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首页> 外文期刊>Optics Letters >Performance enhancement using a non-uniform vertical electric field and polymer networks for in-plane switching of multi-pretilt, vertically aligned liquid crystal devices
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Performance enhancement using a non-uniform vertical electric field and polymer networks for in-plane switching of multi-pretilt, vertically aligned liquid crystal devices

机译:使用非均匀垂直电场和聚合物网络进行性能增强,以实现多倾斜垂直排列液晶设备的面内切换

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摘要

A simple and reproducible alignment method for fabricating vertically aligned (VA) liquid crystal (LC) cells with a multi-pretilt structure is developed. A non-uniform vertical electric field is employed in the LC/monomer mixed cells during the photocuring process, and two pretilt domains with a functional small pretilt angle (~1.6°) in the stabilized VA LC/polymer cells are achieved. The enhanced electro-optical performance of the cell driven by an in-plane switching field is demonstrated. Compared to the pure cell, the 2 wt.% pretilt angle cell shows 36%, 64%, and 76% improvement in the optical switch, the gray-level rise time, and the gray-level fall time responses, respectively, which are obtained at a low driving voltage (≤12 V). When applied to LC devices, the proposed method not only effectively benefits the LC molecular alignment, but it also significantly boosts the electro-optical performance.
机译:开发了一种简单且可重现的对准方法,用于制造具有多倾斜结构的垂直对准(VA)液晶(LC)单元。在光固化过程中,LC /单体混合电池中使用了不均匀的垂直电场,从而在稳定的VA LC /聚合物电池中获得了两个具有小的预倾角(〜1.6°)的功能的预倾斜区域。证明了由面内切换场驱动的单元的增强的电光性能。与纯电池相比,2 wt。%的预倾斜角电池在光开关,灰度上升时间和灰度下降时间响应方面分别显示了36%,64%和76%的改善,分别是在低驱动电压(≤12V)下获得。当应用于LC器件时,所提出的方法不仅有效地有益于LC分子排列,而且还大大提高了电光性能。

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