organic compounds\(\def\hfill{\hskip 5em}\def\hfil{\hskip 3em}\def\eqno#1{\hfil {#1}}\)

Journal logoCRYSTALLOGRAPHIC
COMMUNICATIONS
ISSN: 2056-9890
Volume 67| Part 2| February 2011| Pages o457-o458

Tris(bi­phenyl-4-yl)arsane

aChemical Sciences Programme, School of Distance Education, Universiti Sains Malaysia, 11800 USM, Penang, Malaysia, and bX-ray Crystallography Unit, School of Physics, Universiti Sains Malaysia, 11800 USM, Penang, Malaysia
*Correspondence e-mail: omarsa@usm.my

(Received 20 December 2010; accepted 13 January 2011; online 22 January 2011)

The asymmetric unit of title compound, C36H27As, contains two crystallographically independent mol­ecules, A and B, with similar conformations. The two phenyl rings of each biphenyl unit are twisted slightly away from each other with dihedral angles of 6.0 (2), 27.7 (3) and 33.4 (2)° in mol­ecule A and 5.7 (3), 27.5 (2) and 33.0 (2)° in mol­ecule B. The As-bonded phenyl rings make dihedral angles of 54.9 (2), 76.0 (2) and 88.2 (2),° with each other in mol­ecule A, and 60.3 (2), 78.1 (2) and 79.5 (2)° in mol­ecule B. In the crystal, the mol­ecules are stacked down the b axis. Weak inter­molecular C—H⋯π inter­actions stabilize the crystal structure. The crystal studied was a racemic twin, the refined ratio of twin components being 0.461 (7):0.539 (7).

Related literature

For structures of related tris­aryl arsane derivatives, see: Cullen et al. (1995[Cullen, W. R., Rettig, S. J. & Zheng, T. C. (1995). Organometallics, 14, 1466-1470.]); Shawkataly et al. (2010a[Shawkataly, O. bin, Khan, I. A., Yeap, C. S. & Fun, H.-K. (2010a). Acta Cryst. E66, m30-m31.],b[Shawkataly, O. bin, Khan, I. A., Yeap, C. S. & Fun, H.-K. (2010b). Acta Cryst. E66, m180-m181.]). For the stability of the temperature controller used in the data collection, see: Cosier & Glazer (1986[Cosier, J. & Glazer, A. M. (1986). J. Appl. Cryst. 19, 105-107.]).

[Scheme 1]

Experimental

Crystal data
  • C36H27As

  • Mr = 534.50

  • Monoclinic, P c

  • a = 17.3718 (19) Å

  • b = 5.9561 (8) Å

  • c = 27.727 (3) Å

  • β = 114.762 (5)°

  • V = 2605.1 (5) Å3

  • Z = 4

  • Mo Kα radiation

  • μ = 1.33 mm−1

  • T = 100 K

  • 0.33 × 0.07 × 0.03 mm

Data collection
  • Bruker APEXII DUO CCD area-detector diffractometer

  • Absorption correction: multi-scan (SADABS; Bruker, 2009[Bruker (2009). APEX2, SAINT and SADABS. Bruker AXS Inc., Madison, Wisconsin, USA.]) Tmin = 0.671, Tmax = 0.961

  • 23087 measured reflections

  • 11576 independent reflections

  • 8126 reflections with I > 2σ(I)'

  • Rint = 0.057

Refinement
  • R[F2 > 2σ(F2)] = 0.045

  • wR(F2) = 0.093

  • S = 1.01

  • 11576 reflections

  • 668 parameters

  • 2 restraints

  • H-atom parameters constrained

  • Δρmax = 0.56 e Å−3

  • Δρmin = −0.75 e Å−3

  • Absolute structure: Flack (1983[Flack, H. D. (1983). Acta Cryst. A39, 876-881.]), 5634 Friedel pairs

  • Flack parameter: 0.461 (7)

Table 1
Hydrogen-bond geometry (Å, °)

Cg1, Cg2, Cg3, Cg4, Cg5, Cg6 and Cg7 are the centroids of the C25B–C30B, C19B–C24B, C7B–C12B, C31A–C36A, C1A–C6A, C31B–C36B and C13B–C18B benzene rings, respectively.

D—H⋯A D—H H⋯A DA D—H⋯A
C4B—H4BACg1i 0.93 2.77 3.583 (6) 147
C9A—H9ACg2ii 0.93 2.99 3.872 (6) 160
C11A—H11ACg3iii 0.93 2.88 3.723 (7) 153
C13B—H13BCg4 0.93 2.79 3.596 (5) 147
C14A—H14ACg5i 0.93 2.93 3.834 (5) 172
C24A—H24ACg6iv 0.93 2.70 3.582 (6) 160
C28B—H28BCg7v 0.93 2.56 3.313 (6) 139
C36A—H36ACg3vi 0.93 2.96 3.651 (6) 133
Symmetry codes: (i) x, y+1, z; (ii) [x, -y, z+{\script{1\over 2}}]; (iii) [x-1, -y, z+{\script{1\over 2}}]; (iv) x-1, y+2, z; (v) x, y-1, z; (vi) [x, -y+1, z+{\script{1\over 2}}].

Data collection: APEX2 (Bruker, 2009[Bruker (2009). APEX2, SAINT and SADABS. Bruker AXS Inc., Madison, Wisconsin, USA.]); cell refinement: SAINT (Bruker, 2009[Bruker (2009). APEX2, SAINT and SADABS. Bruker AXS Inc., Madison, Wisconsin, USA.]); data reduction: SAINT; program(s) used to solve structure: SHELXTL (Sheldrick, 2008[Sheldrick, G. M. (2008). Acta Cryst. A64, 112-122.]); program(s) used to refine structure: SHELXTL; molecular graphics: SHELXTL; software used to prepare material for publication: SHELXTL and PLATON (Spek, 2009[Spek, A. L. (2009). Acta Cryst. D65, 148-155.]).

Supporting information


Comment top

Trisaryl arsanes have been used in the synthesis of Osmium and Ruthenium cluster derivatives (Cullen et al., 1995; Shawkataly et al., 2010a, b). In continuation of our work on trisaryl arsanes, we report the synthesis and structure of title compound.

The asymmetric unit consists of two crystallographically independent molecules of trisaryl arsane, A and B, with similar conformation (Fig. 1). Both phenyl rings of biphenyl are slightly twisted from each other with the dihedral angles of 33.4 (2), 27.7 (3) and 6.0 (2)° in molecule A whereas these angles are 5.7 (3), 27.5 (2) and 33.0 (2)° in molecule B. The arsane-substituted phenyl rings make dihedral angles of 88.2 (2), 54.9 (2) and 76.0 (2)° with each other in molecule A whereas 79.5 (2), 78.1 (2) and 60.3 (2)° in molecule B. In the crystal packing, the molecules are stacked down the b axis (Fig 2). Weak intermolecular C—H···π interactions stabilize the crystal structure (Table 1).

Related literature top

For structures of related trisaryl arsane derivatives, see: Cullen et al. (1995); Shawkataly et al. (2010a,b). For the stability of the temperature controller used in the data collection, see: Cosier & Glazer (1986).

