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Polymer-Liquid Crystal Composites Doped by Inorganic Oxide Nanopowders

机译:无机氧化物纳米粉体掺杂的聚合物液晶复合材料

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摘要

This paper investigates the impact of nanoscale additives on electro-optical properties of films of polymer-liquid crystal composites (PLCC). It has been shown that the nanoparticles doping in the polymer matrix leads to a change in the parameters of the film produced therefrom, in particular, the coefficient of refraction and the dielectric constant. The absence of a chemical interaction between the nanoparticles and droplets of liquid crystals (LCs) was noted. The dependence of the light transmission of the composition on the nanoparticles size and their concentration were obtained. It is noted that the presence of ionic impurities in silica distorted the photosignal shape and degraded the relaxation time. It is shown that the nanopowders decreased the threshold voltage of LC reordering and reduced the LC response time at both threshold levels and at the saturation level of the control field. This shows the good potency of nanomodifiers in the PLCC.
机译:本文研究了纳米级添加剂对聚合物-液晶复合材料(PLCC)薄膜电光性能的影响。已经表明,掺杂在聚合物基质中的纳米颗粒导致由其产生的膜的参数的变化,特别是折射率和介电常数的变化。注意到在纳米颗粒和液晶小滴之间没有化学相互作用。获得了组合物的透光率对纳米颗粒尺寸及其浓度的依赖性。应当指出,二氧化硅中离子杂质的存在会扭曲光晕形状并降低弛豫时间。结果表明,纳米粉降低了LC重新排序的阈值电压,并在控制场的两个阈值水平和饱和水平上均降低了LC响应时间。这表明纳米改性剂在PLCC中具有良好的效力。

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