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The Shape of Things To Come: The Formation of Modulated Nematic Mesophases at Various Length Scales

机译:事物的形状:不同长度尺度下调制向列中间相的形成

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摘要

The twist–bend nematic (NTB) phase is a recently discovered liquid‐crystalline phase that exhibits macroscopic chirality even when formed from achiral materials, and as such presents a unique testbed for studies concerning the spontaneous breaking of mirror symmetry in soft matter. It is primarily exhibited by materials for which the molecular structure is composed of two rigid aromatic units (such as biphenyl connected by a flexible spacer). The local structure of the NTB phase is nematic‐like—with molecules having an average orientational order but no positional order—with a nanoscale helix in which the pitch (i.e., the repeat distance of the helix) is of the order of several nanometres. A helix is chiral, and so the bulk NTB phase—in the absence of a biasing chiral environment—spontaneously separates into macroscopic domains of opposite handedness. After discussing the structure of this mesophase and its elucidation, this concept article presents the molecular factors that determine its incidence. The apparent dependency primarily on molecular shape and bend angle rather than particular functional group combinations manifests in this mesophase being exhibited on length scales far beyond those of simple liquid‐crystalline dimers, not only in oligomers and polymers, but also in aqueous suspensions of micron sized helical particles.
机译:扭曲-弯曲向列相(NTB)是最近发现的液晶相,即使由非手性材料形成,也表现出宏观手性,因此为研究软物质中镜对称性的自发破裂提供了独特的试验平台。它主要由分子结构由两个刚性芳族单元(例如通过柔性间隔基连接的联苯)组成的材料展示。 NTB相的局部结构呈向列状-分子具有平均取向顺序但无位置顺序-具有纳米级螺旋结构,其中节距(即螺旋结构的重复距离)约为几纳米。螺旋是手性的,因此,在没有偏性手性环境的情况下,主体NTB相会自发地分离为反手性的宏观区域。在讨论了中间相的结构及其阐明之后,本概念文章介绍了决定其中间相发生率的分子因素。明显地主要依赖于分子形状和弯曲角而不是特定的官能团组合,这表现在中间相的长度范围远远超出了简单的液晶二聚体,不仅在低聚物和聚合物中,而且在微米级的水悬浮液中螺旋颗粒。

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