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Blue phase liquid crystal: Strategies for phase stabilization and device development

机译:蓝相液晶:相位稳定和器件开发的策略

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摘要

The blue phase liquid crystal (BPLC) is a highly ordered liquid crystal (LC) phase found very close to the LC-isotropic transition. The BPLC has demonstrated potential in next-generation display and photonic technology due to its exceptional properties such as sub-millisecond response time and wide viewing angle. However, BPLC is stable in a very small temperature range (0.5-1 degrees C) and its driving voltage is very high (similar to 100 V). To overcome these challenges recent research has focused on solutions which incorporate polymers or nanoparticles into the blue phase to widen the temperature range from around few degrees C to potentially more than 60 degrees C. In order to reduce the driving voltage, strategies have been attempted by modifying the device structure by introducing protrusion or corrugated electrodes and vertical field switching mechanism has been proposed. In this paper the effectiveness of the proposed solution will be discussed, in order to assess the potential of BPLC in display technology and beyond.
机译:蓝相液晶(BPLC)是一种高度有序的液晶(LC)相,非常接近LC各向同性转变。 BPLC凭借其出色的性能(如亚毫秒级的响应时间和宽视角),已在下一代显示和光子技术中展示出了潜力。但是,BPLC在很小的温度范围内(0.5-1摄氏度)是稳定的,并且其驱动电压很高(类似于100 V)。为了克服这些挑战,最近的研究集中在将聚合物或纳米颗粒掺入蓝相以将温度范围从大约几摄氏度增加到可能超过60摄氏度的解决方案。为了降低驱动电压,人们尝试了以下方法:已经提出了通过引入突起或波纹状电极来改变器件结构的方案,并且已经提出了垂直场切换机制。在本文中,将讨论所提出解决方案的有效性,以评估BPLC在显示技术及其他方面的潜力。

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