Experimental top

All manipulations were performed under a dry oxygen-free nitrogen atmosphere using standard Schlenk techniques. All solvents were dried over sodium and distilled from sodium benzophenone ketyl under dry oxygen free nitrogen. Tris(1-biphenyl)arsane was prepared from arsenic trichloride and biphenyl magnesiumbromide in tetrahydrofuran. Crystals suitable for X-ray diffraction were grown by slow solvent / solvent diffusion of CH3OH into CHCl3.

Refinement top

All hydrogen atoms were positioned geometrically and refined using a riding model with C—H = 0.93 Å and Uiso(H) = 1.2 Ueq(C). The crystal studied is a racemic twin with the refined ratio of twin components being 0.461 (7):0.539 (7). Fourteen outliers reflections (-2 4 -6, -4 4-3, 1 0 0, 6 4 -9, -6 4 10, 9 0 -18, 2 4 6, -3 4 -4, -9 0 18, 4 4 3, 3 4 4, 10 0 -14, 4 3 -15 and -1 4 -7) were omitted from the final refinement.

Computing details top

Data collection: APEX2 (Bruker, 2009); cell refinement: SAINT (Bruker, 2009); data reduction: SAINT (Bruker, 2009); program(s) used to solve structure: SHELXTL (Sheldrick, 2008); program(s) used to refine structure: SHELXTL (Sheldrick, 2008); molecular graphics: SHELXTL (Sheldrick, 2008); software used to prepare material for publication: SHELXTL (Sheldrick, 2008) and PLATON (Spek, 2009).

Figures top
[Figure 1] Fig. 1. The molecular structure of the title compound with 50% probability ellipsoids for non-H atoms.
[Figure 2] Fig. 2. The crystal packing of the title compound, viewed down the b axis, showing the molecules stacked down the b axis.
Tris(biphenyl-4-yl)arsane top
Crystal data top
C36H27AsF(000) = 1104
Mr = 534.50Dx = 1.363 Mg m3
Monoclinic, PcMo Kα radiation, λ = 0.71073 Å
Hall symbol: P -2ycCell parameters from 4340 reflections
a = 17.3718 (19) Åθ = 2.4–26.2°
b = 5.9561 (8) ŵ = 1.33 mm1
c = 27.727 (3) ÅT = 100 K
β = 114.762 (5)°Needle, colourless
V = 2605.1 (5) Å30.33 × 0.07 × 0.03 mm
Z = 4
Data collection top
Bruker APEXII DUO CCD area-detector
diffractometer
11576 independent reflections
Radiation source: fine-focus sealed tube8126 reflections with I > 2σ(I)'
Graphite monochromatorRint = 0.057
ϕ and ω scansθmax = 27.5°, θmin = 1.6°
Absorption correction: multi-scan
(SADABS; Bruker, 2009)
h = 2222
Tmin = 0.671, Tmax = 0.961k = 77
23087 measured reflectionsl = 3536
Refinement top
Refinement on F2Secondary atom site location: difference Fourier map
Least-squares matrix: fullHydrogen site location: inferred from neighbouring sites
R[F2 > 2σ(F2)] = 0.045H-atom parameters constrained
wR(F2) = 0.093 w = 1/[σ2(Fo2) + (0.0318P)2]
where P = (Fo2 + 2Fc2)/3
S = 1.01(Δ/σ)max < 0.001
11576 reflectionsΔρmax = 0.56 e Å3
668 parametersΔρmin = 0.75 e Å3
2 restraintsAbsolute structure: Flack (1983), 5634 Friedel pairs
Primary atom site location: structure-invariant direct methodsAbsolute structure parameter: 0.461 (7)
Crystal data top
C36H27AsV = 2605.1 (5) Å3
Mr = 534.50Z = 4
Monoclinic, PcMo Kα radiation
a = 17.3718 (19) ŵ = 1.33 mm1
b = 5.9561 (8) ÅT = 100 K
c = 27.727 (3) Å0.33 × 0.07 × 0.03 mm
β = 114.762 (5)°
Data collection top
Bruker APEXII DUO CCD area-detector
diffractometer
11576 independent reflections
Absorption correction: multi-scan
(SADABS; Bruker, 2009)
8126 reflections with I > 2σ(I)'
Tmin = 0.671, Tmax = 0.961Rint = 0.057
23087 measured reflections
Refinement top
R[F2 > 2σ(F2)] = 0.045H-atom parameters constrained
wR(F2) = 0.093Δρmax = 0.56 e Å3
S = 1.01Δρmin = 0.75 e Å3
11576 reflectionsAbsolute structure: Flack (1983), 5634 Friedel pairs
668 parametersAbsolute structure parameter: 0.461 (7)
2 restraints
Special details top

Experimental. The crystal was placed in the cold stream of an Oxford Cryosystems Cobra open-flow nitrogen cryostat (Cosier & Glazer, 1986) operating at 100.0 (1) K.

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.

