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

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ISSN: 2056-9890

4,4′-Bis[2-(3,5-dimeth­­oxy­phen­yl)ethen­yl]biphen­yl

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aDepartment of Chemistry, University of Antwerp, Universiteitsplein 1, B-2610 Antwerp, Belgium, and bYoungstown State University, One University Plaza, Youngstown, Ohio 44555-3663, USA
*Correspondence e-mail: [email protected]

(Received 10 February 2011; accepted 6 April 2011; online 13 April 2011)

The title compound, C32H30O4, crystallizes with three different conformers of the same mol­ecule in the asymmetric unit, which explains the unusually large unit cell volume. The supra­molecular structure is based on inter­actions involving the meth­oxy groups [C⋯O contacts between 3.090 (2) and 3.204 (2) Å, and C—H⋯O contacts between (normalized) 2.40 and 2.71 Å], ππ stacking of the electron-rich meth­oxy-substituted rings [centroid–centroid distances of 3.6454 (9)–3.738 (1) Å] and C—H⋯π contacts (normalized, 2.62–2.97Å).

Related literature

For related meth­oxy-substituted biphenyls with 4,4′-bis­(2-phenyl­ethen­yl) substitution, see: Vande Velde et al. (2002[Vande Velde, C. M. L., Hoefnagels, R. & Geise, H. J. (2002). Acta Cryst. E58, o454-o455.]) [CSD refcode: MODDUE] and Li & Jian (2009[Li, Y.-F. & Jian, F.-F. (2009). Acta Cryst. E65, o1930.]) [CSD refcode: POWYUW]. For a study on the blue-light-emitting properties of a related compound, see: Jin et al. (2002[Jin, Y.-D., Chen, H.-Z., Heremans, P. L., Aleksandrzak, K., Geise, H. J., Borghs, G. & Van der Auweraer, M. (2002). Synth. Met. 127, 155-158.]). For the conformations of meth­oxy­benzenes, see: Vande Velde et al. (2007[Vande Velde, C. M. L., Bultinck, E., Tersago, K., Van Alsenoy, C. & Blockhuys, F. (2007). Int. J. Quantum Chem. 107, 670-679.]). For the preparation, see: Jin et al. (2002[Jin, Y.-D., Chen, H.-Z., Heremans, P. L., Aleksandrzak, K., Geise, H. J., Borghs, G. & Van der Auweraer, M. (2002). Synth. Met. 127, 155-158.].

[Scheme 1]

Experimental

Crystal data
  • C32H30O4

  • Mr = 478.56

  • Monoclinic, Mathematical equation

  • a = 11.8208 (13) Å

  • b = 27.896 (3) Å

  • c = 22.875 (3) Å

  • β = 99.723 (2)°

  • V = 7434.8 (14) Å3

  • Z = 12

  • Mo Kα radiation

  • μ = 0.08 mm−1

  • T = 100 K

  • 0.55 × 0.45 × 0.15 mm

Data collection
  • Bruker SMART APEX CCD diffractometer

  • Absorption correction: multi-scan (SADABS; Bruker, 2008[Bruker (2008). APEX2, SAINT and SADABS. Bruker AXS Inc, Madison, Wisconsin, USA.]) Tmin = 0.956, Tmax = 0.988

  • 74405 measured reflections

  • 18422 independent reflections

  • 13284 reflections with I > 2σ(I)

  • Rint = 0.034

Refinement
  • R[F2 > 2σ(F2)] = 0.060

  • wR(F2) = 0.181

  • S = 1.03

  • 18422 reflections

  • 985 parameters

  • H-atom parameters constrained

  • Δρmax = 0.68 e Å−3

  • Δρmin = −0.29 e Å−3

Table 1
Relevant C—H⋯π contacts in the crystal packing of the title compound (Å, °)

Cg(X1), Cg(X2), Cg(X3) and Cg(X4) are the centroids of the C1X–C6X, C9X–C14X, C15X–C20X and C23X–C28X rings, respectively, where X = A, B, C, D.

Entry D H A H⋯A D—H⋯A
1 C10A H10A Cg(B4)i 2.62 148
2 C17A H17A Cg(B3)i 2.86 150
3 C19A H19A Cg(C4)ii 2.80 143
4 C29A H29A Cg(A3)iii 2.79 147
5 C10B H10B Cg(C1)iii 2.84 148
6 C14B H14B Cg(A2)iv 2.97 147
7 C19B H19B Cg(A1)iv 2.67 149
8 C31B H31F Cg(B2)iii 2.80 148
9 C10C H10C Cg(B1)iv 2.70 148
10 C19C H19C Cg(A4)v 2.85 152
11 C29C H29G Cg(C3)i 2.76 143
12 C31C H31G Cg(C2)iii 2.78 140
Symmetry codes: (i) x + 1, y, z; (ii) −x + 1, y + Mathematical equation, −z + Mathematical equation; (iii) x − 1, y, z; (iv) x, y, z; (v) −x + 2, y − Mathematical equation, −z + Mathematical equation.

