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Does Topology Dictate the Incidence of the Twist‐Bend Phase? Insights Gained from Novel Unsymmetrical Bimesogens

机译:拓扑结构是否可以确定扭曲弯曲阶段的发生率?新型非对称双基因组学获得的见解

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摘要

We prepared a significant number of unsymmetrical liquid‐crystalline dimers that exhibit the twist‐bend nematic phase; a state of matter that exhibits spontaneous breaking of mirror symmetry and, for some materials, a microsecond electrooptic response. A number of novel unsymmetrical bimesogens were synthesized and in comparing their thermal behaviour to previous literature examples, we have uncovered an unexpected relationship between the thermal stability of the nematic and NTB phases. This relationship demonstrates that molecular shape dictates the incidence of this fascinating phase of matter and leads us to speculate as to the existence of “twist‐bend nematic phases” on length scales beyond those of the molecule.
机译:我们制备了许多不对称的液晶二聚体,它们表现出扭曲弯曲的向列相。一种物质,表现出自发地打破镜像对称性,对于某些材料,表现出微秒的电光响应。合成了许多新颖的不对称双生源,并将它们的热行为与先前的文献实例进行比较,我们发现向列相和NTB相的热稳定性之间存在出乎意料的关系。这种关系表明,分子的形状决定了物质的这种迷人相的发生,并导致我们推测出存在超出分子尺度的“扭曲弯曲向列相”。

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