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 > 2sigma(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) top
xyzUiso*/Ueq
As1A0.194411 (19)0.60795 (9)0.860597 (14)0.01986 (13)
C1A0.0224 (3)0.2913 (8)0.90946 (16)0.0243 (10)
H1A0.03050.32820.90810.029*
C2A0.0615 (3)0.4369 (8)0.88744 (16)0.0239 (11)
H2A0.03450.57010.87190.029*
C3A0.1404 (3)0.3872 (9)0.88811 (19)0.0193 (13)
C4A0.1800 (3)0.1885 (8)0.91370 (15)0.0215 (10)
H4A0.23350.15270.91590.026*
C5A0.1410 (3)0.0459 (7)0.93548 (15)0.0212 (10)
H5A0.16870.08500.95200.025*
C6A0.0607 (3)0.0928 (8)0.93336 (15)0.0176 (9)
C7A0.0188 (3)0.0670 (8)0.95564 (16)0.0237 (10)
C8A0.0649 (3)0.2009 (8)0.99967 (16)0.0273 (10)
H8A0.12360.18761.01580.033*
C9A0.0260 (3)0.3526 (8)1.02006 (18)0.0346 (12)
H9A0.05850.43931.04950.042*
C10A0.0613 (3)0.3752 (9)0.99666 (19)0.0397 (13)
H10A0.08820.47411.01060.048*
C11A0.1079 (4)0.2480 (10)0.9522 (2)0.0341 (14)
H11A0.16640.26530.93570.041*
C12A0.0698 (3)0.0975 (9)0.9320 (2)0.0288 (13)
H12A0.10280.01370.90220.035*
C13A0.0044 (3)0.9509 (8)0.73934 (16)0.0196 (10)
H13A0.02941.09080.73700.024*
C14A0.0582 (2)0.8804 (8)0.78741 (15)0.0231 (9)
H14A0.07370.97410.81680.028*
C15A0.0985 (3)0.6743 (8)0.79307 (18)0.0194 (11)
C16A0.0697 (3)0.5329 (8)0.74858 (16)0.0224 (10)
H16A0.09380.39140.75120.027*
C17A0.0061 (3)0.6006 (8)0.70083 (16)0.0225 (9)
H17A0.01300.50150.67230.027*
C18A0.0302 (3)0.8138 (8)0.69438 (16)0.0200 (9)
C19A0.0926 (2)0.8984 (8)0.64179 (15)0.0220 (9)
C20A0.0917 (3)0.8198 (10)0.59537 (18)0.0487 (16)
H20A0.05290.70980.59660.058*
C21A0.1487 (4)0.9040 (11)0.54635 (19)0.063 (2)
H21A0.14720.85110.51520.075*
C22A0.2074 (3)1.0657 (10)0.54385 (18)0.0485 (16)
H22A0.24571.12070.51120.058*
C23A0.2088 (3)1.1427 (8)0.58916 (17)0.0283 (11)
H23A0.24851.25030.58770.034*
C24A0.1514 (3)1.0629 (8)0.63790 (17)0.0275 (11)
H24A0.15231.12100.66880.033*
C25A0.3887 (3)0.4234 (8)0.81806 (15)0.0216 (10)
H25A0.43780.49630.82080.026*
C26A0.3378 (3)0.5241 (8)0.83881 (15)0.0216 (10)
H26A0.35350.66330.85520.026*
C27A0.2637 (3)0.4242 (8)0.83604 (16)0.0189 (11)
C28A0.2452 (3)0.2124 (8)0.81276 (16)0.0212 (10)
H28A0.19710.13800.81110.025*
C29A0.2958 (3)0.1095 (8)0.79215 (17)0.0216 (10)
H29A0.28150.03290.77730.026*
C30A0.3684 (3)0.2149 (8)0.79310 (15)0.0183 (9)
C31A0.4232 (2)0.1064 (8)0.77069 (14)0.0181 (9)
C32A0.3995 (3)0.0934 (8)0.74170 (16)0.0230 (10)
H32A0.34760.15810.73580.028*
C33A0.4514 (3)0.1994 (9)0.72121 (18)0.0281 (12)
H33A0.43490.33480.70310.034*
C34A0.5278 (3)0.1000 (8)0.72826 (15)0.0245 (10)
H34A0.56250.16730.71440.029*
C35A0.5515 (3)0.0987 (8)0.75584 (16)0.0279 (10)
H35A0.60230.16610.76030.033*
C36A0.5009 (3)0.2000 (8)0.77705 (16)0.0249 (10)
H36A0.51890.33320.79600.030*
As1B0.42591 (2)0.11085 (9)0.505294 (14)0.02100 (13)
C1B0.5352 (3)0.1100 (9)0.40554 (17)0.0323 (11)
H1BA0.53530.05480.37420.039*
C2B0.4891 (3)0.0029 (8)0.42850 (16)0.0280 (11)
H2BA0.45970.13280.41270.034*
C3B0.4866 (3)0.0761 (9)0.4747 (2)0.0210 (12)
C4B0.5299 (3)0.2709 (8)0.49691 (18)0.0355 (13)
H4BA0.52770.32910.52740.043*
C6B0.5810 (3)0.3018 (8)0.42787 (17)0.0195 (10)
C7B0.6335 (3)0.4195 (8)0.40412 (15)0.0202 (9)
C8B0.6727 (3)0.6205 (9)0.4241 (2)0.0333 (15)
H8BA0.66640.68630.45260.040*
C9B0.7224 (4)0.7278 (11)0.4019 (2)0.0391 (15)
H9BA0.74910.86290.41610.047*
C10B0.7315 (3)0.6348 (10)0.35979 (18)0.0393 (13)
H10B0.76430.70620.34520.047*
C11B0.6919 (3)0.4344 (9)0.33885 (18)0.0390 (13)
H11B0.69790.37040.31000.047*
C12B0.6430 (3)0.3281 (9)0.36081 (17)0.0336 (12)
H12B0.61620.19340.34630.040*
C13B0.3642 (2)0.2341 (7)0.61791 (15)0.0207 (10)
H13B0.37830.22220.65410.025*
C14B0.4049 (2)0.0969 (8)0.59546 (14)0.0205 (9)
H14B0.44500.00650.61650.025*
C15B0.3863 (3)0.1127 (8)0.54223 (17)0.0201 (11)
C16B0.3278 (3)0.2738 (8)0.51198 (16)0.0238 (10)
H16B0.31650.29060.47630.029*
C17B0.2864 (3)0.4092 (8)0.53410 (16)0.0238 (10)
H17B0.24720.51450.51300.029*
C18B0.3027 (3)0.3896 (8)0.58774 (17)0.0187 (10)
C19B0.2561 (3)0.5226 (8)0.61262 (16)0.0191 (10)
C20B0.2213 (3)0.7349 (8)0.59293 (17)0.0265 (11)
H20B0.22840.79580.56420.032*
C21B0.1770 (3)0.8532 (8)0.61548 (18)0.0315 (11)
H21B0.15430.99290.60200.038*
C22B0.1660 (3)0.7640 (9)0.6586 (2)0.0331 (13)
H22B0.13550.84380.67360.040*
C23B0.2001 (3)0.5589 (8)0.67895 (18)0.0292 (11)
H23B0.19360.50050.70810.035*
C24B0.2442 (3)0.4392 (7)0.65571 (16)0.0219 (10)
H24B0.26640.29930.66940.026*
