118.35 (17)H25C—C25B—H25D108.1
C10A—C9A—H9A120.8N1A—C26A—C25A109.06 (16)
C8A—C9A—H9A120.8N1A—C26A—H26A109.9
C10B—C9B—C8B118.79 (16)C25A—C26A—H26A109.9
C10B—C9B—H9B120.6N1A—C26A—H26B109.9
C8B—C9B—H9B120.6C25A—C26A—H26B109.9
C9A—C10A—C11A118.54 (15)H26A—C26A—H26B108.3
C9A—C10A—C12A131.79 (15)N1B—C26B—C25B109.17 (14)
C11A—C10A—C12A109.66 (13)N1B—C26B—H26C109.8
C9B—C10B—C11B118.77 (14)C25B—C26B—H26C109.8
C9B—C10B—C12B131.63 (14)N1B—C26B—H26D109.8
C11B—C10B—C12B109.59 (13)C25B—C26B—H26D109.8
C10A—C11A—C6A124.12 (15)H26C—C26B—H26D108.3
C10A—C11A—C2A112.91 (14)C32A—C27A—C28A117.54 (16)
C6A—C11A—C2A122.97 (16)C32A—C27A—C20A120.22 (15)
C6B—C11B—C10B123.66 (14)C28A—C27A—C20A122.21 (16)
C6B—C11B—C2B123.04 (14)C29A—C28A—C27A120.80 (19)
C10B—C11B—C2B113.30 (13)C29A—C28A—H28A119.6
N1A—C12A—C10A112.44 (12)C27A—C28A—H28A119.6
N1A—C12A—C13A100.29 (11)C28A—C29A—C30A120.90 (19)
C10A—C12A—C13A114.64 (12)C28A—C29A—H29A119.5
N1A—C12A—C1A114.32 (12)C30A—C29A—H29A119.5
C10A—C12A—C1A101.79 (12)C31A—C30A—C29A119.59 (19)
C13A—C12A—C1A113.97 (12)C31A—C30A—O5A124.6 (2)
N1B—C12B—C10B111.91 (12)C29A—C30A—O5A115.8 (2)
N1B—C12B—C13B99.61 (11)C30A—C31A—C32A119.3 (2)
C10B—C12B—C13B114.35 (12)C30A—C31A—H31A120.3
N1B—C12B—C1B115.69 (12)C32A—C31A—H31A120.3
C10B—C12B—C1B101.85 (12)C31A—C32A—C27A121.70 (19)
C13B—C12B—C1B114.06 (12)C31A—C32A—H32A119.2
C14A—C13A—C21A114.02 (12)C27A—C32A—H32A119.2
C14A—C13A—C12A117.08 (13)C12A—N1A—C26A116.69 (13)
C21A—C13A—C12A104.95 (12)C12A—N1A—C22A108.19 (11)
C14A—C13A—H13A106.7C26A—N1A—C22A112.40 (13)
C21A—C13A—H13A106.7C26B—N1B—C12B117.40 (12)
C12A—C13A—H13A106.7C26B—N1B—C22B112.99 (13)
C14B—C13B—C21B113.91 (13)C12B—N1B—C22B108.58 (12)
C14B—C13B—C12B118.47 (13)O4A—N2A—O3A122.30 (16)
C21B—C13B—C12B104.28 (12)O4A—N2A—C21A118.74 (16)
C14B—C13B—H13B106.5O3A—N2A—C21A118.83 (15)
C21B—C13B—H13B106.5O4B—N2B—O3B123.28 (16)
C12B—C13B—H13B106.5O4B—N2B—C21B119.06 (16)
C19A—C14A—C15A117.55 (15)O3B—N2B—C21B117.48 (15)
C19A—C14A—C13A120.92 (14)C19A—O2A—C20A113.28 (12)
C15A—C14A—C13A121.38 (15)C19B—O2B—C20B114.61 (12)
