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Acta Crystallographica Section E: Structure Reports Online logoLink to Acta Crystallographica Section E: Structure Reports Online
. 2011 Aug 11;67(Pt 9):o2280. doi: 10.1107/S1600536811031242

1,2-Bis{[3,5-bis­(2,6-diisopropyl­phen­yl)phen­yl]imino}­acenaphthene toluene monosolvate

Tracy L Lohr a, Warren E Piers a, Masood Parvez a,*
PMCID: PMC3200865  PMID: 22058927

Abstract

In the title compound, C72H80N2·C7H8, the acenaphthene ring system is essentially planar, with a maximum deviation of 0.041 (3) Å. The benzene rings bonded to the the N atoms are essentially parallel, forming a dihedral angle of 0.80 (11)°, and these rings form dihedral angles of 87.49 (9) and 88.25 (10)° with the mean plane of the acenaphthene ring system. The methyl C atoms of three of the isopropyl groups are disordered of two sets of sites of equal occupancy.

Related literature

For background to water splitting, see: Yang & Hall (2010); Kee et al. (2011); Blakemore et al. (2010). For related structures, see: El-Ayaan et al. (2003, 2004); Fedushkin et al. (2004); Coventry et al. (2004); Lohr et al. (2011).graphic file with name e-67-o2280-scheme1.jpg

Experimental

Crystal data

  • C72H80N2·C7H8

  • M r = 1065.51

  • Triclinic, Inline graphic

  • a = 10.4847 (2) Å

  • b = 10.8571 (3) Å

  • c = 14.8431 (3) Å

  • α = 77.447 (1)°

  • β = 82.283 (1)°

  • γ = 85.908 (1)°

  • V = 1632.76 (6) Å3

  • Z = 1

  • Cu Kα radiation

  • μ = 0.46 mm−1

  • T = 100 K

  • 0.20 × 0.20 × 0.20 mm

Data collection

  • Bruker APEXII CCD diffractometer

  • Absorption correction: multi-scan (SADABS; Bruker, 2004) T min = 0.914, T max = 0.914

  • 25750 measured reflections

  • 5747 independent reflections

  • 5578 reflections with I > 2σ(I)

  • R int = 0.036

Refinement

  • R[F 2 > 2σ(F 2)] = 0.059

  • wR(F 2) = 0.163

  • S = 1.05

  • 5747 reflections

  • 763 parameters

  • 15 restraints

  • H-atom parameters constrained

  • Δρmax = 0.47 e Å−3

  • Δρmin = −0.26 e Å−3

Data collection: APEX2 (Bruker, 2004); cell refinement: SAINT (Bruker, 2004); data reduction: SAINT; program(s) used to solve structure: SHELXS97 (Sheldrick, 2008); program(s) used to refine structure: SHELXL97 (Sheldrick, 2008); molecular graphics: ORTEP-3 for Windows (Farrugia, 1997); software used to prepare material for publication: SHELXL97 and PLATON (Spek, 2009).

Supplementary Material

Crystal structure: contains datablock(s) global, I. DOI: 10.1107/S1600536811031242/lh5296sup1.cif

e-67-o2280-sup1.cif (49.4KB, cif)

Structure factors: contains datablock(s) I. DOI: 10.1107/S1600536811031242/lh5296Isup2.hkl

e-67-o2280-Isup2.hkl (275.6KB, hkl)

Supplementary material file. DOI: 10.1107/S1600536811031242/lh5296Isup3.cml

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

Acknowledgments

Funding was provided by the NSERC of Canada in the form of a Doctoral Scholarship for TLL, and by an Alberta Innovates Studentship to TLL.

supplementary crystallographic information

Comment

To meet the ever-growing demand for green and carbon neutral energy, water splitting for the generation of hydrogen fuel represents an appealing strategy. To do their part, chemists have been looking at the steps towards organometallic mono-nuclear water splitting (Yang & Hall, 2010; Kee et al., 2011; Blakemore et al., 2010). Our group is currently exploring the use of platinum to mediate this reaction in an effort to understand the fundamental steps of O—H and O—O bond activation. This research is directed at synthesizing and studying plausible intermediates (Pt–OH and Pt–H species) in order to determine what role they play in the water activation process. The title compound was synthesized as a ligand to stabilize and isolate these highly reactive monomeric species for further mechanistic study.

In the title compound (Fig. 1.), the acenaphthene ring system (C1–C12) is essentially planar with the maximum deviation of C3 being 0.041 (3) Å. The benzene rings (C13–C18) and (C43–C48) bonded to N1 and N2, respectively, lie essentially parallel to each other with a dihedral angle between the two rings of 0.80 (11)°. The benzene rings (C13–C18) and (C43–C48) are oriented at approximately right angles [87.49 (9) and 88.25 (10)°, respectively] with respect to the mean-plane of the acenaphthene ring system. The dihedral angles between the benzene ring bonded to N1 and rings C19–C24 and C31–C36 are: 79.15 (12) and 76.89 (12)°, respectively. The corresponding angles between the benzene ring bonded to N2 and rings C49–C54 and C61–C66 are: 77.48 (12) and 79.83 (13)°, respectively. The molecular dimesions in the title compound agree very well with the corresponding molecular dimensions reported in a few closely related compounds (El-Ayaan et al., 2003, 2004; Fedushkin et al., 2004; Coventry et al., 2004; Lohr et al., 2011).

Experimental

3,5-bis(2,6-Diisopropylphenyl)aniline (1.06 g, 2.56 mmol) and 1,2-acenaphthenequinone (0.186 g, 1.02 mmol) were dissolved in toluene (50 ml). To this orange solution were added 3 drops of formic acid and 4 A° mol. sieves, and the mixture was heated at 363 K for 14 hr. The mixture was cooled, filtered, and concentrated to yield an orange solid. MeOH (50 ml), toluene (2 ml), and 3 drops of formic acid were added, and the solution was stirred for 12 h. This was filtered and washed with cold MeOH (3 x 10 ml), and dried over an aspirator for 3 hr to yield a pale yellow solid (0.484 g, 49%). X-ray quality crystals were obtained by slow evaporation of a solution of the title compound in ethyl acetate:toluene (2:1).

Refinement

although the H-atoms were visible in difference Fourier maps they were included in geometrically idealized positions with C—H distances = 0.95, 0.98 and 1.00 Å for aryl, methine and methyl type H-atoms, respectively. The H-atoms were assigned Uiso = 1.2 times Ueq of the aryl, methine C atoms and 1.5 times Ueq of the methyl C atoms. The methyl C-atoms of three isopropyl groups, C28–C30, C55–C57 and C67–C69 were disordered; EADP commands were used to model these groups with equal site occupancy factors. PLATON (Spek, 2009) suggested a pseudo center of symmetry indicating P -1 as the alternate space group which was not supported by the analysis of the structure. Since the compound contains no heavy atom an absolute configuration could not be determined; the Friedel pairs (2781) were merged.

Figures

Fig. 1.

Fig. 1.

ORTEP drawing (Farrugia, 1997) of the title molecule with the displacement ellipsoids plotted at 30% probability level; H-atoms have been excluded for clarity. The disorder is not shown.