C25B0.6718 (3)0.3161 (8)0.61583 (16)0.0244 (10)
H25B0.72790.29260.62150.029*
C26B0.6075 (3)0.2017 (7)0.57495 (16)0.0219 (9)
H26B0.62070.10310.55350.026*
C27B0.5232 (3)0.2357 (8)0.56627 (18)0.0201 (11)
C28B0.5052 (2)0.3878 (7)0.59828 (14)0.0194 (9)
H28B0.44920.41620.59200.023*
C29B0.5700 (3)0.4972 (8)0.63944 (16)0.0208 (10)
H29B0.55690.59370.66130.025*
C30B0.6540 (3)0.4650 (8)0.64851 (18)0.0215 (11)
C31B0.7221 (3)0.5891 (8)0.69188 (15)0.0209 (9)
C32B0.7091 (3)0.8021 (8)0.70683 (16)0.0267 (10)
H32B0.65740.87330.68810.032*
C33B0.7726 (3)0.9123 (9)0.74970 (17)0.0325 (12)
H33B0.76271.05530.75930.039*
C34B0.8492 (3)0.8102 (10)0.77748 (17)0.0338 (12)
H34B0.89120.88300.80610.041*
C35B0.8638 (3)0.5993 (10)0.76277 (17)0.0348 (12)
H35B0.91590.52990.78120.042*
C36B0.8010 (3)0.4914 (9)0.72080 (17)0.0272 (11)
H36B0.81170.34860.71140.033*
C56B0.5767 (3)0.3802 (9)0.47409 (19)0.0343 (12)
H56A0.60610.50990.49010.041*
Atomic displacement parameters (Å2) top
U11U22U33U12U13U23
As1A0.0202 (3)0.0222 (3)0.0152 (3)0.0001 (3)0.0055 (2)0.0024 (3)
C1A0.022 (2)0.031 (3)0.021 (2)0.006 (2)0.010 (2)0.003 (2)
C2A0.022 (2)0.027 (3)0.021 (2)0.008 (2)0.0072 (18)0.0036 (19)
C3A0.021 (3)0.026 (3)0.010 (2)0.003 (2)0.006 (2)0.005 (2)
C4A0.018 (2)0.026 (3)0.018 (2)0.0065 (19)0.0052 (18)0.0014 (19)
C5A0.027 (2)0.020 (3)0.012 (2)0.0010 (19)0.0043 (18)0.0027 (17)
C6A0.020 (2)0.020 (3)0.010 (2)0.001 (2)0.0040 (17)0.0006 (19)
C7A0.025 (2)0.025 (3)0.022 (2)0.002 (2)0.0112 (19)0.002 (2)
C8A0.027 (2)0.028 (3)0.020 (2)0.001 (2)0.0039 (19)0.002 (2)
C9A0.038 (3)0.035 (3)0.028 (2)0.000 (2)0.011 (2)0.009 (2)
C10A0.043 (3)0.040 (3)0.038 (3)0.006 (3)0.018 (2)0.008 (3)
C11A0.029 (3)0.042 (4)0.034 (3)0.012 (3)0.016 (2)0.001 (3)
C12A0.019 (2)0.042 (4)0.021 (2)0.001 (3)0.004 (2)0.003 (2)
C13A0.024 (2)0.018 (3)0.020 (2)0.004 (2)0.012 (2)0.003 (2)
C14A0.026 (2)0.025 (3)0.021 (2)0.008 (2)0.0121 (18)0.009 (2)
C15A0.021 (2)0.020 (3)0.022 (2)0.004 (2)0.014 (2)0.003 (2)
C16A0.024 (2)0.021 (2)0.022 (2)0.0019 (19)0.0093 (19)0.0019 (19)
C17A0.030 (2)0.020 (2)0.018 (2)0.000 (2)0.0109 (18)0.006 (2)
C18A0.019 (2)0.019 (2)0.021 (2)0.0030 (18)0.0086 (19)0.0041 (19)
C19A0.021 (2)0.025 (2)0.019 (2)0.003 (2)0.0061 (17)0.001 (2)
C20A0.065 (4)0.054 (4)0.021 (2)0.035 (3)0.012 (2)0.002 (2)
C21A0.083 (4)0.076 (5)0.019 (3)0.048 (4)0.011 (3)0.001 (3)
C22A0.055 (3)0.058 (4)0.017 (2)0.023 (3)0.000 (2)0.004 (3)
C23A0.025 (2)0.033 (3)0.026 (2)0.008 (2)0.010 (2)0.005 (2)
C24A0.030 (3)0.033 (3)0.021 (2)0.001 (2)0.011 (2)0.000 (2)
C25A0.020 (2)0.030 (3)0.016 (2)0.001 (2)0.0076 (17)0.0003 (19)
C26A0.022 (2)0.022 (3)0.015 (2)0.0044 (19)0.0025 (18)0.0039 (19)
C27A0.022 (3)0.021 (3)0.008 (2)0.001 (2)0.0004 (19)0.0051 (19)
C28A0.020 (2)0.023 (3)0.020 (2)0.005 (2)0.0087 (19)0.003 (2)
C29A0.024 (2)0.020 (2)0.024 (3)0.002 (2)0.013 (2)0.001 (2)
C30A0.021 (2)0.024 (3)0.0082 (19)0.006 (2)0.0052 (17)0.0048 (19)
C31A0.021 (2)0.021 (2)0.0103 (18)0.000 (2)0.0048 (16)0.0037 (19)
C32A0.028 (2)0.020 (3)0.023 (2)0.000 (2)0.013 (2)0.001 (2)
C33A0.033 (3)0.031 (3)0.019 (2)0.000 (2)0.009 (2)0.006 (2)
C34A0.025 (2)0.035 (3)0.016 (2)0.007 (2)0.0110 (18)0.004 (2)
C35A0.025 (2)0.041 (3)0.023 (2)0.005 (2)0.0146 (19)0.004 (2)
C36A0.024 (2)0.032 (3)0.021 (2)0.000 (2)0.0116 (19)0.004 (2)
As1B0.0238 (3)0.0237 (3)0.0139 (2)0.0034 (3)0.0064 (2)0.0017 (3)
C1B0.048 (3)0.034 (3)0.021 (2)0.014 (3)0.020 (2)0.009 (2)
C2B0.036 (3)0.028 (3)0.018 (2)0.011 (2)0.009 (2)0.010 (2)
C3B0.024 (3)0.021 (3)0.016 (3)0.004 (2)0.006 (2)0.003 (2)
C4B0.069 (4)0.026 (3)0.023 (2)0.016 (3)0.031 (3)0.015 (2)
C6B0.024 (2)0.023 (3)0.013 (2)0.001 (2)0.0090 (19)0.001 (2)
C7B0.021 (2)0.024 (3)0.014 (2)0.001 (2)0.0065 (17)0.0011 (19)
C8B0.044 (4)0.034 (4)0.028 (3)0.008 (3)0.021 (3)0.005 (3)
C9B0.041 (3)0.044 (4)0.032 (3)0.005 (3)0.015 (3)0.007 (3)
C10B0.033 (3)0.056 (4)0.032 (3)0.003 (3)0.016 (2)0.014 (3)
C11B0.048 (3)0.052 (4)0.024 (2)0.005 (3)0.022 (2)0.001 (2)
C12B0.041 (3)0.039 (3)0.027 (2)0.003 (3)0.020 (2)0.004 (2)
C13B0.026 (2)0.025 (3)0.0091 (19)0.002 (2)0.0049 (17)0.0058 (18)
C14B0.021 (2)0.026 (2)0.0121 (18)0.002 (2)0.0037 (16)0.0028 (19)
C15B0.017 (2)0.026 (3)0.014 (2)0.005 (2)0.0028 (19)0.002 (2)
C16B0.027 (2)0.027 (3)0.014 (2)0.006 (2)0.0055 (19)0.002 (2)
C17B0.023 (2)0.026 (3)0.018 (2)0.002 (2)0.0034 (18)0.005 (2)
C18B0.015 (2)0.020 (2)0.020 (2)0.003 (2)0.0070 (18)0.001 (2)