C19B—C14B—C15B117.21 (16)C33A—O5A—C30A119.8 (2)
C19B—C14B—C13B121.26 (14)C28B—C27B—C32B118.1 (4)
C15B—C14B—C13B121.32 (15)C28B—C27B—C20B124.9 (4)
C16A—C15A—C14A121.41 (17)C32B—C27B—C20B116.9 (4)
C16A—C15A—H15A119.3C27B—C28B—C29B120.9 (5)
C14A—C15A—H15A119.3C27B—C28B—H28B119.5
C16B—C15B—C14B121.84 (18)C29B—C28B—H28B119.5
C16B—C15B—H15B119.1C31B—C32B—C27B120.6 (3)
C14B—C15B—H15B119.1C31B—C32B—H32B119.7
C15A—C16A—C17A119.90 (19)C27B—C32B—H32B119.7
C15A—C16A—H16A120.1C32B—C31B—C30B120.5 (3)
C17A—C16A—H16A120.1C32B—C31B—H31B119.8
C17B—C16B—C15B119.55 (19)C30B—C31B—H31B119.8
C17B—C16B—H16B120.2C30B—C29B—C28B119.2 (4)
C15B—C16B—H16B120.2C30B—C29B—H29B120.4
C18A—C17A—C16A120.01 (18)C28B—C29B—H29B120.4
C18A—C17A—H17A120.0O5B—C30B—C31B116.3 (3)
C16A—C17A—H17A120.0O5B—C30B—C29B123.5 (3)
C18B—C17B—C16B120.03 (18)C31B—C30B—C29B120.1 (3)
C18B—C17B—H17B120.0C30B—O5B—C33B119.7 (4)
C16B—C17B—H17B120.0O5B—C33B—H33D109.5
C17A—C18A—C19A119.64 (17)O5B—C33B—H33E109.5
C17A—C18A—H18A120.2H33D—C33B—H33E109.5
C19A—C18A—H18A120.2O5B—C33B—H33F109.5
C17B—C18B—C19B120.01 (18)H33D—C33B—H33F109.5
C17B—C18B—H18B120.0H33E—C33B—H33F109.5
C19B—C18B—H18B120.0O5C—C30C—C31C127.4 (8)
O2A—C19A—C14A121.64 (14)O5C—C30C—C29C113.2 (8)
O2A—C19A—C18A116.90 (15)C31C—C30C—C29C119.3 (7)
C14A—C19A—C18A121.46 (16)C30C—C31C—C32C119.3 (9)
O2B—C19B—C14B122.48 (15)C30C—C31C—H31C120.3
O2B—C19B—C18B116.09 (15)C32C—C31C—H31C120.3
C14B—C19B—C18B121.33 (17)C28C—C29C—C30C116.3 (10)
O2A—C20A—C27A108.26 (12)C28C—C29C—H29C121.9
O2A—C20A—C21A109.37 (13)C30C—C29C—H29C121.9
C27A—C20A—C21A118.07 (13)C32C—C27C—C28C111.3 (7)
O2A—C20A—H20A106.9C32C—C27C—C20B126.9 (7)
C27A—C20A—H20A106.9C28C—C27C—C20B121.6 (6)
C21A—C20A—H20A106.9C27C—C28C—C29C127.4 (10)
O2B—C20B—C27B109.3 (3)C27C—C28C—H28C116.3
O2B—C20B—C27C107.6 (6)C29C—C28C—H28C116.3
O2B—C20B—C21B110.78 (13)C27C—C32C—C31C125.5 (8)
C27B—C20B—C21B117.2 (4)C27C—C32C—H32C117.2
C27C—C20B—C21B114.5 (8)C31C—C32C—H32C117.2
O2B—C20B—H20B106.3O5C—C33C—H33G109.5
C27B—C20B—H20B106.3O5C—C33C—H33H109.5
C21B—C20B—H20B106.3H33G—C33C—H33H109.5
N2A—C21A—C13A108.75 (13)O5C—C33C—H33I109.5
