首页> 外文期刊>Journal of physical chemistry letters >Boundary Geometry Effects on the Coalescence of Liquid Crystalline Tactoids and Formation of Topological Defects
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Boundary Geometry Effects on the Coalescence of Liquid Crystalline Tactoids and Formation of Topological Defects

机译:界面几何效应对液晶晶段聚结的影响及拓扑缺陷的形成

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In many lyotropic liquid crystals, the evolution of macroscopic anisotropic phases is mediated by tactoids, which are discrete ordered microdroplets existing in continuous disordered phases. Here we report the effects of boundary conditions on the movement and transformation of liquid crystalline tactoids of cellulose nanocrystals (CNCs) in nonspherical droplets. Using an in situ photopolymerization method, we obtained three-dimensional views of the initial emergence and expansion of macroscopic ordered phases. These processes, as well as the evolution of topological defects, were significantly influenced by the boundary geometry (or Marangoni flows and pinning effects) of the droplets. This phenomenon helps explain the influence of the substrate on the photonic properties of chiral nematic films of CNCs and may also provide new insights into the self-assembly process in lyotropic liquid crystals.
机译:在许多旋转液晶晶体中,宏观各向异性阶段的演化由左右介导,其是在连续无序相中存在的离散有序的微量滴。 在这里,我们报告了边界条件对纤维素纳米晶体(CNCS)在非球液滴中液晶晶段的运动和转化的影响。 使用原位光聚合方法,我们获得了宏观有序阶段的初始出现和扩展的三维视图。 这些过程以及拓扑缺陷的演变,受到液滴的边界几何(或Marangoni流量和钉扎效应)的显着影响。 这种现象有助于解释基材对CNC的手性甲型薄膜的光子性能的影响,并且还可以在旋转液晶中的自组装过程中提供新的洞察。

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