C19B0.016 (2)0.022 (3)0.018 (2)0.0008 (19)0.0058 (18)0.0010 (19)
C20B0.031 (3)0.022 (3)0.025 (2)0.001 (2)0.010 (2)0.003 (2)
C21B0.033 (3)0.025 (3)0.033 (3)0.005 (2)0.012 (2)0.002 (2)
C22B0.033 (3)0.042 (4)0.029 (3)0.003 (3)0.018 (2)0.001 (3)
C23B0.028 (2)0.035 (3)0.027 (2)0.001 (2)0.014 (2)0.000 (2)
C24B0.024 (2)0.021 (3)0.022 (2)0.0000 (19)0.0108 (19)0.0031 (19)
C25B0.023 (2)0.024 (3)0.026 (2)0.002 (2)0.0107 (19)0.004 (2)
C26B0.027 (2)0.020 (2)0.020 (2)0.004 (2)0.0112 (19)0.0031 (19)
C27B0.025 (2)0.020 (3)0.016 (2)0.000 (2)0.009 (2)0.002 (2)
C28B0.022 (2)0.017 (2)0.0171 (19)0.006 (2)0.0051 (16)0.0068 (19)
C29B0.027 (2)0.017 (2)0.022 (2)0.0008 (19)0.014 (2)0.0042 (19)
C30B0.022 (2)0.019 (3)0.021 (2)0.000 (2)0.006 (2)0.002 (2)
C31B0.022 (2)0.026 (3)0.015 (2)0.005 (2)0.0089 (18)0.004 (2)
C32B0.030 (2)0.030 (3)0.024 (2)0.002 (2)0.015 (2)0.000 (2)
C33B0.043 (3)0.036 (3)0.028 (2)0.016 (3)0.023 (2)0.010 (2)
C34B0.032 (3)0.052 (4)0.020 (2)0.019 (3)0.014 (2)0.007 (2)
C35B0.027 (3)0.051 (4)0.028 (2)0.000 (3)0.013 (2)0.014 (3)
C36B0.027 (3)0.026 (3)0.025 (2)0.004 (2)0.008 (2)0.005 (2)
C56B0.053 (3)0.024 (3)0.037 (3)0.018 (3)0.030 (3)0.010 (2)
Geometric parameters (Å, º) top
As1A—C3A1.947 (5)As1B—C3B1.954 (5)
As1A—C27A1.949 (5)As1B—C27B1.968 (5)
As1A—C15A1.955 (5)As1B—C15B1.971 (5)
C1A—C6A1.382 (6)C1B—C6B1.381 (6)
C1A—C2A1.391 (6)C1B—C2B1.387 (6)
C1A—H1A0.9300C1B—H1BA0.9300
C2A—C3A1.394 (6)C2B—C3B1.383 (6)
C2A—H2A0.9300C2B—H2BA0.9300
C3A—C4A1.403 (6)C3B—C4B1.380 (7)
C4A—C5A1.373 (6)C4B—C56B1.383 (6)
C4A—H4A0.9300C4B—H4BA0.9300
C5A—C6A1.400 (6)C6B—C56B1.395 (6)
C5A—H5A0.9300C6B—C7B1.503 (6)
C6A—C7A1.482 (6)C7B—C8B1.374 (7)
C7A—C8A1.396 (6)C7B—C12B1.390 (6)
C7A—C12A1.409 (6)C8B—C9B1.405 (7)
C8A—C9A1.383 (6)C8B—H8BA0.9300
C8A—H8A0.9300C9B—C10B1.360 (7)
C9A—C10A1.384 (6)C9B—H9BA0.9300
C9A—H9A0.9300C10B—C11B1.379 (7)
C10A—C11A1.383 (7)C10B—H10B0.9300
C10A—H10A0.9300C11B—C12B1.387 (6)
C11A—C12A1.365 (7)C11B—H11B0.9300
C11A—H11A0.9300C12B—H12B0.9300
C12A—H12A0.9300C13B—C14B1.387 (5)
C13A—C14A1.386 (6)C13B—C18B1.396 (6)
C13A—C18A1.398 (6)C13B—H13B0.9300
C13A—H13A0.9300C14B—C15B1.376 (6)
C14A—C15A1.390 (6)C14B—H14B0.9300
C14A—H14A0.9300C15B—C16B1.393 (6)
C15A—C16A1.401 (6)C16B—C17B1.384 (6)
C16A—C17A1.383 (5)C16B—H16B0.9300
C16A—H16A0.9300C17B—C18B1.397 (5)
C17A—C18A1.395 (6)C17B—H17B0.9300
C17A—H17A0.9300C18B—C19B1.493 (6)
C18A—C19A1.494 (5)C19B—C24B1.387 (5)
C19A—C20A1.376 (6)C19B—C20B1.409 (6)
C19A—C24A1.387 (6)C20B—C21B1.372 (6)
C20A—C21A1.397 (7)C20B—H20B0.9300
C20A—H20A0.9300C21B—C22B1.391 (7)
C21A—C22A1.384 (7)C21B—H21B0.9300
C21A—H21A0.9300C22B—C23B1.372 (7)
C22A—C23A1.347 (6)C22B—H22B0.9300
C22A—H22A0.9300C23B—C24B1.387 (6)
C23A—C24A1.385 (6)C23B—H23B0.9300
C23A—H23A0.9300C24B—H24B0.9300
C24A—H24A0.9300C25B—C26B1.391 (6)
C25A—C26A1.378 (6)C25B—C30B1.392 (6)
C25A—C30A1.393 (6)C25B—H25B0.9300
C25A—H25A0.9300C26B—C27B1.397 (6)
C26A—C27A1.391 (6)C26B—H26B0.9300
C26A—H26A0.9300C27B—C28B1.392 (6)
C27A—C28A1.392 (6)C28B—C29B1.384 (6)
C28A—C29A1.378 (6)C28B—H28B0.9300
C28A—H28A0.9300C29B—C30B1.387 (6)
C29A—C30A1.399 (6)C29B—H29B0.9300
C29A—H29A0.9300C30B—C31B1.483 (6)
C30A—C31A1.484 (6)C31B—C32B1.382 (6)
C31A—C32A1.398 (6)C31B—C36B1.394 (6)
C31A—C36A1.402 (6)C32B—C33B1.401 (6)
C32A—C33A1.401 (6)C32B—H32B0.9300
C32A—H32A0.9300C33B—C34B1.370 (7)
C33A—C34A1.390 (6)C33B—H33B0.9300
C33A—H33A0.9300C34B—C35B1.376 (7)
C34A—C35A1.375 (6)C34B—H34B0.9300
C34A—H34A0.9300C35B—C36B1.376 (6)
C35A—C36A1.383 (6)C35B—H35B0.9300
C35A—H35A0.9300C36B—H36B0.9300
C36A—H36A0.9300C56B—H56A0.9300
C3A—As1A—C27A103.1 (2)C3B—As1B—C27B99.4 (2)
C3A—As1A—C15A98.9 (2)C3B—As1B—C15B102.1 (2)
C27A—As1A—C15A100.48 (18)C27B—As1B—C15B99.78 (19)
C6A—C1A—C2A121.2 (4)C6B—C1B—C2B122.0 (4)
C6A—C1A—H1A119.4C6B—C1B—H1BA119.0
C2A—C1A—H1A119.4C2B—C1B—H1BA119.0
C1A—C2A—C3A121.3 (4)C3B—C2B—C1B120.6 (5)
C1A—C2A—H2A119.3C3B—C2B—H2BA119.7
C3A—C2A—H2A119.3C1B—C2B—H2BA119.7
C2A—C3A—C4A117.2 (5)C4B—C3B—C2B118.4 (5)
C2A—C3A—As1A118.9 (4)C4B—C3B—As1B125.3 (4)
C4A—C3A—As1A123.6 (4)C2B—C3B—As1B116.1 (4)
C5A—C4A—C3A121.1 (4)C3B—C4B—C56B120.4 (4)
C5A—C4A—H4A119.5C3B—C4B—H4BA119.8
C3A—C4A—H4A119.5C56B—C4B—H4BA119.8
C4A—C5A—C6A121.6 (4)C1B—C6B—C56B116.5 (4)
C4A—C5A—H5A119.2C1B—C6B—C7B122.0 (4)
C6A—C5A—H5A119.2C56B—C6B—C7B121.5 (4)
C1A—C6A—C5A117.5 (4)C8B—C7B—C12B118.0 (4)
C1A—C6A—C7A121.8 (4)C8B—C7B—C6B121.3 (4)