N2A—C21A—C22A114.12 (13)H33G—C33C—H33I109.5
C13A—C21A—C22A105.15 (12)H33H—C33C—H33I109.5
N2A—C21A—C20A107.29 (12)C30C—O5C—C33C122.8 (10)
C13A—C21A—C20A110.53 (12)
O1A—C1A—C2A—C3A1.8 (3)O2A—C20A—C21A—C22A172.51 (12)
C12A—C1A—C2A—C3A179.36 (18)C27A—C20A—C21A—C22A63.16 (18)
O1A—C1A—C2A—C11A176.79 (16)C14B—C13B—C21B—N2B89.18 (15)
C12A—C1A—C2A—C11A0.74 (17)C12B—C13B—C21B—N2B140.22 (12)
O1B—C1B—C2B—C3B4.9 (3)C14B—C13B—C21B—C22B147.46 (13)
C12B—C1B—C2B—C3B178.04 (17)C12B—C13B—C21B—C22B16.86 (15)
O1B—C1B—C2B—C11B173.74 (16)C14B—C13B—C21B—C20B27.98 (17)
C12B—C1B—C2B—C11B3.31 (17)C12B—C13B—C21B—C20B102.62 (14)
C11A—C2A—C3A—C4A0.8 (3)O2B—C20B—C21B—N2B62.61 (16)
C1A—C2A—C3A—C4A179.30 (18)C27B—C20B—C21B—N2B63.7 (3)
C11B—C2B—C3B—C4B1.4 (3)C27C—C20B—C21B—N2B59.2 (5)
C1B—C2B—C3B—C4B177.13 (17)O2B—C20B—C21B—C13B55.21 (16)
C2A—C3A—C4A—C5A0.1 (3)C27B—C20B—C21B—C13B178.5 (3)
C2B—C3B—C4B—C5B0.5 (3)C27C—C20B—C21B—C13B177.0 (5)
C3A—C4A—C5A—C6A0.9 (3)O2B—C20B—C21B—C22B171.62 (12)
C3B—C4B—C5B—C6B0.6 (3)C27B—C20B—C21B—C22B62.0 (3)
C4A—C5A—C6A—C11A1.1 (3)C27C—C20B—C21B—C22B66.6 (5)
C4A—C5A—C6A—C7A177.58 (19)N2A—C21A—C22A—N1A107.23 (15)
C4B—C5B—C6B—C11B0.7 (3)C13A—C21A—C22A—N1A11.86 (15)
C4B—C5B—C6B—C7B179.02 (19)C20A—C21A—C22A—N1A131.41 (13)
C11A—C6A—C7A—C8A0.1 (3)N2A—C21A—C22A—C23A16.2 (2)
C5A—C6A—C7A—C8A178.53 (19)C13A—C21A—C22A—C23A135.25 (16)
C11B—C6B—C7B—C8B0.7 (3)C20A—C21A—C22A—C23A105.20 (18)
C5B—C6B—C7B—C8B179.56 (19)N2B—C21B—C22B—N1B109.79 (14)
C6A—C7A—C8A—C9A0.7 (3)C13B—C21B—C22B—N1B9.23 (15)
C6B—C7B—C8B—C9B0.6 (3)C20B—C21B—C22B—N1B128.93 (13)
C7A—C8A—C9A—C10A0.5 (3)N2B—C21B—C22B—C23B13.2 (2)
C7B—C8B—C9B—C10B0.1 (3)C13B—C21B—C22B—C23B132.19 (16)
C8A—C9A—C10A—C11A0.4 (2)C20B—C21B—C22B—C23B108.11 (17)
C8A—C9A—C10A—C12A179.46 (16)N1A—C22A—C23A—C24A58.0 (2)
C8B—C9B—C10B—C11B0.7 (2)C21A—C22A—C23A—C24A178.64 (16)
C8B—C9B—C10B—C12B179.43 (16)N1B—C22B—C23B—C24B57.3 (2)
C9A—C10A—C11A—C6A1.0 (2)C21B—C22B—C23B—C24B177.36 (16)
C12A—C10A—C11A—C6A179.73 (14)C22A—C23A—C24A—C25A55.1 (3)
C9A—C10A—C11A—C2A178.31 (14)C22B—C23B—C24B—C25B56.0 (2)