Crystal data

C72H80N2·C7H8 Z = 1
Mr = 1065.51 F(000) = 576
Triclinic, P1 Dx = 1.084 Mg m3
Hall symbol: P 1 Cu Kα radiation, λ = 1.54178 Å
a = 10.4847 (2) Å Cell parameters from 16090 reflections
b = 10.8571 (3) Å θ = 4.0–68.0°
c = 14.8431 (3) Å µ = 0.46 mm1
α = 77.447 (1)° T = 100 K
β = 82.283 (1)° Prism, yellow
γ = 85.908 (1)° 0.20 × 0.20 × 0.20 mm
V = 1632.76 (6) Å3

Data collection

Bruker APEXII CCD diffractometer 5747 independent reflections
Radiation source: fine-focus sealed tube 5578 reflections with I > 2σ(I)
graphite Rint = 0.036
ω and φ scans θmax = 68.0°, θmin = 4.2°
Absorption correction: multi-scan (SADABS; Bruker, 2004) h = −12→12
Tmin = 0.914, Tmax = 0.914 k = −10→12
25750 measured reflections l = −17→17

Refinement

Refinement on F2 Primary atom site location: structure-invariant direct methods
Least-squares matrix: full Secondary atom site location: difference Fourier map
R[F2 > 2σ(F2)] = 0.059 Hydrogen site location: inferred from neighbouring sites
wR(F2) = 0.163 H-atom parameters constrained
S = 1.05 w = 1/[σ2(Fo2) + (0.1012P)2 + 0.8175P] where P = (Fo2 + 2Fc2)/3
5747 reflections (Δ/σ)max = 0.002
763 parameters Δρmax = 0.47 e Å3
15 restraints Δρmin = −0.26 e Å3