C5A—C6A—C7A120.7 (4)C12B—C7B—C6B120.6 (4)
C8A—C7A—C12A116.6 (4)C7B—C8B—C9B120.9 (5)
C8A—C7A—C6A121.9 (4)C7B—C8B—H8BA119.6
C12A—C7A—C6A121.4 (4)C9B—C8B—H8BA119.6
C9A—C8A—C7A122.0 (4)C10B—C9B—C8B120.2 (6)
C9A—C8A—H8A119.0C10B—C9B—H9BA119.9
C7A—C8A—H8A119.0C8B—C9B—H9BA119.9
C8A—C9A—C10A120.0 (4)C9B—C10B—C11B119.8 (5)
C8A—C9A—H9A120.0C9B—C10B—H10B120.1
C10A—C9A—H9A120.0C11B—C10B—H10B120.1
C11A—C10A—C9A118.8 (5)C10B—C11B—C12B120.0 (5)
C11A—C10A—H10A120.6C10B—C11B—H11B120.0
C9A—C10A—H10A120.6C12B—C11B—H11B120.0
C12A—C11A—C10A121.5 (5)C11B—C12B—C7B121.1 (5)
C12A—C11A—H11A119.3C11B—C12B—H12B119.5
C10A—C11A—H11A119.3C7B—C12B—H12B119.5
C11A—C12A—C7A121.1 (5)C14B—C13B—C18B121.8 (4)
C11A—C12A—H12A119.4C14B—C13B—H13B119.1
C7A—C12A—H12A119.4C18B—C13B—H13B119.1
C14A—C13A—C18A120.7 (4)C15B—C14B—C13B120.4 (4)
C14A—C13A—H13A119.6C15B—C14B—H14B119.8
C18A—C13A—H13A119.6C13B—C14B—H14B119.8
C13A—C14A—C15A122.1 (4)C14B—C15B—C16B118.5 (4)
C13A—C14A—H14A119.0C14B—C15B—As1B122.3 (4)
C15A—C14A—H14A119.0C16B—C15B—As1B118.5 (3)
C14A—C15A—C16A117.0 (4)C17B—C16B—C15B121.2 (4)
C14A—C15A—As1A118.3 (3)C17B—C16B—H16B119.4
C16A—C15A—As1A124.6 (4)C15B—C16B—H16B119.4
C17A—C16A—C15A121.0 (4)C16B—C17B—C18B120.8 (4)
C17A—C16A—H16A119.5C16B—C17B—H17B119.6
C15A—C16A—H16A119.5C18B—C17B—H17B119.6
C16A—C17A—C18A121.7 (4)C13B—C18B—C17B117.2 (4)
C16A—C17A—H17A119.2C13B—C18B—C19B120.1 (4)
C18A—C17A—H17A119.2C17B—C18B—C19B122.7 (4)
C17A—C18A—C13A117.3 (4)C24B—C19B—C20B117.4 (4)
C17A—C18A—C19A122.4 (4)C24B—C19B—C18B120.9 (4)
C13A—C18A—C19A120.3 (4)C20B—C19B—C18B121.7 (4)
C20A—C19A—C24A117.7 (4)C21B—C20B—C19B121.0 (4)
C20A—C19A—C18A120.7 (4)C21B—C20B—H20B119.5
C24A—C19A—C18A121.6 (4)C19B—C20B—H20B119.5
C19A—C20A—C21A120.4 (5)C20B—C21B—C22B120.0 (5)
C19A—C20A—H20A119.8C20B—C21B—H21B120.0
C21A—C20A—H20A119.8C22B—C21B—H21B120.0
C22A—C21A—C20A120.4 (5)C23B—C22B—C21B120.2 (5)
C22A—C21A—H21A119.8C23B—C22B—H22B119.9
C20A—C21A—H21A119.8C21B—C22B—H22B119.9
C23A—C22A—C21A119.4 (5)C22B—C23B—C24B119.5 (4)
C23A—C22A—H22A120.3C22B—C23B—H23B120.2
C21A—C22A—H22A120.3C24B—C23B—H23B120.2
C22A—C23A—C24A120.5 (5)C19B—C24B—C23B121.8 (4)
C22A—C23A—H23A119.8C19B—C24B—H24B119.1
C24A—C23A—H23A119.8C23B—C24B—H24B119.1
C23A—C24A—C19A121.6 (4)C26B—C25B—C30B121.4 (4)
C23A—C24A—H24A119.2C26B—C25B—H25B119.3
C19A—C24A—H24A119.2C30B—C25B—H25B119.3
C26A—C25A—C30A121.4 (4)C25B—C26B—C27B119.7 (4)
C26A—C25A—H25A119.3C25B—C26B—H26B120.1
C30A—C25A—H25A119.3C27B—C26B—H26B120.1
C25A—C26A—C27A122.1 (4)C28B—C27B—C26B118.9 (4)
C25A—C26A—H26A118.9C28B—C27B—As1B116.9 (3)
C27A—C26A—H26A118.9C26B—C27B—As1B123.7 (3)
C26A—C27A—C28A116.2 (4)C29B—C28B—C27B120.7 (4)
C26A—C27A—As1A115.7 (4)C29B—C28B—H28B119.6
C28A—C27A—As1A127.9 (3)C27B—C28B—H28B119.6
C29A—C28A—C27A122.1 (4)C28B—C29B—C30B120.9 (4)
C29A—C28A—H28A118.9C28B—C29B—H29B119.5
C27A—C28A—H28A118.9C30B—C29B—H29B119.5
C28A—C29A—C30A121.3 (4)C29B—C30B—C25B118.3 (4)
C28A—C29A—H29A119.3C29B—C30B—C31B120.0 (4)
C30A—C29A—H29A119.3C25B—C30B—C31B121.7 (4)
C25A—C30A—C29A116.6 (4)C32B—C31B—C36B117.1 (4)
C25A—C30A—C31A121.5 (4)C32B—C31B—C30B121.7 (4)
C29A—C30A—C31A121.8 (4)C36B—C31B—C30B121.1 (4)
C32A—C31A—C36A116.5 (4)C31B—C32B—C33B121.0 (4)
C32A—C31A—C30A121.7 (4)C31B—C32B—H32B119.5
C36A—C31A—C30A121.8 (4)C33B—C32B—H32B119.5
C31A—C32A—C33A122.2 (4)C34B—C33B—C32B120.2 (5)
C31A—C32A—H32A118.9C34B—C33B—H33B119.9
C33A—C32A—H32A118.9C32B—C33B—H33B119.9
C34A—C33A—C32A119.3 (5)C33B—C34B—C35B119.6 (5)
C34A—C33A—H33A120.3C33B—C34B—H34B120.2
C32A—C33A—H33A120.3C35B—C34B—H34B120.2
C35A—C34A—C33A119.4 (4)C36B—C35B—C34B119.9 (5)
C35A—C34A—H34A120.3C36B—C35B—H35B120.0
C33A—C34A—H34A120.3C34B—C35B—H35B120.0
C34A—C35A—C36A121.1 (4)C35B—C36B—C31B122.1 (5)
C34A—C35A—H35A119.5C35B—C36B—H36B118.9
C36A—C35A—H35A119.5C31B—C36B—H36B118.9
C35A—C36A—C31A121.5 (4)C4B—C56B—C6B122.0 (5)
C35A—C36A—H36A119.2C4B—C56B—H56A119.0
C31A—C36A—H36A119.2C6B—C56B—H56A119.0
C6A—C1A—C2A—C3A0.7 (7)C6B—C1B—C2B—C3B0.9 (8)
C1A—C2A—C3A—C4A2.3 (7)C1B—C2B—C3B—C4B0.9 (8)
C1A—C2A—C3A—As1A176.1 (3)C1B—C2B—C3B—As1B175.8 (4)
C27A—As1A—C3A—C2A151.9 (3)C27B—As1B—C3B—C4B70.3 (5)
C15A—As1A—C3A—C2A48.9 (4)C15B—As1B—C3B—C4B31.9 (5)
C27A—As1A—C3A—C4A34.7 (4)C27B—As1B—C3B—C2B106.1 (4)
C15A—As1A—C3A—C4A137.8 (4)C15B—As1B—C3B—C2B151.6 (4)
C2A—C3A—C4A—C5A2.2 (6)C2B—C3B—C4B—C56B1.8 (8)
As1A—C3A—C4A—C5A175.6 (3)As1B—C3B—C4B—C56B174.6 (4)