C12A—C10A—C11A—C2A0.98 (18)C23A—C24A—C25A—C26A54.5 (3)
C7A—C6A—C11A—C10A0.7 (2)C23B—C24B—C25B—C26B55.9 (2)
C5A—C6A—C11A—C10A179.58 (16)C24A—C25A—C26A—N1A55.5 (2)
C7A—C6A—C11A—C2A178.49 (15)C24B—C25B—C26B—N1B56.4 (2)
C5A—C6A—C11A—C2A0.3 (2)O2A—C20A—C27A—C32A144.97 (16)
C3A—C2A—C11A—C10A178.71 (15)C21A—C20A—C27A—C32A90.2 (2)
C1A—C2A—C11A—C10A0.12 (18)O2A—C20A—C27A—C28A33.0 (2)
C3A—C2A—C11A—C6A0.6 (2)C21A—C20A—C27A—C28A91.9 (2)
C1A—C2A—C11A—C6A179.43 (14)C32A—C27A—C28A—C29A2.0 (3)
C5B—C6B—C11B—C10B179.90 (16)C20A—C27A—C28A—C29A179.94 (17)
C7B—C6B—C11B—C10B0.1 (2)C27A—C28A—C29A—C30A1.7 (3)
C5B—C6B—C11B—C2B0.3 (2)C28A—C29A—C30A—C31A3.7 (3)
C7B—C6B—C11B—C2B179.99 (15)C28A—C29A—C30A—O5A177.6 (2)
C9B—C10B—C11B—C6B0.6 (2)C29A—C30A—C31A—C32A1.8 (3)
C12B—C10B—C11B—C6B179.57 (14)O5A—C30A—C31A—C32A179.5 (2)
C9B—C10B—C11B—C2B179.31 (15)C30A—C31A—C32A—C27A2.0 (3)
C12B—C10B—C11B—C2B0.28 (19)C28A—C27A—C32A—C31A3.8 (3)
C3B—C2B—C11B—C6B1.3 (2)C20A—C27A—C32A—C31A178.07 (17)
C1B—C2B—C11B—C6B177.54 (14)C10A—C12A—N1A—C26A66.24 (17)
C3B—C2B—C11B—C10B178.82 (15)C13A—C12A—N1A—C26A171.53 (13)
C1B—C2B—C11B—C10B2.32 (18)C1A—C12A—N1A—C26A49.18 (17)
C9A—C10A—C12A—N1A55.1 (2)C10A—C12A—N1A—C22A165.86 (12)
C11A—C10A—C12A—N1A124.09 (13)C13A—C12A—N1A—C22A43.63 (14)
C9A—C10A—C12A—C13A58.6 (2)C1A—C12A—N1A—C22A78.72 (15)
C11A—C10A—C12A—C13A122.21 (14)C25A—C26A—N1A—C12A173.59 (14)
C9A—C10A—C12A—C1A177.84 (16)C25A—C26A—N1A—C22A60.58 (18)
C11A—C10A—C12A—C1A1.32 (15)C23A—C22A—N1A—C12A166.81 (14)
O1A—C1A—C12A—N1A54.9 (2)C21A—C22A—N1A—C12A35.61 (15)
C2A—C1A—C12A—N1A122.71 (13)C23A—C22A—N1A—C26A62.87 (18)
O1A—C1A—C12A—C10A176.38 (15)C21A—C22A—N1A—C26A165.92 (13)
C2A—C1A—C12A—C10A1.23 (15)C25B—C26B—N1B—C12B171.60 (13)
O1A—C1A—C12A—C13A59.6 (2)C25B—C26B—N1B—C22B60.83 (18)
C2A—C1A—C12A—C13A122.74 (14)C10B—C12B—N1B—C26B64.10 (17)
C9B—C10B—C12B—N1B53.0 (2)C13B—C12B—N1B—C26B174.65 (13)
C11B—C10B—C12B—N1B125.88 (14)C1B—C12B—N1B—C26B51.95 (18)
C9B—C10B—C12B—C13B59.3 (2)C10B—C12B—N1B—C22B166.23 (12)
C11B—C10B—C12B—C13B121.81 (14)C13B—C12B—N1B—C22B44.98 (14)
