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首页> 外文期刊>Angewandte Chemie >Shape-Persistent, Sterically Crowded Star Mesogens: From Exceptional Columnar Dimer Stacks to Supermesogens
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Shape-Persistent, Sterically Crowded Star Mesogens: From Exceptional Columnar Dimer Stacks to Supermesogens

机译:形状持久,空间拥挤的星形介晶:从出色的柱状二聚体堆栈到超介素

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摘要

Hexasubstituted C-3-symmetric benzenes with three oligophenylenevinylene (OPV) arms and three pyridyl or phenyl substituents are shape-persistent star mesogens that are sterically crowded in the center. Such molecular structures possess large void spaces between their arms, which have to be filled in condensed phases. For the neat materials, this is accomplished by an exceptional formation of dimers and short-range helical packing in columnar mesophases. The mesophase is thermodynamically stable for the pyridyl compound. Only this derivative forms filled star-shaped supermesogens in the presence of various carboxylic acids. The latter do not arrange as dimers, but as monomers along the columnar stacks. In this liquid crystal (LC) phase, the guests are completely enclosed by the hosts. Therefore, the host can be regarded as a new LC endoreceptor, which allows the design of columnar functional structures in the future.
机译:具有三个低聚亚苯基亚乙烯基(OPV)臂和三个吡啶基或苯基取代基的六取代C-3-对称苯是形状持久的星形液晶元,在中心空间上拥挤。这样的分子结构在它们的臂之间具有大的空隙空间,这些空隙空间必须以凝结相填充。对于纯净的材料,这是通过在柱状中间相中形成异常的二聚体和短程螺旋堆积来实现的。中间相对于吡啶基化合物是热力学稳定的。在各种羧酸的存在下,只有这种衍生物才能形成填充的星形超介元。后者不是作为二聚体排列,而是作为沿柱状堆叠的单体排列。在此液晶(LC)阶段,来宾被主机完全封闭。因此,宿主可以被视为新的LC内感受器,可以在将来设计柱状功能结构。

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