Liquid crystal-polymer composites switchable windows for radiant energy flow and privacy control

Suman Halder, Yunho Shin, Ziyuan Zhou, Xinfang Zhang, Lang Hu, Deng-Ke Yang
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Abstract

Global warming is becoming a more and more severe crisis for humans. One way to resolve the concern is to reduce energy consumption. Smart switchable windows for office and residential buildings and vehicles can help reduce energy consumption. An ideal smart window should be able to control radiant energy flow and privacy. We investigated the capability of switchable windows based on liquid crystal/polymer composites, such as polymer dispersed liquid crystal (PDLC), polymer stabilized liquid crystal (PSLC), and polymer stabilized cholesteric texture (PSCT), to control the privacy and radiant energy flow. Through a systematic study, we identified methods to improve their capabilities. We demonstrated that PDLC and PSCT windows of sufficient thick film thickness can control both privacy and energy flow.
液晶-聚合物复合材料可切换窗口辐射能量流和隐私控制
全球变暖正成为人类面临的越来越严重的危机。解决这个问题的一个方法是减少能源消耗。用于办公和住宅建筑以及车辆的智能可切换窗户有助于减少能源消耗。理想的智能窗户应该能够控制辐射能量流和隐私。研究了基于聚合物分散液晶(PDLC)、聚合物稳定液晶(PSLC)和聚合物稳定胆甾结构(PSCT)等液晶/聚合物复合材料的可切换窗口控制隐私和辐射能流的能力。通过系统的研究,我们找到了提高他们能力的方法。我们证明了具有足够厚薄膜厚度的PDLC和PSCT窗口可以同时控制隐私和能量流。
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