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Pitch-Length Independent Threshold Voltage of Polymer/Cholesteric Liquid Crystal Nano-Composites

机译:聚合物/胆甾型液晶纳米复合材料的节距长度独立阈值电压

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Polymer/cholesteric liquid crystal (ChLC) nano-composites consisting of mesogenic monomers and LCs have nano-sized LC domains dispersed in an anisotropic polymer matrix. They exhibit characteristics not observed in conventional ChLCs, such as sub-millisecond and “deformation-free” electro-optic tuning of the selective reflection band; however, their driving voltage is high compared to conventional ChLCs, and is an issue that needs to be solved for the practical use. Here, we investigate the helical pitch dependence of threshold voltage in polymer/ChLC nano-composites. Five samples with different helical pitches were prepared and their electro-optic characteristics were compared before and after photopolymerization. Although the threshold voltage of the unpolymerized samples were inversely proportional to its helical pitch, the threshold voltage of the polymerized samples showed no dependence on the helical pitch. These results are explained to be a consequence of the driving mechanism of the polymer/ChLC nano-composite, in which electro-optic switching is achieved as a consequence of the nano-confined LC molecules reorienting along the electric field, instead of the helical structure becoming unwound. The threshold voltage is independent of pitch length because the pore sizes are similar in all samples.
机译:由介晶单体和液晶组成的聚合物/胆甾型液晶(ChLC)纳米复合材料具有分散在各向异性聚合物基质中的纳米级LC域。它们表现出常规ChLC中未观察到的特性,例如亚毫秒级和选择性反射带的“无变形”电光调谐。但是,它们的驱动电压与常规ChLC相比较高,并且是实际应用中需要解决的问题。在这里,我们研究了聚合物/ ChLC纳米复合材料中阈值电压的螺旋螺距依赖性。制备了五个螺距不同的样品,并比较了光聚合前后的电光特性。尽管未聚合样品的阈值电压与其螺旋螺距成反比,但聚合样品的阈值电压与螺旋螺距无关。这些结果被解释为是聚合物/ ChLC纳米复合材料的驱动机制的结果,其中纳米约束的LC分子沿着电场而不是螺旋结构重新定向,从而实现了电光转换解开。阈值电压与节距长度无关,因为所有样品的孔径均相似。

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