Special details

Experimental. 1H NMR (CD2Cl2): δ = 1.09 (d, 24H, CH(CH3)2), 1.15 (d, 24H, CH(CH3)2), 2.99 (m, 8H, CH(CH3)2), 6.85 (d, 4H, Ar–H), 6.87 (d, 2H, Ar–H), 7.17 (d, 2H, Napth–H), 7.19 (d, 8H, Ar–H), 7.31 (t, 4H, Ar–H), 7.46 (t, 2H, Napth–H), 7.99 (d, 2H, Napth–H). 13C NMR (100 Mz, CD2Cl2): δ = 24.5 (CH(CH3)2), 24.6 (CH(CH3)2, 31.11 (CH(CH3)2, 117.33 (Ar–CH), 123.01 (Ar–CH), 124.58 (Ar–CH), 127.01 (Ar–C), 127.62 (Ar–CH), 127.86 (Ar–CH), 128.46 (Ar–CH), 129.45 (Ar–C), 129.70 (Ar–CH), 131.90 (Ar–C), 139.56 (Ar–C), 142.66 (Ar–C), 147.25 (Ar–C), 152.67 (Ar–C), 161.70 (N═C–Ar). ESIMS, Calcd for C72H81N2 ([M + H]+): 973.6394. Found: 973.6398. Anal. Calcd for C72H80N2: C, 88.84; H, 8.28; N, 2.88. Found: C, 81.50; H, 8.20; N, 2.20.
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)
N1 0.5848 (3) 0.5049 (3) 0.41908 (19) 0.0255 (7)
N2 0.3922 (3) 0.4791 (3) 0.5725 (2) 0.0275 (7)
C1 0.5565 (3) 0.3978 (3) 0.4673 (2) 0.0272 (7)
C2 0.4495 (3) 0.3834 (4) 0.5487 (2) 0.0283 (7)
C3 0.4445 (3) 0.2465 (4) 0.5901 (3) 0.0334 (8)
C4 0.3738 (4) 0.1751 (4) 0.6658 (3) 0.0425 (10)
H4 0.3051 0.2123 0.7009 0.051*
C5 0.4068 (5) 0.0450 (5) 0.6895 (4) 0.0562 (13)
H5 0.3602 −0.0039 0.7431 0.067*
C6 0.4998 (5) −0.0144 (5) 0.6411 (4) 0.0613 (14)
H6 0.5160 −0.1029 0.6599 0.074*
C7 0.5742 (5) 0.0557 (5) 0.5613 (4) 0.0509 (11)
C8 0.6780 (5) 0.0089 (5) 0.5030 (4) 0.0571 (12)
H8 0.7017 −0.0787 0.5150 0.069*
C9 0.7429 (5) 0.0881 (5) 0.4308 (4) 0.0568 (13)
H9 0.8115 0.0547 0.3933 0.068*
C10 0.7108 (4) 0.2205 (4) 0.4097 (3) 0.0435 (10)
H10 0.7571 0.2743 0.3585 0.052*
C11 0.6123 (3) 0.2691 (4) 0.4642 (3) 0.0346 (8)
C12 0.5430 (4) 0.1852 (5) 0.5392 (3) 0.0414 (10)
C13 0.6853 (3) 0.5180 (3) 0.3435 (2) 0.0236 (7)
C14 0.8093 (3) 0.5390 (4) 0.3577 (2) 0.0239 (7)
H14 0.8275 0.5414 0.4183 0.029*
C15 0.9078 (3) 0.5568 (3) 0.2829 (2) 0.0221 (7)
C16 0.8778 (3) 0.5534 (3) 0.1944 (2) 0.0221 (7)
H16 0.9439 0.5645 0.1432 0.027*
C17 0.7537 (3) 0.5344 (3) 0.1800 (2) 0.0214 (7)
C18 0.6570 (3) 0.5165 (3) 0.2552 (2) 0.0243 (7)
H18 0.5715 0.5033 0.2459 0.029*
C19 1.0421 (3) 0.5725 (3) 0.2995 (2) 0.0226 (7)
C20 1.1157 (3) 0.4645 (4) 0.3365 (2) 0.0267 (8)
C21 1.2384 (4) 0.4797 (4) 0.3567 (3) 0.0356 (9)
H21 1.2885 0.4076 0.3828 0.043*
C22 1.2887 (4) 0.5975 (5) 0.3395 (3) 0.0423 (10)
H22 1.3724 0.6062 0.3545 0.051*
C23 1.2183 (4) 0.7023 (4) 0.3008 (3) 0.0385 (9)
H23 1.2547 0.7828 0.2880 0.046*
C24 1.0944 (3) 0.6927 (4) 0.2798 (3) 0.0293 (8)
C25 1.0650 (4) 0.3336 (4) 0.3546 (3) 0.0327 (9)
H25 0.9757 0.3429 0.3367 0.039*
C26 1.0559 (5) 0.2666 (5) 0.4560 (3) 0.0505 (12)
H26A 1.1420 0.2557 0.4761 0.076*
H26B 1.0198 0.1836 0.4635 0.076*
H26C 0.9999 0.3171 0.4939 0.076*
C27 1.1450 (6) 0.2530 (5) 0.2934 (4) 0.0580 (14)
H27A 1.2335 0.2418 0.3092 0.087*
H27B 1.1455 0.2953 0.2279 0.087*
H27C 1.1073 0.1703 0.3037 0.087*
C28 1.0181 (4) 0.8102 (4) 0.2379 (3) 0.0415 (11)
H28 0.9297 0.7958 0.2251 0.050* 0.50
C29 1.0262 (10) 0.9142 (8) 0.2935 (6) 0.053 (2) 0.50
H29A 0.9965 0.8817 0.3594 0.080* 0.50
H29B 0.9716 0.9879 0.2694 0.080* 0.50
H29C 1.1156 0.9389 0.2869 0.080* 0.50
C30 1.1009 (11) 0.8927 (10) 0.1580 (6) 0.054 (2) 0.50
H30A 1.1641 0.9340 0.1831 0.081* 0.50
H30B 1.0457 0.9571 0.1228 0.081* 0.50
H30C 1.1459 0.8401 0.1168 0.081* 0.50
H28' 0.9421 0.7644 0.2303 0.050* 0.50
C29' 0.9466 (11) 0.8825 (10) 0.3037 (6) 0.053 (2) 0.50
H29D 1.0075 0.9143 0.3370 0.080* 0.50
H29E 0.8868 0.8274 0.3485 0.080* 0.50
H29F 0.8980 0.9538 0.2693 0.080* 0.50
C30' 1.0538 (14) 0.8613 (12) 0.1362 (4) 0.054 (2) 0.50
H30D 1.0045 0.9407 0.1170 0.081* 0.50
H30E 1.0342 0.7999 0.1009 0.081* 0.50
H30F 1.1461 0.8767 0.1240 0.081* 0.50
C31 0.7236 (3) 0.5294 (3) 0.0850 (2) 0.0230 (7)
C32 0.7585 (3) 0.4198 (4) 0.0505 (2) 0.0266 (8)
C33 0.7305 (4) 0.4178 (4) −0.0387 (3) 0.0335 (9)
H33 0.7554 0.3453 −0.0640 0.040*
C34 0.6676 (4) 0.5186 (4) −0.0903 (3) 0.0376 (10)
H34 0.6482 0.5149 −0.1504 0.045*
C35 0.6326 (4) 0.6252 (4) −0.0548 (3) 0.0329 (9)
H35 0.5886 0.6942 −0.0908 0.040*
C36 0.6603 (3) 0.6336 (4) 0.0322 (2) 0.0261 (8)
C37 0.8243 (4) 0.3047 (4) 0.1075 (3) 0.0314 (8)
H37 0.8256 0.3216 0.1710 0.038*
C38 0.9635 (4) 0.2839 (5) 0.0673 (4) 0.0460 (11)
H38A 1.0029 0.2110 0.1070 0.069*
H38B 1.0113 0.3592 0.0644 0.069*
H38C 0.9659 0.2679 0.0046 0.069*
C39 0.7491 (5) 0.1869 (5) 0.1190 (4) 0.0550 (13)
H39A 0.7430 0.1694 0.0577 0.083*
H39B 0.6623 0.2001 0.1503 0.083*
H39C 0.7934 0.1152 0.1565 0.083*
C40 0.6245 (4) 0.7549 (4) 0.0687 (3) 0.0299 (8)
