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Semi fluorinated polymers as surface energy controlled layers for liquid crystal alignment

机译:半氟化聚合物作为表面能量控制层,用于液晶取向

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The effects of compounded hydrogenated–fluorinated surfaces formed by perfluorocyclobutane (PFCB)-containing polymers on the alignment of 4,4′-octylcycanobiphenyl (8CB), a liquid crystal that exhibits both nematic and smectic phases, were investigated. The inherent segregation between fluorine- and hydrogen-rich segments produced structured interfaces with fluorinated and protonated nano domains. The morphologies of the interfaces and their corresponding surface energies were probed by AFM and the alignment of 8CB was investigated by polarized optical microscopy. We found that varying the fluorine content controlled both the structure and the interfacial morphology. The 8CB layer orientation was strongly affected by the interracial energies. With increasing fluorine content the homeotropic alignment temperature range of 8CB in the nematic phase was increased and that of the smectic phase was hardly affected. The impact observed was attributed to competition between anchoring effects and elasticity of the LC layers.
机译:通过全氟环丁烷(PFCB) - 悬垂聚合物形成的复合氢化氟化表面对4,4'-辛基环苯基(8cb)的对准,呈现出含有列目型和椎相阶段的液晶。富含氟和氢段之间的固有偏析产生具有氟化和质子化纳米结构域的结构化界面。通过AFM探测界面的形态及其相应的表面能,并通过偏振光学显微镜研究8CB的对准。我们发现改变氟含量控制结构和界面形态。 8CB层取向受不合形能量的强烈影响。随着氟含量的增加,向列阶段中8cb的垂直对准温度范围增加,并且近晶相的影响几乎不会受到影响。观察到的影响归因于锚定效应和LC层的弹性之间的竞争。

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