Table 2
Relevant ππ contacts in the crystal packing of the title compound (Å, °)

The angle related to a pair of centroids is defined as the angle between the Cg(I)⋯Cg(J) vector and the normal to plane I. Centroids as in Table 1.

Entry Cg(I) Cg(J) CgCg Angle
1 Cg(A1) Cg(A1)vi 3.738 (1) 26.65
2 Cg(A4) Cg(A4)vii 3.6454 (9) 25.18
3 Cg(B1) Cg(C4)viii 3.713 (1) 25.39
4 Cg(B4) Cg(C1)ix 3.697 (1) 26.83
5 Cg(C1) Cg(B4)x 3.697 (1) 25.86
6 Cg(C4) Cg(B1)xi 3.713 (1) 25.72
Symmetry codes: (vi) −x, −y + 1, −z; (vii) −x + 3, −y + 1, −z + 1; (viii) x + 1, −y + Mathematical equation, z + Mathematical equation; (ix) x − 2, −y + Mathematical equation, z − Mathematical equation; (x) x + 2, −y + Mathematical equation, z + Mathematical equation; (xi) x − 1, −y + Mathematical equation, z − Mathematical equation.

Table 3
Relevant short contacts involving the meth­oxy groups in the crystal packing of the title compound (Å, °)

Entry D X A XA DXA
1 O2A C30A O1Cix 3.139 (2) 175.28 (12)
2 O3A C31A O4Cx 3.090 (2) 160.33 (12)
3 C32A H32A O2Cvii 2.71 120
4 C32A H32c O3Avii 2.55 142
5 C15B C16B O1Biii 3.204 (2) 108.54 (9)
6 O1B C29B O4Avii 3.171 (2) 143.57 (12)
7 O2B C30B O3Bx 3.171 (2) 171.88 (12)
8 O4B C32B O1Axii 3.102 (2) 174.13 (12)
9 C31B H31D O2Cix 2.68 139
10 O2C C30C O3Cx 3.152 (2) 161.25 (11)
11 C29C H29H O4Bx 2.67 141
12 C31C H31I O2Bxi 2.70 143
13 C32C H32G O1Bxi 2.40 144
14 C32C H32I O4Cxiii 2.69 124
Symmetry codes: (xii) −x − 1, −y + 1, −z; (xiii) −x, −y, −z.

Data collection: APEX2 (Bruker, 2008[Bruker (2008). APEX2, SAINT and SADABS. Bruker AXS Inc, Madison, Wisconsin, USA.]); cell refinement: SAINT (Bruker, 2008[Bruker (2008). APEX2, SAINT and SADABS. Bruker AXS Inc, Madison, Wisconsin, USA.]); data reduction: SAINT; program(s) used to solve structure: SHELXS97 (Sheldrick, 2008[Sheldrick, G. M. (2008). Acta Cryst. A64, 112-122.]); program(s) used to refine structure: SHELXL97 (Sheldrick, 2008[Sheldrick, G. M. (2008). Acta Cryst. A64, 112-122.]); molecular graphics: ORTEP-3 (Farrugia, 1997[Farrugia, L. J. (1997). J. Appl. Cryst. 30, 565.]) and 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.]); software used to prepare material for publication: WinGX (Farrugia, 1999[Farrugia, L. J. (1999). J. Appl. Cryst. 32, 837-838.]) and PLATON (Spek, 2009[Spek, A. L. (2009). Acta Cryst. D65, 148-155.]).

Supporting information


Acknowledgements

AC wishes to thank the Institute for the Promotion of Innovation by Science and Technology in Flanders (IWT) for a predoctoral grant. The X-ray diffractometer was funded by NSF Grant 0087210, Ohio Board of Regents Grant CAP-491, and by Youngstown State University.

References

First citationBruker (2008). APEX2, SAINT and SADABS. Bruker AXS Inc, Madison, Wisconsin, USA.  Google Scholar
First citationFarrugia, L. J. (1997). J. Appl. Cryst. 30, 565.  CrossRef IUCr Journals Google Scholar
First citationFarrugia, L. J. (1999). J. Appl. Cryst. 32, 837–838.  CrossRef CAS IUCr Journals Google Scholar
First citationJin, Y.-D., Chen, H.-Z., Heremans, P. L., Aleksandrzak, K., Geise, H. J., Borghs, G. & Van der Auweraer, M. (2002). Synth. Met. 127, 155–158.  Web of Science CrossRef CAS Google Scholar
First citationLi, Y.-F. & Jian, F.-F. (2009). Acta Cryst. E65, o1930.  Web of Science CSD CrossRef IUCr Journals Google Scholar
First citationMacrae, 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.  Web of Science CrossRef CAS 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
First citationVande Velde, C. M. L., Bultinck, E., Tersago, K., Van Alsenoy, C. & Blockhuys, F. (2007). Int. J. Quantum Chem. 107, 670–679.  CAS Google Scholar
First citationVande Velde, C. M. L., Hoefnagels, R. & Geise, H. J. (2002). Acta Cryst. E58, o454–o455.  Web of Science CSD CrossRef IUCr Journals Google Scholar

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