H40 0.6554 0.7428 0.1311 0.036*
C41 0.6927 (6) 0.8679 (5) 0.0047 (4) 0.0628 (15)
H41A 0.6635 0.8826 −0.0569 0.094*
H41B 0.7861 0.8501 −0.0009 0.094*
H41C 0.6721 0.9433 0.0310 0.094*
C42 0.4819 (4) 0.7822 (6) 0.0812 (4) 0.0566 (14)
H42A 0.4480 0.7883 0.0219 0.085*
H42B 0.4638 0.8622 0.1017 0.085*
H42C 0.4407 0.7139 0.1280 0.085*
C43 0.2950 (3) 0.4617 (3) 0.6495 (2) 0.0246 (7)
C44 0.3244 (3) 0.4675 (4) 0.7373 (2) 0.0243 (7)
H44 0.4094 0.4844 0.7452 0.029*
C45 0.2291 (3) 0.4485 (3) 0.8134 (2) 0.0226 (7)
C46 0.1041 (3) 0.4258 (3) 0.8000 (2) 0.0226 (7)
H46 0.0389 0.4119 0.8517 0.027*
C47 0.0740 (3) 0.4233 (3) 0.7121 (2) 0.0229 (7)
C48 0.1696 (3) 0.4409 (4) 0.6372 (2) 0.0256 (7)
H48 0.1495 0.4388 0.5770 0.031*
C49 0.2591 (3) 0.4535 (3) 0.9084 (2) 0.0217 (7)
C50 0.3208 (3) 0.3485 (4) 0.9611 (2) 0.0274 (8)
C51 0.3461 (4) 0.3562 (4) 1.0502 (3) 0.0325 (9)
H51 0.3890 0.2870 1.0868 0.039*
C52 0.3100 (4) 0.4624 (4) 1.0852 (3) 0.0348 (9)
H52 0.3283 0.4658 1.1456 0.042*
C53 0.2470 (4) 0.5648 (4) 1.0331 (3) 0.0303 (8)
H53 0.2211 0.6372 1.0584 0.036*
C54 0.2217 (3) 0.5617 (4) 0.9440 (2) 0.0252 (7)
C55 0.3569 (3) 0.2292 (4) 0.9257 (3) 0.0336 (9)
H55 0.3339 0.2577 0.8610 0.040* 0.50
C56 0.2621 (14) 0.1261 (14) 0.9622 (12) 0.070 (4) 0.50
H56A 0.2923 0.0513 0.9372 0.105* 0.50
H56B 0.1776 0.1558 0.9428 0.105* 0.50
H56C 0.2550 0.1044 1.0303 0.105* 0.50
C57 0.5003 (8) 0.204 (3) 0.9040 (14) 0.053 (4) 0.50
H57A 0.5437 0.2842 0.8877 0.080* 0.50
H57B 0.5164 0.1610 0.8517 0.080* 0.50
H57C 0.5335 0.1503 0.9587 0.080* 0.50
H55' 0.3361 0.2358 0.8610 0.040* 0.50
C56' 0.2964 (15) 0.1171 (14) 0.9940 (10) 0.070 (4) 0.50
H56D 0.3206 0.0398 0.9708 0.105* 0.50
H56E 0.2025 0.1300 1.0008 0.105* 0.50
H56F 0.3272 0.1094 1.0546 0.105* 0.50
C57' 0.4946 (9) 0.182 (3) 0.9374 (13) 0.053 (4) 0.50
H57D 0.5127 0.1042 0.9141 0.080* 0.50
H57E 0.5064 0.1656 1.0034 0.080* 0.50
H57F 0.5537 0.2466 0.9023 0.080* 0.50
C58 0.1569 (4) 0.6769 (4) 0.8866 (2) 0.0286 (8)
H58 0.1601 0.6625 0.8220 0.034*
C59 0.2272 (5) 0.7967 (4) 0.8805 (4) 0.0462 (11)
H59A 0.1922 0.8654 0.8347 0.069*
H59B 0.3192 0.7822 0.8614 0.069*
H59C 0.2155 0.8197 0.9414 0.069*
C60 0.0160 (4) 0.6931 (5) 0.9242 (3) 0.0442 (11)
H60A −0.0273 0.6144 0.9292 0.066*
H60B −0.0254 0.7616 0.8819 0.066*
H60C 0.0099 0.7137 0.9858 0.066*
C61 −0.0618 (3) 0.4027 (4) 0.6991 (2) 0.0253 (8)
C62 −0.1084 (3) 0.2805 (4) 0.7220 (3) 0.0300 (8)
C63 −0.2357 (4) 0.2660 (4) 0.7109 (3) 0.0426 (10)
H63 −0.2697 0.1843 0.7266 0.051*
C64 −0.3133 (4) 0.3698 (5) 0.6773 (4) 0.0476 (11)
H64 −0.4002 0.3585 0.6703 0.057*
C65 −0.2670 (4) 0.4876 (5) 0.6543 (3) 0.0406 (10)
H65 −0.3220 0.5572 0.6307 0.049*
C66 −0.1400 (4) 0.5088 (4) 0.6646 (2) 0.0288 (8)
C67 −0.0255 (4) 0.1643 (4) 0.7582 (3) 0.0371 (10)
H67 0.0539 0.1943 0.7758 0.045* 0.50
C68 0.017 (2) 0.082 (3) 0.689 (2) 0.088 (6) 0.50
H68A 0.0577 0.1335 0.6310 0.132* 0.50
H68B −0.0579 0.0424 0.6760 0.132* 0.50
H68C 0.0792 0.0160 0.7144 0.132* 0.50
C69 −0.095 (3) 0.086 (3) 0.8456 (7) 0.064 (5) 0.50
H69A −0.1207 0.1388 0.8914 0.096* 0.50
H69B −0.0384 0.0155 0.8716 0.096* 0.50
H69C −0.1726 0.0528 0.8304 0.096* 0.50
H67' 0.0658 0.1899 0.7504 0.045* 0.50
C68' −0.032 (2) 0.066 (3) 0.700 (2) 0.088 (6) 0.50
H68D −0.0124 0.1056 0.6339 0.132* 0.50
H68E −0.1187 0.0337 0.7113 0.132* 0.50
H68F 0.0310 −0.0031 0.7170 0.132* 0.50
C69' −0.062 (3) 0.105 (3) 0.8597 (6) 0.064 (5) 0.50
H69D −0.0043 0.0315 0.8780 0.096* 0.50
H69E −0.1511 0.0785 0.8690 0.096* 0.50
H69F −0.0546 0.1670 0.8977 0.096* 0.50
C70 −0.0927 (4) 0.6419 (4) 0.6433 (3) 0.0331 (9)
H70 −0.0050 0.6365 0.6637 0.040*
C71 −0.1775 (5) 0.7279 (4) 0.6971 (3) 0.0483 (11)
H71A −0.2648 0.7347 0.6792 0.072*
H71B −0.1418 0.8119 0.6829 0.072*
H71C −0.1807 0.6924 0.7640 0.072*
C72 −0.0783 (5) 0.6970 (5) 0.5388 (3) 0.0485 (11)
H72A −0.0156 0.6446 0.5069 0.073*
H72B −0.0483 0.7832 0.5269 0.073*
H72C −0.1618 0.6987 0.5157 0.073*
C73 0.3643 (7) 0.8745 (7) 0.4607 (6) 0.0812 (19)
C74 0.4569 (6) 0.7920 (5) 0.4416 (5) 0.0625 (15)
H74 0.4641 0.7108 0.4810 0.075*
C75 0.5507 (7) 0.8303 (6) 0.3557 (6) 0.0793 (18)
H75 0.6181 0.7729 0.3394 0.095*
C76 0.5388 (7) 0.9438 (6) 0.3032 (5) 0.0791 (19)
H76 0.5972 0.9693 0.2486 0.095*
C77 0.4397 (8) 1.0260 (8) 0.3288 (8) 0.115 (3)
H77 0.4318 1.1085 0.2915 0.139*
C78 0.3510 (7) 0.9902 (7) 0.4084 (7) 0.102 (3)
H78 0.2831 1.0471 0.4247 0.122*
C79 0.2648 (7) 0.8277 (9) 0.5506 (7) 0.103 (3)
H79A 0.1996 0.7782 0.5348 0.154*
H79B 0.2227 0.9010 0.5727 0.154*
H79C 0.3108 0.7751 0.5995 0.154*