C3A—C4A—C5A—C6A0.3 (6)C2B—C1B—C6B—C56B1.7 (7)
C2A—C1A—C6A—C5A1.2 (6)C2B—C1B—C6B—C7B177.7 (4)
C2A—C1A—C6A—C7A178.2 (4)C1B—C6B—C7B—C8B174.3 (5)
C4A—C5A—C6A—C1A1.4 (6)C56B—C6B—C7B—C8B6.3 (7)
C4A—C5A—C6A—C7A178.1 (4)C1B—C6B—C7B—C12B5.1 (7)
C1A—C6A—C7A—C8A148.3 (4)C56B—C6B—C7B—C12B174.3 (5)
C5A—C6A—C7A—C8A32.2 (6)C12B—C7B—C8B—C9B1.2 (8)
C1A—C6A—C7A—C12A34.2 (7)C6B—C7B—C8B—C9B179.3 (5)
C5A—C6A—C7A—C12A145.3 (5)C7B—C8B—C9B—C10B0.7 (9)
C12A—C7A—C8A—C9A1.4 (7)C8B—C9B—C10B—C11B0.1 (8)
C6A—C7A—C8A—C9A179.0 (4)C9B—C10B—C11B—C12B0.1 (8)
C7A—C8A—C9A—C10A0.0 (7)C10B—C11B—C12B—C7B0.4 (8)
C8A—C9A—C10A—C11A1.6 (8)C8B—C7B—C12B—C11B1.1 (7)
C9A—C10A—C11A—C12A1.8 (8)C6B—C7B—C12B—C11B179.5 (4)
C10A—C11A—C12A—C7A0.4 (9)C18B—C13B—C14B—C15B0.9 (7)
C8A—C7A—C12A—C11A1.2 (8)C13B—C14B—C15B—C16B1.9 (6)
C6A—C7A—C12A—C11A178.8 (5)C13B—C14B—C15B—As1B168.8 (3)
C18A—C13A—C14A—C15A0.8 (7)C3B—As1B—C15B—C14B124.3 (4)
C13A—C14A—C15A—C16A3.7 (6)C27B—As1B—C15B—C14B22.4 (4)
C13A—C14A—C15A—As1A173.2 (3)C3B—As1B—C15B—C16B64.9 (4)
C3A—As1A—C15A—C14A107.7 (4)C27B—As1B—C15B—C16B166.8 (4)
C27A—As1A—C15A—C14A147.1 (4)C14B—C15B—C16B—C17B2.7 (7)
C3A—As1A—C15A—C16A75.6 (4)As1B—C15B—C16B—C17B168.4 (3)
C27A—As1A—C15A—C16A29.6 (4)C15B—C16B—C17B—C18B0.6 (7)
C14A—C15A—C16A—C17A2.3 (6)C14B—C13B—C18B—C17B2.9 (6)
As1A—C15A—C16A—C17A174.4 (3)C14B—C13B—C18B—C19B175.7 (4)
C15A—C16A—C17A—C18A2.0 (6)C16B—C17B—C18B—C13B2.1 (6)
C16A—C17A—C18A—C13A4.9 (6)C16B—C17B—C18B—C19B176.4 (4)
C16A—C17A—C18A—C19A173.6 (4)C13B—C18B—C19B—C24B27.3 (6)
C14A—C13A—C18A—C17A3.5 (6)C17B—C18B—C19B—C24B151.1 (4)
C14A—C13A—C18A—C19A175.1 (4)C13B—C18B—C19B—C20B153.7 (4)
C17A—C18A—C19A—C20A27.3 (7)C17B—C18B—C19B—C20B27.8 (6)
C13A—C18A—C19A—C20A151.2 (5)C24B—C19B—C20B—C21B0.4 (6)
C17A—C18A—C19A—C24A154.8 (4)C18B—C19B—C20B—C21B178.6 (4)
C13A—C18A—C19A—C24A26.8 (6)C19B—C20B—C21B—C22B0.2 (7)
C24A—C19A—C20A—C21A0.2 (8)C20B—C21B—C22B—C23B0.6 (7)
C18A—C19A—C20A—C21A178.3 (5)C21B—C22B—C23B—C24B1.1 (7)
C19A—C20A—C21A—C22A0.8 (10)C20B—C19B—C24B—C23B0.2 (6)
C20A—C21A—C22A—C23A0.5 (10)C18B—C19B—C24B—C23B179.1 (4)
C21A—C22A—C23A—C24A0.7 (9)C22B—C23B—C24B—C19B0.9 (7)
C22A—C23A—C24A—C19A1.7 (8)C30B—C25B—C26B—C27B0.1 (6)
C20A—C19A—C24A—C23A1.4 (7)C25B—C26B—C27B—C28B1.3 (6)
C18A—C19A—C24A—C23A179.5 (4)C25B—C26B—C27B—As1B173.0 (3)
C30A—C25A—C26A—C27A0.0 (6)C3B—As1B—C27B—C28B178.3 (4)
C25A—C26A—C27A—C28A2.2 (6)C15B—As1B—C27B—C28B77.6 (4)
C25A—C26A—C27A—As1A173.5 (3)C3B—As1B—C27B—C26B6.4 (4)
C3A—As1A—C27A—C26A149.4 (3)C15B—As1B—C27B—C26B110.5 (4)
C15A—As1A—C27A—C26A108.8 (3)C26B—C27B—C28B—C29B2.5 (6)
C3A—As1A—C27A—C28A35.5 (4)As1B—C27B—C28B—C29B174.8 (3)
C15A—As1A—C27A—C28A66.3 (4)C27B—C28B—C29B—C30B2.6 (7)
C26A—C27A—C28A—C29A1.8 (6)C28B—C29B—C30B—C25B1.3 (7)
As1A—C27A—C28A—C29A173.2 (3)C28B—C29B—C30B—C31B178.2 (4)
C27A—C28A—C29A—C30A0.8 (6)C26B—C25B—C30B—C29B0.1 (7)
C26A—C25A—C30A—C29A2.5 (6)C26B—C25B—C30B—C31B179.5 (4)
C26A—C25A—C30A—C31A180.0 (4)C29B—C30B—C31B—C32B31.7 (6)
C28A—C29A—C30A—C25A2.9 (6)C25B—C30B—C31B—C32B147.8 (4)
C28A—C29A—C30A—C31A179.6 (4)C29B—C30B—C31B—C36B145.6 (4)
C25A—C30A—C31A—C32A174.5 (4)C25B—C30B—C31B—C36B34.9 (6)
C29A—C30A—C31A—C32A8.1 (6)C36B—C31B—C32B—C33B0.8 (6)
C25A—C30A—C31A—C36A4.9 (6)C30B—C31B—C32B—C33B176.6 (4)
C29A—C30A—C31A—C36A172.5 (4)C31B—C32B—C33B—C34B0.3 (6)
C36A—C31A—C32A—C33A1.8 (6)C32B—C33B—C34B—C35B0.5 (6)
C30A—C31A—C32A—C33A178.8 (4)C33B—C34B—C35B—C36B0.8 (7)
C31A—C32A—C33A—C34A2.1 (7)C34B—C35B—C36B—C31B0.3 (7)
C32A—C33A—C34A—C35A0.9 (7)C32B—C31B—C36B—C35B0.5 (6)
C33A—C34A—C35A—C36A0.6 (6)C30B—C31B—C36B—C35B176.9 (4)
C34A—C35A—C36A—C31A0.9 (7)C3B—C4B—C56B—C6B1.0 (8)
C32A—C31A—C36A—C35A0.3 (6)C1B—C6B—C56B—C4B0.7 (8)
C30A—C31A—C36A—C35A179.6 (4)C7B—C6B—C56B—C4B178.7 (5)
Hydrogen-bond geometry (Å, º) top
Cg1, Cg2, Cg3, Cg4, Cg5, Cg6 and Cg7 are the centroids of the C25B–C30B, C19B–C24B, C7B–C12B, C31A–C36A, C1A–C6A, C31B–C36B and C13B–C18B benzene rings, respectively.
D—H···AD—HH···AD···AD—H···A
C4B—H4BA···Cg1i0.932.773.583 (6)147
C9A—H9A···Cg2ii0.932.993.872 (6)160
C11A—H11A···Cg3iii0.932.883.723 (7)153
C13B—H13B···Cg40.932.793.596 (5)147
C14A—H14A···Cg5i0.932.933.834 (5)172
C24A—H24A···Cg6iv0.932.703.582 (6)160
C28B—H28B···Cg7v0.932.563.313 (6)139
C36A—H36A···Cg3vi0.932.963.651 (6)133
Symmetry codes: (i) x, y+1, z; (ii) x, y, z+1/2; (iii) x1, y, z+1/2; (iv) x1, y+2, z; (v) x, y1, z; (vi) x, y+1, z+1/2.