C9B—C10B—C12B—C1B177.15 (17)C1B—C12B—N1B—C22B77.72 (15)
C11B—C10B—C12B—C1B1.70 (16)C23B—C22B—N1B—C26B61.76 (18)
O1B—C1B—C12B—N1B52.5 (2)C21B—C22B—N1B—C26B166.88 (12)
C2B—C1B—C12B—N1B124.62 (14)C23B—C22B—N1B—C12B166.17 (14)
O1B—C1B—C12B—C10B174.09 (15)C21B—C22B—N1B—C12B34.81 (15)
C2B—C1B—C12B—C10B3.02 (15)C13A—C21A—N2A—O4A167.26 (15)
O1B—C1B—C12B—C13B62.2 (2)C22A—C21A—N2A—O4A50.2 (2)
C2B—C1B—C12B—C13B120.69 (14)C20A—C21A—N2A—O4A73.17 (19)
N1A—C12A—C13A—C14A161.37 (13)C13A—C21A—N2A—O3A16.8 (2)
C10A—C12A—C13A—C14A77.97 (17)C22A—C21A—N2A—O3A133.81 (18)
C1A—C12A—C13A—C14A38.77 (18)C20A—C21A—N2A—O3A102.80 (19)
N1A—C12A—C13A—C21A33.80 (14)C13B—C21B—N2B—O4B159.85 (14)
C10A—C12A—C13A—C21A154.46 (12)C22B—C21B—N2B—O4B42.4 (2)
C1A—C12A—C13A—C21A88.79 (15)C20B—C21B—N2B—O4B80.67 (18)
N1B—C12B—C13B—C14B164.26 (13)C13B—C21B—N2B—O3B24.8 (2)
C10B—C12B—C13B—C14B76.27 (17)C22B—C21B—N2B—O3B142.24 (16)
C1B—C12B—C13B—C14B40.40 (19)C20B—C21B—N2B—O3B94.69 (17)
N1B—C12B—C13B—C21B36.40 (14)C14A—C19A—O2A—C20A32.1 (2)
C10B—C12B—C13B—C21B155.88 (12)C18A—C19A—O2A—C20A148.56 (17)
C1B—C12B—C13B—C21B87.45 (15)C27A—C20A—O2A—C19A168.62 (13)
C21A—C13A—C14A—C19A5.9 (2)C21A—C20A—O2A—C19A61.49 (17)
C12A—C13A—C14A—C19A128.88 (16)C14B—C19B—O2B—C20B28.4 (2)
C21A—C13A—C14A—C15A178.74 (16)C18B—C19B—O2B—C20B155.07 (15)
C12A—C13A—C14A—C15A55.7 (2)C27B—C20B—O2B—C19B173.7 (3)
C21B—C13B—C14B—C19B1.4 (2)C27C—C20B—O2B—C19B178.5 (8)
C12B—C13B—C14B—C19B121.74 (16)C21B—C20B—O2B—C19B55.76 (17)
C21B—C13B—C14B—C15B173.16 (14)C31A—C30A—O5A—C33A19.1 (4)
C12B—C13B—C14B—C15B63.7 (2)C29A—C30A—O5A—C33A162.2 (3)
C19A—C14A—C15A—C16A1.9 (3)O2B—C20B—C27B—C28B47.4 (9)
C13A—C14A—C15A—C16A177.5 (2)C21B—C20B—C27B—C28B79.6 (8)
C19B—C14B—C15B—C16B0.1 (3)O2B—C20B—C27B—C32B132.0 (5)
C13B—C14B—C15B—C16B174.86 (17)C21B—C20B—C27B—C32B100.9 (6)
C14A—C15A—C16A—C17A1.5 (4)C32B—C27B—C28B—C29B7.3 (12)
C14B—C15B—C16B—C17B0.7 (3)C20B—C27B—C28B—C29B173.3 (6)
C15A—C16A—C17A—C18A0.2 (4)C28B—C27B—C32B—C31B5.1 (10)
C15B—C16B—C17B—C18B0.0 (3)C20B—C27B—C32B—C31B175.4 (4)
C16A—C17A—C18A—C19A1.4 (4)C27B—C32B—C31B—C30B1.8 (6)