Atomic displacement parameters (Å2)

U11 U22 U33 U12 U13 U23
N1 0.0187 (14) 0.0383 (19) 0.0192 (14) −0.0044 (12) 0.0031 (11) −0.0075 (13)
N2 0.0176 (14) 0.043 (2) 0.0189 (14) −0.0021 (13) 0.0023 (11) −0.0039 (13)
C1 0.0200 (15) 0.040 (2) 0.0228 (15) −0.0041 (13) −0.0009 (12) −0.0084 (14)
C2 0.0183 (15) 0.043 (2) 0.0233 (16) −0.0032 (14) −0.0013 (12) −0.0070 (14)
C3 0.0231 (17) 0.044 (2) 0.0333 (19) −0.0047 (15) −0.0003 (14) −0.0091 (16)
C4 0.034 (2) 0.042 (2) 0.047 (2) −0.0067 (17) 0.0013 (17) −0.0034 (18)
C5 0.060 (3) 0.046 (3) 0.053 (3) −0.008 (2) 0.014 (2) 0.001 (2)
C6 0.062 (3) 0.040 (3) 0.074 (3) −0.012 (2) 0.017 (3) −0.006 (2)
C7 0.045 (2) 0.042 (3) 0.062 (3) −0.0057 (19) 0.009 (2) −0.013 (2)
C8 0.053 (3) 0.042 (3) 0.074 (3) 0.003 (2) 0.010 (2) −0.018 (2)
C9 0.047 (3) 0.057 (3) 0.065 (3) 0.001 (2) 0.016 (2) −0.024 (2)
C10 0.036 (2) 0.052 (3) 0.043 (2) −0.0009 (18) 0.0088 (17) −0.0205 (19)
C11 0.0253 (17) 0.047 (2) 0.0324 (19) −0.0056 (15) 0.0029 (14) −0.0137 (16)
C12 0.039 (2) 0.042 (2) 0.044 (2) −0.0069 (18) −0.0040 (18) −0.0081 (19)
C13 0.0157 (15) 0.0288 (19) 0.0226 (17) −0.0012 (13) 0.0031 (13) −0.0009 (14)
C14 0.0205 (16) 0.033 (2) 0.0163 (16) −0.0013 (14) 0.0026 (12) −0.0051 (13)
C15 0.0181 (16) 0.0261 (18) 0.0205 (16) −0.0001 (13) 0.0002 (13) −0.0033 (13)
C16 0.0192 (16) 0.0261 (18) 0.0188 (16) −0.0013 (13) 0.0049 (12) −0.0042 (13)
C17 0.0208 (16) 0.0200 (17) 0.0210 (17) 0.0002 (13) 0.0008 (13) −0.0018 (13)
C18 0.0154 (15) 0.033 (2) 0.0232 (17) −0.0048 (13) 0.0019 (13) −0.0039 (14)
C19 0.0181 (16) 0.033 (2) 0.0151 (15) 0.0002 (13) 0.0020 (12) −0.0040 (13)
C20 0.0229 (17) 0.032 (2) 0.0263 (18) 0.0029 (14) −0.0032 (13) −0.0085 (15)
C21 0.0243 (18) 0.044 (2) 0.039 (2) 0.0062 (16) −0.0108 (15) −0.0060 (17)
C22 0.0173 (17) 0.053 (3) 0.059 (3) −0.0006 (17) −0.0102 (16) −0.013 (2)
C23 0.0224 (18) 0.044 (2) 0.049 (2) −0.0075 (16) −0.0001 (16) −0.0100 (19)
C24 0.0209 (17) 0.032 (2) 0.0319 (19) −0.0047 (15) 0.0016 (14) −0.0027 (16)
C25 0.034 (2) 0.033 (2) 0.0303 (19) 0.0014 (16) −0.0064 (16) −0.0028 (16)
C26 0.068 (3) 0.051 (3) 0.029 (2) −0.013 (2) −0.003 (2) −0.0002 (19)
C27 0.079 (4) 0.040 (3) 0.054 (3) −0.001 (2) 0.004 (3) −0.015 (2)
C28 0.032 (2) 0.032 (2) 0.054 (3) −0.0044 (17) −0.0039 (19) 0.0061 (19)
C29 0.052 (4) 0.063 (5) 0.032 (3) 0.026 (4) 0.008 (4) 0.000 (3)
C30 0.085 (7) 0.046 (5) 0.029 (4) 0.020 (4) −0.010 (4) −0.007 (3)
C28' 0.032 (2) 0.032 (2) 0.054 (3) −0.0044 (17) −0.0039 (19) 0.0061 (19)
C29' 0.052 (4) 0.063 (5) 0.032 (3) 0.026 (4) 0.008 (4) 0.000 (3)
C30' 0.085 (7) 0.046 (5) 0.029 (4) 0.020 (4) −0.010 (4) −0.007 (3)
C31 0.0175 (15) 0.0286 (19) 0.0214 (17) −0.0066 (13) 0.0033 (13) −0.0037 (14)
C32 0.0265 (18) 0.029 (2) 0.0227 (17) −0.0062 (14) 0.0019 (14) −0.0045 (14)
C33 0.040 (2) 0.037 (2) 0.0255 (19) −0.0074 (17) 0.0000 (16) −0.0122 (16)
C34 0.047 (2) 0.048 (3) 0.0196 (18) −0.011 (2) −0.0058 (16) −0.0056 (17)
C35 0.034 (2) 0.036 (2) 0.0266 (19) −0.0047 (16) −0.0059 (15) 0.0013 (16)
C36 0.0236 (17) 0.031 (2) 0.0238 (17) −0.0060 (14) −0.0026 (13) −0.0046 (15)
C37 0.034 (2) 0.031 (2) 0.0289 (19) −0.0010 (16) 0.0007 (16) −0.0069 (16)
C38 0.041 (2) 0.040 (3) 0.050 (3) 0.0070 (19) 0.0012 (19) −0.001 (2)
C39 0.051 (3) 0.035 (3) 0.070 (3) −0.008 (2) −0.009 (2) 0.013 (2)
C40 0.0284 (18) 0.029 (2) 0.033 (2) 0.0037 (15) −0.0070 (15) −0.0061 (16)
C41 0.057 (3) 0.037 (3) 0.086 (4) −0.012 (2) 0.021 (3) −0.012 (2)
C42 0.033 (2) 0.061 (3) 0.084 (4) 0.000 (2) −0.004 (2) −0.036 (3)
C43 0.0208 (17) 0.031 (2) 0.0193 (17) −0.0008 (14) 0.0062 (13) −0.0044 (14)
C44 0.0151 (15) 0.034 (2) 0.0222 (17) −0.0023 (13) 0.0004 (13) −0.0049 (14)
C45 0.0201 (16) 0.0290 (19) 0.0177 (16) −0.0017 (13) −0.0015 (13) −0.0029 (13)
C46 0.0164 (15) 0.0270 (18) 0.0212 (16) −0.0020 (13) 0.0015 (12) 0.0001 (13)
C47 0.0182 (16) 0.0267 (18) 0.0216 (16) −0.0017 (13) 0.0004 (13) −0.0021 (13)
C48 0.0223 (17) 0.034 (2) 0.0190 (16) −0.0012 (14) −0.0025 (13) −0.0032 (14)
C49 0.0166 (15) 0.0297 (19) 0.0167 (16) −0.0064 (13) 0.0003 (12) −0.0003 (13)
C50 0.0231 (17) 0.033 (2) 0.0238 (17) −0.0022 (15) −0.0034 (14) 0.0001 (15)
C51 0.034 (2) 0.038 (2) 0.0246 (19) −0.0042 (17) −0.0101 (15) 0.0010 (16)
C52 0.042 (2) 0.042 (2) 0.0221 (18) −0.0076 (18) −0.0092 (16) −0.0042 (16)
C53 0.035 (2) 0.031 (2) 0.0256 (18) −0.0066 (15) −0.0014 (15) −0.0070 (15)
C54 0.0240 (17) 0.0291 (19) 0.0198 (16) −0.0058 (14) 0.0027 (13) −0.0009 (14)
C55 0.037 (2) 0.034 (2) 0.0307 (19) 0.0034 (17) −0.0126 (16) −0.0056 (16)
C56 0.028 (7) 0.058 (4) 0.140 (12) −0.021 (5) 0.017 (6) −0.067 (6)
C57 0.030 (3) 0.053 (9) 0.077 (12) −0.001 (3) 0.013 (4) −0.026 (9)
C55' 0.037 (2) 0.034 (2) 0.0307 (19) 0.0034 (17) −0.0126 (16) −0.0056 (16)
C56' 0.028 (7) 0.058 (4) 0.140 (12) −0.021 (5) 0.017 (6) −0.067 (6)
C57' 0.030 (3) 0.053 (9) 0.077 (12) −0.001 (3) 0.013 (4) −0.026 (9)
C58 0.0306 (19) 0.029 (2) 0.0231 (17) 0.0001 (15) −0.0002 (15) −0.0024 (15)
C59 0.041 (2) 0.034 (2) 0.057 (3) −0.0089 (18) −0.008 (2) 0.007 (2)
C60 0.028 (2) 0.049 (3) 0.048 (3) −0.0014 (18) 0.0006 (18) 0.003 (2)
C61 0.0172 (16) 0.038 (2) 0.0207 (16) −0.0012 (14) 0.0004 (13) −0.0076 (15)
C62 0.0211 (17) 0.035 (2) 0.0321 (19) −0.0029 (15) −0.0012 (14) −0.0037 (16)
C63 0.027 (2) 0.040 (2) 0.062 (3) −0.0086 (17) −0.0046 (19) −0.010 (2)
C64 0.0243 (19) 0.057 (3) 0.067 (3) −0.0013 (18) −0.0115 (19) −0.022 (2)
C65 0.029 (2) 0.051 (3) 0.043 (2) 0.0096 (18) −0.0107 (17) −0.0130 (19)
C66 0.0268 (18) 0.038 (2) 0.0201 (17) 0.0009 (15) −0.0015 (13) −0.0050 (15)
C67 0.0251 (18) 0.032 (2) 0.052 (3) −0.0041 (16) −0.0068 (17) −0.0005 (18)
C68 0.109 (17) 0.096 (8) 0.039 (7) 0.083 (10) 0.009 (10) −0.012 (7)
C69 0.094 (14) 0.075 (9) 0.022 (3) 0.039 (6) −0.014 (5) −0.017 (5)
C67' 0.0251 (18) 0.032 (2) 0.052 (3) −0.0041 (16) −0.0068 (17) −0.0005 (18)
C68' 0.109 (17) 0.096 (8) 0.039 (7) 0.083 (10) 0.009 (10) −0.012 (7)
C69' 0.094 (14) 0.075 (9) 0.022 (3) 0.039 (6) −0.014 (5) −0.017 (5)
C70 0.037 (2) 0.032 (2) 0.0291 (19) 0.0067 (16) −0.0093 (16) −0.0039 (15)
C71 0.062 (3) 0.037 (3) 0.043 (2) −0.001 (2) 0.005 (2) −0.0098 (19)
C72 0.061 (3) 0.045 (3) 0.037 (2) −0.003 (2) −0.005 (2) −0.0014 (19)
C73 0.070 (4) 0.065 (4) 0.117 (6) 0.009 (3) −0.027 (4) −0.032 (4)
C74 0.072 (4) 0.040 (3) 0.080 (4) −0.005 (2) −0.025 (3) −0.012 (3)
C75 0.074 (4) 0.056 (4) 0.110 (5) −0.008 (3) −0.023 (4) −0.015 (3)
C76 0.082 (4) 0.056 (4) 0.088 (5) −0.008 (3) 0.007 (4) −0.001 (3)
C77 0.081 (5) 0.068 (5) 0.176 (10) −0.005 (4) 0.019 (5) 0.001 (5)
C78 0.070 (4) 0.067 (4) 0.155 (8) 0.011 (3) 0.003 (5) −0.007 (5)
C79 0.066 (4) 0.129 (7) 0.116 (6) −0.026 (5) −0.002 (4) −0.030 (6)

