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Controlled local organization of lyotropic liquid crystalline polymer thin films with electric fields

机译:带电场的溶致液晶聚合物薄膜的受控局部组织

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The ability of electric fields to induce the controlled alignment of lyotropic liquid crystalline polymer thin films to microfabricated substrates is demonstrated. These devices allow for variations in electric field geometry on the polymer alignment to be examined systematically. The polymers studied included poly(hexyl isocyanate) (PHIC) and poly(benzyl L-glutamate). The polymers were oriented by the electric field while in solution and solidified into a stable, oriented structure by solvent evaporation. Optical microscopy and transmission electron microscopy experiments make it possible to directly image the disclinations that mediate molecular alignment. The defect type and density in the solidified films are a function of the electric field geometry.
机译:证明了电场诱导溶致液晶聚合物薄膜与微细加工基板的定向排列的能力。这些装置允许对聚合物取向上的电场几何形状的变化进行系统地检查。研究的聚合物包括聚(异氰酸己酯)(PHIC)和聚(L-谷氨酸苄基酯)。聚合物在溶液中时通过电场定向,并通过溶剂蒸发固化成稳定的定向结构。光学显微镜和透射电子显微镜实验使直接成像介导分子排列的旋错成为可能。固化膜中的缺陷类型和密度是电场几何形状的函数。

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