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Effects Of The Mixture Composition On The Microstructure Of Polymer Matrix And Light Scattering Properties Of Liquid Crystal/photo-polymerizable Monomers Composites

机译:混合物组成对聚合物基体微观结构和液晶/光聚合单体复合材料光散射特性的影响

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摘要

The microstructure and electro-optical effects based on light scattering have been investigated for nema tic liquid crystal (LC)/photo-polymerizable monomers composites. It was demonstrated that the optimum electro-optical properties of the composites were obtained when the LC content was between 60 and 70 wt%. Furthermore, the variety of the light scattering intensity for the composites in the wavelength region of 300-2500 nm was studied experimentally and theoretically with the combination of three kinds of classical light scattering theories: the Rayleigh-Gans (RG) approach, the anomalous diffraction (AD) approach, and the geometrical optics (GO) approach. Then a simple mathematic simulation was established to describe the relationship between the transmittance and the incident wavelength in this wavelength region.
机译:研究了基于光散射的微结构和电光效应,用于液晶(LC)/可光聚合单体复合材料。已经证明,当LC含量在60至70重量%之间时,获得了复合材料的最佳电光性能。此外,结合三种经典的光散射理论:瑞利-甘斯(RG)方法,反常衍射等,从理论上对复合材料在300-2500 nm波长范围内的光散射强度进行了实验和理论研究。 (AD)方法和几何光学(GO)方法。然后建立一个简单的数学模拟来描述该波长区域中透射率与入射波长之间的关系。

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