Geometric parameters (Å, °)

N1—C1 1.258 (5) C42—H42C 0.9800
N1—C13 1.422 (4) C43—C48 1.392 (5)
N2—C2 1.256 (5) C43—C44 1.393 (5)
N2—C43 1.415 (4) C44—C45 1.394 (5)
C1—C11 1.483 (5) C44—H44 0.9500
C1—C2 1.524 (4) C45—C46 1.398 (5)
C2—C3 1.482 (6) C45—C49 1.499 (5)
C3—C4 1.375 (6) C46—C47 1.388 (5)
C3—C12 1.412 (6) C46—H46 0.9500
C4—C5 1.409 (7) C47—C48 1.383 (5)
C4—H4 0.9500 C47—C61 1.501 (5)
C5—C6 1.344 (8) C48—H48 0.9500
C5—H5 0.9500 C49—C54 1.401 (5)
C6—C7 1.427 (7) C49—C50 1.405 (5)
C6—H6 0.9500 C50—C51 1.404 (5)
C7—C12 1.398 (7) C50—C55 1.506 (6)
C7—C8 1.432 (7) C51—C52 1.374 (6)
C8—C9 1.355 (7) C51—H51 0.9500
C8—H8 0.9500 C52—C53 1.388 (6)
C9—C10 1.429 (7) C52—H52 0.9500
C9—H9 0.9500 C53—C54 1.392 (5)
C10—C11 1.372 (5) C53—H53 0.9500
C10—H10 0.9500 C54—C58 1.524 (5)
C11—C12 1.426 (6) C55—C56 1.511 (6)
C13—C18 1.386 (5) C55—C57 1.513 (6)
C13—C14 1.387 (5) C55—H55 1.0000
C14—C15 1.402 (5) C56—H56A 0.9800
C14—H14 0.9500 C56—H56B 0.9800
C15—C16 1.399 (5) C56—H56C 0.9800
C15—C19 1.490 (5) C57—H57A 0.9800
C16—C17 1.383 (5) C57—H57B 0.9800
C16—H16 0.9500 C57—H57C 0.9800
C17—C18 1.393 (5) C56'—H56D 0.9800
C17—C31 1.499 (5) C56'—H56E 0.9800
C18—H18 0.9500 C56'—H56F 0.9800
C19—C20 1.406 (5) C57'—H57D 0.9800
C19—C24 1.408 (5) C57'—H57E 0.9800
C20—C21 1.388 (5) C57'—H57F 0.9800
C20—C25 1.510 (6) C58—C60 1.519 (5)
C21—C22 1.378 (6) C58—C59 1.520 (6)
C21—H21 0.9500 C58—H58 1.0000
C22—C23 1.371 (6) C59—H59A 0.9800
C22—H22 0.9500 C59—H59B 0.9800
C23—C24 1.391 (5) C59—H59C 0.9800
C23—H23 0.9500 C60—H60A 0.9800
C24—C28 1.516 (5) C60—H60B 0.9800
C25—C26 1.516 (6) C60—H60C 0.9800
C25—C27 1.527 (6) C61—C62 1.403 (6)
C25—H25 1.0000 C61—C66 1.408 (5)
C26—H26A 0.9800 C62—C63 1.390 (5)
C26—H26B 0.9800 C62—C67 1.520 (5)
C26—H26C 0.9800 C63—C64 1.383 (7)
C27—H27A 0.9800 C63—H63 0.9500
C27—H27B 0.9800 C64—C65 1.357 (7)
C27—H27C 0.9800 C64—H64 0.9500
C28—C30 1.529 (6) C65—C66 1.401 (6)
C28—C29 1.550 (6) C65—H65 0.9500
C28—H28 1.0000 C66—C70 1.515 (6)
C29—H29A 0.9800 C67—C68 1.511 (6)
C29—H29B 0.9800 C67—C69 1.516 (6)
C29—H29C 0.9800 C67—H67 1.0000
C30—H30A 0.9800 C68—H68A 0.9800
C30—H30B 0.9800 C68—H68B 0.9800
C30—H30C 0.9800 C68—H68C 0.9800
C29'—H29D 0.9800 C69—H69A 0.9800
C29'—H29E 0.9800 C69—H69B 0.9800
C29'—H29F 0.9800 C69—H69C 0.9800
C30'—H30D 0.9800 C68'—H68D 0.9800
C30'—H30E 0.9800 C68'—H68E 0.9800
C30'—H30F 0.9800 C68'—H68F 0.9800
C31—C32 1.402 (5) C69'—H69D 0.9800
C31—C36 1.408 (5) C69'—H69E 0.9800
C32—C33 1.398 (5) C69'—H69F 0.9800
C32—C37 1.526 (5) C70—C71 1.522 (6)
C33—C34 1.374 (6) C70—C72 1.527 (6)
C33—H33 0.9500 C70—H70 1.0000
C34—C35 1.380 (6) C71—H71A 0.9800
C34—H34 0.9500 C71—H71B 0.9800
C35—C36 1.385 (5) C71—H71C 0.9800
C35—H35 0.9500 C72—H72A 0.9800
C36—C40 1.535 (5) C72—H72B 0.9800
C37—C39 1.516 (6) C72—H72C 0.9800
C37—C38 1.522 (6) C73—C74 1.319 (9)
C37—H37 1.0000 C73—C78 1.335 (10)
C38—H38A 0.9800 C73—C79 1.591 (12)
C38—H38B 0.9800 C74—C75 1.503 (10)
C38—H38C 0.9800 C74—H74 0.9500
C39—H39A 0.9800 C75—C76 1.315 (9)
C39—H39B 0.9800 C75—H75 0.9500
C39—H39C 0.9800 C76—C77 1.389 (11)
C40—C42 1.498 (6) C76—H76 0.9500
C40—C41 1.535 (6) C77—C78 1.403 (12)
C40—H40 1.0000 C77—H77 0.9500
C41—H41A 0.9800 C78—H78 0.9500
C41—H41B 0.9800 C79—H79A 0.9800
C41—H41C 0.9800 C79—H79B 0.9800
C42—H42A 0.9800 C79—H79C 0.9800
C42—H42B 0.9800
C1—N1—C13 121.0 (3) C44—C43—N2 120.0 (3)
C2—N2—C43 118.7 (3) C43—C44—C45 120.0 (3)
N1—C1—C11 132.1 (3) C43—C44—H44 120.0
N1—C1—C2 121.1 (3) C45—C44—H44 120.0
C11—C1—C2 106.8 (3) C44—C45—C46 119.1 (3)
N2—C2—C3 132.8 (3) C44—C45—C49 120.7 (3)
N2—C2—C1 120.5 (3) C46—C45—C49 120.1 (3)
C3—C2—C1 106.5 (3) C47—C46—C45 120.9 (3)
C4—C3—C12 118.5 (4) C47—C46—H46 119.6
C4—C3—C2 134.5 (4) C45—C46—H46 119.6
C12—C3—C2 106.9 (3) C48—C47—C46 119.5 (3)
C3—C4—C5 117.7 (4) C48—C47—C61 120.6 (3)
C3—C4—H4 121.1 C46—C47—C61 119.8 (3)
C5—C4—H4 121.1 C47—C48—C43 120.3 (3)
C6—C5—C4 124.2 (5) C47—C48—H48 119.9
C6—C5—H5 117.9 C43—C48—H48 119.9
C4—C5—H5 117.9 C54—C49—C50 121.2 (3)
C5—C6—C7 119.9 (5) C54—C49—C45 119.3 (3)
C5—C6—H6 120.1 C50—C49—C45 119.5 (3)
C7—C6—H6 120.1 C51—C50—C49 117.9 (4)
C12—C7—C6 115.7 (4) C51—C50—C55 120.1 (3)
C12—C7—C8 116.8 (4) C49—C50—C55 122.1 (3)
C6—C7—C8 127.4 (5) C52—C51—C50 121.1 (4)
C9—C8—C7 120.8 (5) C52—C51—H51 119.5
C9—C8—H8 119.6 C50—C51—H51 119.5
C7—C8—H8 119.6 C51—C52—C53 120.6 (4)
C8—C9—C10 121.8 (4) C51—C52—H52 119.7
C8—C9—H9 119.1 C53—C52—H52 119.7
C10—C9—H9 119.1 C52—C53—C54 120.2 (4)
C11—C10—C9 119.2 (4) C52—C53—H53 119.9
C11—C10—H10 120.4 C54—C53—H53 119.9
C9—C10—H10 120.4 C53—C54—C49 119.1 (3)
C10—C11—C12 118.9 (4) C53—C54—C58 119.4 (4)
C10—C11—C1 134.8 (4) C49—C54—C58 121.5 (3)
C12—C11—C1 106.3 (3) C50—C55—C56 113.9 (9)
C7—C12—C3 124.0 (4) C50—C55—C57 114.5 (13)
C7—C12—C11 122.5 (4) C56—C55—C57 123.6 (14)
C3—C12—C11 113.5 (4) C50—C55—H55 99.5
C18—C13—C14 120.5 (3) C56—C55—H55 99.5
C18—C13—N1 119.6 (3) C57—C55—H55 99.5
C14—C13—N1 119.8 (3) C55—C56—H56A 109.5
C13—C14—C15 120.1 (3) C55—C56—H56B 109.5
C13—C14—H14 119.9 H56A—C56—H56B 109.5
C15—C14—H14 119.9 C55—C56—H56C 109.5
