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首页> 外文期刊>Liquid Crystals: An International Journal in the Field of Anisotropic Fluids >UV tuning of the electro-optical and morphology properties in polymer-dispersed liquid crystals
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UV tuning of the electro-optical and morphology properties in polymer-dispersed liquid crystals

机译:紫外线分散聚合物分散液晶中的电光和形态特性

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摘要

Polymer-dispersed liquid crystal (PDLC) films operating in reverse mode are transparent electro-optical devices, which can be turned into an opaque state by application of a suitable electric field. The effect was investigated of different UV powers, used during the polymerization process, on the electro-optical and morphology properties of PDLCs, working in reverse mode operation. Films were obtained by UV polymerization of mixtures of a low molecular weight nematic liquid crystal and a photopolymerizable liquid crystal monomer, homeotropically aligned by rough conductive surfaces. The electro-optical and morphology properties of samples were related to the polymerization conditions. Samples polymerized by lower UV powers exhibited "polymer ball" morphology and an electro-optical response due to the liquid crystal director reorientation, whereas samples obtained at higher UV powers showed a "Swiss cheese" morphology and an electro-optical response due to dynamic scattering. In addition, we observed by conductivity and IR measurements that UV exposure induces a degradation of the nematic liquid crystal.
机译:以反向模式操作的聚合物分散液晶(PDLC)膜是透明的电光设备,可以通过施加适当的电场使其变为不透明状态。研究了在聚合过程中使用的不同UV功率对以反向模式工作的PDLC的电光和形态特性的影响。通过低分子量向列型液晶和可光聚合液晶单体的混合物的UV聚合获得薄膜,并通过粗糙的导电表面垂直排列。样品的电光和形态特性与聚合条件有关。通过较低的紫外线功率聚合的样品由于液晶指向矢的重新取向而表现出“聚合物球”形态和电光响应,而在较高紫外线功率下获得的样品由于动态散射而表现出“瑞士奶酪”形态和电光响应。此外,我们通过电导率和红外测量观察到,紫外线暴露会引起向列液晶的降解。

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