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ELECTRO-OPTICAL AND MORPHOLOGICAL PROPERTIES OF ULTRAVIOLET- AND ELECTRON BEAM - CURED MONOMER/LIQUID CRYSTAL MIXTURES

机译:紫外线和电子束固化单体/液体晶体混合物的光电和形态学性质

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摘要

Polymer Dispersed Liquid Crystal (PDLC) films are obtained by phase separation induced by Ultraviolet (UV) and, Electron Beam (EB) curing techniques. A binary system composed of a monomeric diacrylate and the nematic liquid crystal E7 was employed as initial reactive blend prior to the polymerization/ cross-linking processes. The analysis of the electro-optical responses of the obtained PDLC films show certain advantages of EB-cured systems, for example lower threshold and saturation voltages. Sample morphologies obtained from scanning electron microscopy observations showed a narrow size distribution of ellipsoidal-type LC droplets for EB-cured samples thus explaining the sharp increase of transmission values as a function of voltage. The slow increase of the transmission with voltage for UV-cured samples can be understood by the large size distribution of irregularly shaped droplets.
机译:聚合物分散液晶(PDLC)膜是通过紫外线(UV)和电子束(EB)固化技术引起的相分离而获得的。在聚合/交联过程之前,使用由单体二丙烯酸酯和向列液晶E7组成的二元体系作为初始反应混合物。对获得的PDLC薄膜的电光响应的分析显示出EB固化系统的某些优点,例如较低的阈值电压和饱和电压。从扫描电子显微镜观察获得的样品形态显示,EB固化样品的椭圆型LC液滴尺寸分布较窄,因此可以解释透射率值随电压的急剧增加。紫外线固化样品的透射率随电压的缓慢增加可以通过不规则形状的液滴的大尺寸分布来理解。

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