C16—C15—C14 118.6 (3) H56A—C56—H56C 109.5
C16—C15—C19 121.5 (3) H56B—C56—H56C 109.5
C14—C15—C19 119.8 (3) C55—C57—H57A 109.5
C17—C16—C15 121.2 (3) C55—C57—H57B 109.5
C17—C16—H16 119.4 H57A—C57—H57B 109.5
C15—C16—H16 119.4 C55—C57—H57C 109.5
C16—C17—C18 119.5 (3) H57A—C57—H57C 109.5
C16—C17—C31 120.5 (3) H57B—C57—H57C 109.5
C18—C17—C31 120.0 (3) H56D—C56'—H56E 109.5
C13—C18—C17 120.1 (3) H56D—C56'—H56F 109.5
C13—C18—H18 120.0 H56E—C56'—H56F 109.5
C17—C18—H18 120.0 H57D—C57'—H57E 109.5
C20—C19—C24 120.3 (3) H57D—C57'—H57F 109.5
C20—C19—C15 118.5 (3) H57E—C57'—H57F 109.5
C24—C19—C15 121.1 (3) C60—C58—C59 110.5 (4)
C21—C20—C19 118.7 (4) C60—C58—C54 111.4 (3)
C21—C20—C25 119.5 (3) C59—C58—C54 111.9 (3)
C19—C20—C25 121.9 (3) C60—C58—H58 107.6
C22—C21—C20 121.1 (4) C59—C58—H58 107.6
C22—C21—H21 119.5 C54—C58—H58 107.6
C20—C21—H21 119.5 C58—C59—H59A 109.5
C23—C22—C21 120.2 (4) C58—C59—H59B 109.5
C23—C22—H22 119.9 H59A—C59—H59B 109.5
C21—C22—H22 119.9 C58—C59—H59C 109.5
C22—C23—C24 121.2 (4) H59A—C59—H59C 109.5
C22—C23—H23 119.4 H59B—C59—H59C 109.5
C24—C23—H23 119.4 C58—C60—H60A 109.5
C23—C24—C19 118.5 (4) C58—C60—H60B 109.5
C23—C24—C28 120.1 (4) H60A—C60—H60B 109.5
C19—C24—C28 121.3 (3) C58—C60—H60C 109.5
C20—C25—C26 113.4 (4) H60A—C60—H60C 109.5
C20—C25—C27 111.0 (4) H60B—C60—H60C 109.5
C26—C25—C27 110.5 (4) C62—C61—C66 121.6 (3)
C20—C25—H25 107.2 C62—C61—C47 120.1 (3)
C26—C25—H25 107.2 C66—C61—C47 118.3 (3)
C27—C25—H25 107.2 C63—C62—C61 118.2 (4)
C25—C26—H26A 109.5 C63—C62—C67 119.2 (4)
C25—C26—H26B 109.5 C61—C62—C67 122.6 (3)
H26A—C26—H26B 109.5 C64—C63—C62 120.5 (4)
C25—C26—H26C 109.5 C64—C63—H63 119.7
H26A—C26—H26C 109.5 C62—C63—H63 119.7
H26B—C26—H26C 109.5 C65—C64—C63 120.9 (4)
C25—C27—H27A 109.5 C65—C64—H64 119.6
C25—C27—H27B 109.5 C63—C64—H64 119.6
H27A—C27—H27B 109.5 C64—C65—C66 121.4 (4)
C25—C27—H27C 109.5 C64—C65—H65 119.3
H27A—C27—H27C 109.5 C66—C65—H65 119.3
H27B—C27—H27C 109.5 C65—C66—C61 117.3 (4)
C24—C28—C30 110.7 (6) C65—C66—C70 120.4 (4)
C24—C28—C29 109.5 (5) C61—C66—C70 122.2 (3)
C30—C28—C29 86.7 (6) C68—C67—C69 109.5 (18)
C24—C28—H28 115.5 C68—C67—C62 114.6 (14)
C30—C28—H28 115.5 C69—C67—C62 110.0 (15)
C29—C28—H28 115.5 C68—C67—H67 107.5
H29D—C29'—H29E 109.5 C69—C67—H67 107.5
H29D—C29'—H29F 109.5 C62—C67—H67 107.5
H29E—C29'—H29F 109.5 C67—C68—H68A 109.5
H30D—C30'—H30E 109.5 C67—C68—H68B 109.5
H30D—C30'—H30F 109.5 H68A—C68—H68B 109.5
H30E—C30'—H30F 109.5 C67—C68—H68C 109.5
C32—C31—C36 121.0 (3) H68A—C68—H68C 109.5
C32—C31—C17 119.1 (3) H68B—C68—H68C 109.5
C36—C31—C17 119.9 (3) C67—C69—H69A 109.5
C33—C32—C31 118.0 (3) C67—C69—H69B 109.5
C33—C32—C37 120.1 (4) H69A—C69—H69B 109.5
C31—C32—C37 121.8 (3) C67—C69—H69C 109.5
C34—C33—C32 121.3 (4) H69A—C69—H69C 109.5
C34—C33—H33 119.3 H69B—C69—H69C 109.5
C32—C33—H33 119.3 H68D—C68'—H68E 109.5
C33—C34—C35 119.9 (4) H68D—C68'—H68F 109.5
C33—C34—H34 120.0 H68E—C68'—H68F 109.5
C35—C34—H34 120.0 H69D—C69'—H69E 109.5
C34—C35—C36 121.3 (4) H69D—C69'—H69F 109.5
C34—C35—H35 119.3 H69E—C69'—H69F 109.5
C36—C35—H35 119.3 C66—C70—C71 112.3 (4)
C35—C36—C31 118.4 (3) C66—C70—C72 111.0 (4)
C35—C36—C40 120.4 (3) C71—C70—C72 111.5 (4)
C31—C36—C40 121.3 (3) C66—C70—H70 107.3
C39—C37—C38 111.1 (4) C71—C70—H70 107.3
C39—C37—C32 111.6 (3) C72—C70—H70 107.3
C38—C37—C32 112.1 (3) C70—C71—H71A 109.5
C39—C37—H37 107.2 C70—C71—H71B 109.5
C38—C37—H37 107.2 H71A—C71—H71B 109.5
C32—C37—H37 107.2 C70—C71—H71C 109.5
C37—C38—H38A 109.5 H71A—C71—H71C 109.5
C37—C38—H38B 109.5 H71B—C71—H71C 109.5
H38A—C38—H38B 109.5 C70—C72—H72A 109.5
C37—C38—H38C 109.5 C70—C72—H72B 109.5
H38A—C38—H38C 109.5 H72A—C72—H72B 109.5
H38B—C38—H38C 109.5 C70—C72—H72C 109.5
C37—C39—H39A 109.5 H72A—C72—H72C 109.5
C37—C39—H39B 109.5 H72B—C72—H72C 109.5
H39A—C39—H39B 109.5 C74—C73—C78 123.3 (8)
C37—C39—H39C 109.5 C74—C73—C79 116.0 (7)
H39A—C39—H39C 109.5 C78—C73—C79 120.7 (7)
H39B—C39—H39C 109.5 C73—C74—C75 118.0 (6)
C42—C40—C36 112.3 (3) C73—C74—H74 121.0
C42—C40—C41 110.4 (4) C75—C74—H74 121.0
C36—C40—C41 110.8 (3) C76—C75—C74 119.5 (7)
C42—C40—H40 107.7 C76—C75—H75 120.2
C36—C40—H40 107.7 C74—C75—H75 120.2
C41—C40—H40 107.7 C75—C76—C77 119.0 (8)
C40—C41—H41A 109.5 C75—C76—H76 120.5
C40—C41—H41B 109.5 C77—C76—H76 120.5
H41A—C41—H41B 109.5 C76—C77—C78 121.7 (7)
C40—C41—H41C 109.5 C76—C77—H77 119.2
H41A—C41—H41C 109.5 C78—C77—H77 119.2
H41B—C41—H41C 109.5 C73—C78—C77 118.5 (7)
C40—C42—H42A 109.5 C73—C78—H78 120.8
C40—C42—H42B 109.5 C77—C78—H78 120.8
H42A—C42—H42B 109.5 C73—C79—H79A 109.5
C40—C42—H42C 109.5 C73—C79—H79B 109.5
H42A—C42—H42C 109.5 H79A—C79—H79B 109.5
H42B—C42—H42C 109.5 C73—C79—H79C 109.5
C48—C43—C44 120.1 (3) H79A—C79—H79C 109.5
C48—C43—N2 119.9 (3) H79B—C79—H79C 109.5
C13—N1—C1—C11 2.0 (6) C32—C33—C34—C35 1.0 (6)
C13—N1—C1—C2 179.6 (3) C33—C34—C35—C36 0.5 (6)
C43—N2—C2—C3 −5.5 (6) C34—C35—C36—C31 −1.1 (5)
C43—N2—C2—C1 −178.9 (3) C34—C35—C36—C40 177.9 (4)
N1—C1—C2—N2 −4.0 (5) C32—C31—C36—C35 0.3 (5)
C11—C1—C2—N2 174.1 (3) C17—C31—C36—C35 −179.2 (3)
N1—C1—C2—C3 −178.9 (3) C32—C31—C36—C40 −178.7 (3)