C16B—C17B—C18B—C19B1.4 (3)C27B—C28B—C29B—C30B2.7 (10)
C15A—C14A—C19A—O2A178.68 (17)C32B—C31B—C30B—O5B175.8 (3)
C13A—C14A—C19A—O2A3.1 (3)C32B—C31B—C30B—C29B6.5 (6)
C15A—C14A—C19A—C18A0.7 (3)C28B—C29B—C30B—O5B178.2 (5)
C13A—C14A—C19A—C18A176.23 (17)C28B—C29B—C30B—C31B4.3 (7)
C17A—C18A—C19A—O2A179.63 (19)C31B—C30B—O5B—C33B170.4 (5)
C17A—C18A—C19A—C14A1.0 (3)C29B—C30B—O5B—C33B12.0 (7)
C15B—C14B—C19B—O2B174.87 (15)O5C—C30C—C31C—C32C177.6 (13)
C13B—C14B—C19B—O2B0.1 (2)C29C—C30C—C31C—C32C1 (2)
C15B—C14B—C19B—C18B1.5 (2)O5C—C30C—C29C—C28C173.1 (12)
C13B—C14B—C19B—C18B176.29 (15)C31C—C30C—C29C—C28C6 (2)
C17B—C18B—C19B—O2B174.41 (16)O2B—C20B—C27C—C32C148.9 (17)
C17B—C18B—C19B—C14B2.2 (3)C21B—C20B—C27C—C32C88 (2)
C14A—C13A—C21A—N2A94.40 (15)O2B—C20B—C27C—C28C38 (2)
C12A—C13A—C21A—N2A136.20 (12)C21B—C20B—C27C—C28C85.9 (18)
C14A—C13A—C21A—C22A142.99 (13)C32C—C27C—C28C—C29C10 (3)
C12A—C13A—C21A—C22A13.58 (15)C20B—C27C—C28C—C29C175.7 (14)
C14A—C13A—C21A—C20A23.14 (18)C30C—C29C—C28C—C27C11 (2)
C12A—C13A—C21A—C20A106.27 (14)C28C—C27C—C32C—C31C4 (3)
O2A—C20A—C21A—N2A62.20 (16)C20B—C27C—C32C—C31C178.3 (15)
C27A—C20A—C21A—N2A62.13 (18)C30C—C31C—C32C—C27C0 (3)
O2A—C20A—C21A—C13A56.24 (16)C31C—C30C—O5C—C33C32 (3)
C27A—C20A—C21A—C13A179.44 (13)C29C—C30C—O5C—C33C146.5 (16)
Hydrogen-bond geometry (Å, º) top
Cg1, Cg2, Cg3 and Cg4 are the centroids of rings C27A–C32A, C14B–C19B, C27B–C32B and C2B–C6B/C11B, respecively.
D—H···AD—HH···AD···AD—H···A
C20A—H20A···O1A0.982.383.225 (2)144
C20B—H20B···O1B0.982.283.152 (2)147
C4B—H4B···O1Ai0.932.553.315 (2)139
C25A—H25A···O5Bii0.972.533.233 (3)129
C9B—H9B···Cg1iii0.932.873.709 (2)150
C17A—H17A···Cg2iv0.932.773.667 (2)161
C26B—H26C···Cg3v0.972.883.575 (3)129
C33B—H33F···Cg4ii0.962.863.707 (7)148
Symmetry codes: (i) x+1/2, y+1/2, z+1/2; (ii) x+3/2, y1/2, z+3/2; (iii) x+1/2, y+1/2, z+3/2; (iv) x3/2, y1/2, z3/2; (v) x+3/2, y+1/2, z+3/2.
 

Acknowledgements

The authors are thankful to the SAIF, IIT Madras, for the data collection.

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