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通过反应性表面涂层拓宽聚合物稳定胆甾相液晶的反射带宽。

Broadening the reflection bandwidth of polymer-stabilized cholesteric liquid crystal via a reactive surface coating layer.

作者信息

Kim Jongyoon, Kim Hyungmin, Kim Seongil, Choi Suseok, Jang Wonbong, Kim Jinwuk, Lee Ji-Hoon

出版信息

Appl Opt. 2017 Jul 10;56(20):5731-5735. doi: 10.1364/AO.56.005731.

Abstract

We report a method of broadening the reflection bandwidth of polymer-stabilized cholesteric liquid crystal (PSCLC). The top substrate was consecutively coated with a polyimide (PI) and a reactive mesogen (RM) layer, while the bottom substrate was coated with only PI. We exposed the top substrate with the RM coating to UV light. The reflection bandwidth of the PSCLC samples where the top substrate was over-coated with RM was significantly broader than the samples where both substrates were coated with PI. In addition to the effect of the UV intensity gradient, the RM-coated top substrate has a chemical affinity to bulk RM, promoting formation of the pitch gradient and broadening the reflection bandwidth in the sample.

摘要

我们报道了一种拓宽聚合物稳定胆甾相液晶(PSCLC)反射带宽的方法。顶部基板依次涂覆有聚酰亚胺(PI)和反应性液晶基元(RM)层,而底部基板仅涂覆有PI。我们用紫外线照射涂覆有RM的顶部基板。顶部基板涂覆有RM的PSCLC样品的反射带宽明显比两个基板都涂覆有PI的样品宽。除了紫外线强度梯度的影响外,涂覆有RM的顶部基板与本体RM具有化学亲和力,促进了螺距梯度的形成并拓宽了样品中的反射带宽。

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