Experimental details

Crystal data
Chemical formulaC36H27As
Mr534.50
Crystal system, space groupMonoclinic, Pc
Temperature (K)100
a, b, c (Å)17.3718 (19), 5.9561 (8), 27.727 (3)
β (°) 114.762 (5)
V3)2605.1 (5)
Z4
Radiation typeMo Kα
µ (mm1)1.33
Crystal size (mm)0.33 × 0.07 × 0.03
Data collection
DiffractometerBruker APEXII DUO CCD area-detector
diffractometer
Absorption correctionMulti-scan
(SADABS; Bruker, 2009)
Tmin, Tmax0.671, 0.961
No. of measured, independent and
observed [I > 2σ(I)'] reflections
23087, 11576, 8126
Rint0.057
(sin θ/λ)max1)0.650
Refinement
R[F2 > 2σ(F2)], wR(F2), S 0.045, 0.093, 1.01
No. of reflections11576
No. of parameters668
No. of restraints2
H-atom treatmentH-atom parameters constrained
Δρmax, Δρmin (e Å3)0.56, 0.75
Absolute structureFlack (1983), 5634 Friedel pairs
Absolute structure parameter0.461 (7)

Computer programs: APEX2 (Bruker, 2009), SAINT (Bruker, 2009), SHELXTL (Sheldrick, 2008) and PLATON (Spek, 2009).

Hydrogen-bond geometry (Å, º) top
Cg1, Cg2, Cg3, Cg4, Cg5, Cg6 and Cg7 are the centroids of the C25B–C30B, C19B–C24B, C7B–C12B, C31A–C36A, C1A–C6A, C31B–C36B and C13B–C18B benzene rings, respectively.
D—H···AD—HH···AD···AD—H···A
C4B—H4BA···Cg1i0.932.773.583 (6)147
C9A—H9A···Cg2ii0.932.993.872 (6)160
C11A—H11A···Cg3iii0.932.883.723 (7)153
C13B—H13B···Cg40.932.793.596 (5)147
C14A—H14A···Cg5i0.932.933.834 (5)172
C24A—H24A···Cg6iv0.932.703.582 (6)160
C28B—H28B···Cg7v0.932.563.313 (6)139
C36A—H36A···Cg3vi0.932.963.651 (6)133
Symmetry codes: (i) x, y+1, z; (ii) x, y, z+1/2; (iii) x1, y, z+1/2; (iv) x1, y+2, z; (v) x, y1, z; (vi) x, y+1, z+1/2.
 

Footnotes

Thomson Reuters ResearcherID: B-6034-2009. On secondment to: Multimedia University, Melaka Campus, Jalan Ayer Keroh Lama, 74750 Melaka, Malaysia.

§Thomson Reuters ResearcherID: E-2833-2010. Current address: Department of Chemistry, Gokhale Centenary College, Ankola 581 314, NK, Karnataka, India.

Thomson Reuters ResearcherID: A-5523-2009.

‡‡Thomson Reuters ResearcherID: A-3561-2009. Additional correspondence author, e-mail: hkfun@usm.my.

Acknowledgements

The authors would like to thank the Malaysian Government and Universiti Sains Malaysia (USM) for the Research Grant 1001/PJJAUH/811115. IAK is grateful to USM for a Visiting Researcher position. SSS thanks USM for the G A position. HKF and CSY thank USM for the Research University Grant No. 1001/PFIZIK/811160.

References

First citationBruker (2009). APEX2, SAINT and SADABS. Bruker AXS Inc., Madison, Wisconsin, USA.  Google Scholar
First citationCosier, J. & Glazer, A. M. (1986). J. Appl. Cryst. 19, 105–107.  CrossRef CAS Web of Science IUCr Journals Google Scholar
First citationCullen, W. R., Rettig, S. J. & Zheng, T. C. (1995). Organometallics, 14, 1466–1470.  CSD CrossRef CAS Web of Science Google Scholar
First citationFlack, H. D. (1983). Acta Cryst. A39, 876–881.  CrossRef CAS Web of Science IUCr Journals Google Scholar
First citationShawkataly, O. bin, Khan, I. A., Yeap, C. S. & Fun, H.-K. (2010a). Acta Cryst. E66, m30–m31.  Web of Science CSD CrossRef IUCr Journals Google Scholar
First citationShawkataly, O. bin, Khan, I. A., Yeap, C. S. & Fun, H.-K. (2010b). Acta Cryst. E66, m180–m181.  Web of Science CSD CrossRef IUCr Journals Google Scholar
First citationSheldrick, G. M. (2008). Acta Cryst. A64, 112–122.  Web of Science CrossRef CAS IUCr Journals Google Scholar
First citationSpek, A. L. (2009). Acta Cryst. D65, 148–155.  Web of Science CrossRef CAS IUCr Journals Google Scholar

This is an open-access article distributed under the terms of the Creative Commons Attribution (CC-BY) Licence, which permits unrestricted use, distribution, and reproduction in any medium, provided the original authors and source are cited.

Journal logoCRYSTALLOGRAPHIC
COMMUNICATIONS
ISSN: 2056-9890
Volume 67| Part 2| February 2011| Pages o457-o458
Follow Acta Cryst. E
Sign up for e-alerts
Follow Acta Cryst. on Twitter
Follow us on facebook
Sign up for RSS feeds