Wöhrle Tobias, Beardsworth Stuart James, Schilling Christopher, Baro Angelika, Giesselmann Frank, Laschat Sabine
Institut für Organische Chemie, Universität Stuttgart, Pfaffenwaldring 55, D-70569 Stuttgart, Germany.
Institut für Physikalische Chemie, Universität Stuttgart, Pfaffenwaldring 55, D-70569 Stuttgart, Germany.
Soft Matter. 2016 Apr 20;12(16):3730-6. doi: 10.1039/c5sm02489g.
Triphenylbenzenes with different substitution patterns at the outer phenyl rings have been successfully synthesised. Sixfold n-alkoxy substitution was insufficient for mesomorphism, but already increasing the number of side chains by three methoxy groups led to liquid crystalline behaviour and mesophase formation. Symmetrical triphenylbenzenes with nine n-alkoxy side chains (≥C9) formed broad enantiotropic mesophases. The symmetry of the liquid crystalline phases was unambiguously determined by X-ray diffraction measurements as Colh and Colho for symmetry-reduced methoxy-alkoxy derivatives and symmetrical nona-alkoxy-triphenylbenzenes, respectively. Based on X-ray diffraction data a stacking model was proposed in which the single molecules aggregate to helical columns forming a mesophase.
已成功合成在外围苯环具有不同取代模式的三苯基苯。六个正烷氧基取代不足以产生介晶性,但仅通过增加三个甲氧基来增加侧链数量就导致了液晶行为和中间相的形成。具有九个正烷氧基侧链(≥C9)的对称三苯基苯形成了宽的互变中间相。通过X射线衍射测量明确确定了液晶相的对称性,对于对称性降低的甲氧基 - 烷氧基衍生物和对称的壬烷氧基 - 三苯基苯,分别为Colh和Colho。基于X射线衍射数据提出了一种堆积模型,其中单个分子聚集成螺旋柱形成中间相。