C11—C1—C2—C3 −0.8 (3) C17—C31—C36—C40 1.8 (5)
N2—C2—C3—C4 2.9 (7) C33—C32—C37—C39 −56.0 (5)
C1—C2—C3—C4 176.9 (4) C31—C32—C37—C39 123.5 (4)
N2—C2—C3—C12 −172.4 (4) C33—C32—C37—C38 69.3 (5)
C1—C2—C3—C12 1.6 (4) C31—C32—C37—C38 −111.1 (4)
C12—C3—C4—C5 1.8 (6) C35—C36—C40—C42 63.6 (5)
C2—C3—C4—C5 −173.2 (4) C31—C36—C40—C42 −117.5 (4)
C3—C4—C5—C6 −2.3 (8) C35—C36—C40—C41 −60.3 (5)
C4—C5—C6—C7 1.4 (10) C31—C36—C40—C41 118.6 (4)
C5—C6—C7—C12 0.0 (8) C2—N2—C43—C48 −84.7 (4)
C5—C6—C7—C8 178.7 (6) C2—N2—C43—C44 96.4 (4)
C12—C7—C8—C9 0.8 (8) C48—C43—C44—C45 2.1 (6)
C6—C7—C8—C9 −177.8 (6) N2—C43—C44—C45 −179.1 (3)
C7—C8—C9—C10 −0.2 (9) C43—C44—C45—C46 −1.1 (6)
C8—C9—C10—C11 0.5 (8) C43—C44—C45—C49 179.6 (3)
C9—C10—C11—C12 −1.4 (6) C44—C45—C46—C47 −0.6 (5)
C9—C10—C11—C1 176.4 (4) C49—C45—C46—C47 178.7 (3)
N1—C1—C11—C10 −0.5 (7) C45—C46—C47—C48 1.3 (5)
C2—C1—C11—C10 −178.3 (4) C45—C46—C47—C61 −178.1 (3)
N1—C1—C11—C12 177.5 (4) C46—C47—C48—C43 −0.3 (6)
C2—C1—C11—C12 −0.3 (4) C61—C47—C48—C43 179.1 (3)
C6—C7—C12—C3 −0.4 (7) C44—C43—C48—C47 −1.4 (6)
C8—C7—C12—C3 −179.3 (5) N2—C43—C48—C47 179.8 (3)
C6—C7—C12—C11 177.0 (5) C44—C45—C49—C54 102.4 (4)
C8—C7—C12—C11 −1.8 (7) C46—C45—C49—C54 −76.9 (4)
C4—C3—C12—C7 −0.5 (6) C44—C45—C49—C50 −79.4 (4)
C2—C3—C12—C7 175.7 (4) C46—C45—C49—C50 101.3 (4)
C4—C3—C12—C11 −178.2 (4) C54—C49—C50—C51 −1.2 (5)
C2—C3—C12—C11 −1.9 (4) C45—C49—C50—C51 −179.4 (3)
C10—C11—C12—C7 2.1 (6) C54—C49—C50—C55 177.5 (3)
C1—C11—C12—C7 −176.3 (4) C45—C49—C50—C55 −0.7 (5)
C10—C11—C12—C3 179.8 (4) C49—C50—C51—C52 1.0 (5)
C1—C11—C12—C3 1.4 (5) C55—C50—C51—C52 −177.7 (4)
C1—N1—C13—C18 90.4 (4) C50—C51—C52—C53 0.1 (6)
C1—N1—C13—C14 −93.0 (4) C51—C52—C53—C54 −1.1 (6)
C18—C13—C14—C15 −1.1 (6) C52—C53—C54—C49 0.9 (5)
N1—C13—C14—C15 −177.6 (3) C52—C53—C54—C58 −177.8 (3)
C13—C14—C15—C16 0.3 (5) C50—C49—C54—C53 0.3 (5)
C13—C14—C15—C19 −176.8 (3) C45—C49—C54—C53 178.5 (3)
C14—C15—C16—C17 0.6 (5) C50—C49—C54—C58 178.9 (3)
C19—C15—C16—C17 177.7 (3) C45—C49—C54—C58 −2.9 (5)
C15—C16—C17—C18 −0.8 (5) C51—C50—C55—C56 80.0 (8)
C15—C16—C17—C31 −179.2 (3) C49—C50—C55—C56 −98.6 (8)
C14—C13—C18—C17 0.9 (6) C51—C50—C55—C57 −70.2 (9)
N1—C13—C18—C17 177.4 (3) C49—C50—C55—C57 111.2 (9)
C16—C17—C18—C13 0.1 (5) C53—C54—C58—C60 −71.5 (5)
C31—C17—C18—C13 178.4 (3) C49—C54—C58—C60 109.9 (4)
C16—C15—C19—C20 −99.2 (4) C53—C54—C58—C59 52.8 (5)
C14—C15—C19—C20 77.8 (4) C49—C54—C58—C59 −125.8 (4)
C16—C15—C19—C24 81.6 (4) C48—C47—C61—C62 100.9 (4)
C14—C15—C19—C24 −101.4 (4) C46—C47—C61—C62 −79.6 (5)
C24—C19—C20—C21 2.6 (5) C48—C47—C61—C66 −79.7 (4)
C15—C19—C20—C21 −176.6 (3) C46—C47—C61—C66 99.7 (4)
C24—C19—C20—C25 −177.3 (3) C66—C61—C62—C63 −0.8 (6)
C15—C19—C20—C25 3.5 (5) C47—C61—C62—C63 178.5 (4)
C19—C20—C21—C22 −1.1 (6) C66—C61—C62—C67 179.2 (3)
C25—C20—C21—C22 178.8 (4) C47—C61—C62—C67 −1.5 (5)
C20—C21—C22—C23 −0.8 (7) C61—C62—C63—C64 0.6 (6)
C21—C22—C23—C24 1.3 (7) C67—C62—C63—C64 −179.4 (4)
C22—C23—C24—C19 0.2 (6) C62—C63—C64—C65 0.1 (7)
C22—C23—C24—C28 179.4 (4) C63—C64—C65—C66 −0.7 (7)
C20—C19—C24—C23 −2.1 (5) C64—C65—C66—C61 0.5 (6)
C15—C19—C24—C23 177.0 (3) C64—C65—C66—C70 −176.7 (4)
C20—C19—C24—C28 178.7 (3) C62—C61—C66—C65 0.3 (5)
C15—C19—C24—C28 −2.2 (5) C47—C61—C66—C65 −179.0 (3)
C21—C20—C25—C26 61.0 (5) C62—C61—C66—C70 177.4 (3)
C19—C20—C25—C26 −119.0 (4) C47—C61—C66—C70 −2.0 (5)
C21—C20—C25—C27 −64.1 (5) C63—C62—C67—C68 73.9 (12)
C19—C20—C25—C27 115.9 (4) C61—C62—C67—C68 −106.1 (12)
C23—C24—C28—C30 46.7 (7) C63—C62—C67—C69 −50.0 (9)
C19—C24—C28—C30 −134.1 (6) C61—C62—C67—C69 129.9 (9)
C23—C24—C28—C29 −47.3 (6) C65—C66—C70—C71 54.4 (5)
C19—C24—C28—C29 131.9 (5) C61—C66—C70—C71 −122.6 (4)
C16—C17—C31—C32 76.7 (4) C65—C66—C70—C72 −71.1 (5)
C18—C17—C31—C32 −101.7 (4) C61—C66—C70—C72 111.9 (4)
C16—C17—C31—C36 −103.8 (4) C78—C73—C74—C75 −0.9 (10)
C18—C17—C31—C36 77.9 (4) C79—C73—C74—C75 178.0 (6)
C36—C31—C32—C33 1.1 (5) C73—C74—C75—C76 0.7 (10)
C17—C31—C32—C33 −179.4 (3) C74—C75—C76—C77 0.2 (11)
C36—C31—C32—C37 −178.5 (3) C75—C76—C77—C78 −0.9 (15)
C17—C31—C32—C37 1.0 (5) C74—C73—C78—C77 0.2 (13)
C31—C32—C33—C34 −1.7 (6) C79—C73—C78—C77 −178.7 (8)
C37—C32—C33—C34 177.9 (3) C76—C77—C78—C73 0.7 (15)

Footnotes

Supplementary data and figures for this paper are available from the IUCr electronic archives (Reference: LH5296).

References

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Associated Data

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

Supplementary Materials

Crystal structure: contains datablock(s) global, I. DOI: 10.1107/S1600536811031242/lh5296sup1.cif

e-67-o2280-sup1.cif (49.4KB, cif)

Structure factors: contains datablock(s) I. DOI: 10.1107/S1600536811031242/lh5296Isup2.hkl

e-67-o2280-Isup2.hkl (275.6KB, hkl)

Supplementary material file. DOI: 10.1107/S1600536811031242/lh5296Isup3.cml

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


Articles from Acta Crystallographica Section E: Structure Reports Online are provided here courtesy of International Union of Crystallography

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