4.7 Article

Weak intermolecular interactions in the crystal structures of molecules with tetrahedral symmetry: Diamondoid nets and other motifs

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CRYSTAL GROWTH & DESIGN
卷 1, 期 3, 页码 231-237

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AMER CHEMICAL SOC
DOI: 10.1021/cg005531d

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Motif-forming characteristics of weak intermolecular interactions (Br....Br, Cequivalent toCH...Cequivalent toC, and Cequivalent toCBr....Cequivalent toC) were examined in the solid state structures, determined by single-crystal X-ray diffraction, of tetraphenylmethane and 1,3,5,7-tetraphenyladamantane derivatives substituted at the four vertices with bromo, ethynyl, bromoethynyl, and 1,3-diethynyl groups. The crystals of the bromo- and ethynyl-substituted tetraphenylmethane derivatives exhibited triply interwoven diamondoid lattices sustained by weak interactions between bromo and ethynyl groups. It was observed that when bromo- and ethynyl groups are interchanged in these compounds, their solid-state structures did not change significantly. The crystals of tetrakis(4-bromoethynyphenyl)methane, as well as 1,4- and 1,3,5-bromoethynylbenzene, were sustained by rare, T-shaped Cequivalent toCBr....Cequivalent toC contacts, but a comparison between these solid-state structures showed significant differences. All terminal 1,3-diynes were unstable compounds that decomposed rapidly. In general, it was observed that tetrahedral building blocks with a larger tetrahedral core, such as adamantane, formed disordered structures or fragile, highly solvated crystals.

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