材料科学
液晶
光致变色
掺杂剂
复合数
电场
光电子学
胆甾液晶
聚合物
双折射
聚合
偶氮苯
结构着色
带隙
光学
复合材料
光子晶体
纳米技术
兴奋剂
物理
量子力学
作者
Alexey Bobrovsky,Valéry Shibaev,Martin Cigl,Věra Hamplová,Alexej Bubnov
出处
期刊:Liquid Crystals
[Informa]
日期:2023-01-05
卷期号:50 (7-10): 1563-1572
被引量:10
标识
DOI:10.1080/02678292.2022.2162991
摘要
Multifunctional cholesteric liquid crystalline (LC) polymer-stabilised composite with photo- and electro-controllable photonic band gap was prepared and its fast photo- and electro-optical switching was demonstrated. The composite was prepared by a template method implying the polymerisation of cholesteric mixture consisting of several components, such as nematic liquid crystal compounds, chiral dopant, polymerisable mono- and diacrylates as well as photoinitiator. UV-induced polymerisation and subsequent removing of the low-molar-mass components enables to obtain porous cholesteric polymer matrix, which was used for filling with photochromic nematic mixture. Application of electric field or UV-irradiation shifts the photonic band gap to the short-wavelength spectral range. In the case of an electric field, this shift is associated with alignment of LC molecules along the electric field and deformation of the cholesteric helical structure. UV light action induces E-Z isomerisation of the azobenzene-containing molecules of photochromic mixture and decrease in their molecular anisometry leading to decrease in birefringence. Both electro- and photo-induced changes are completely reversible and switching the electric field off and/or irradiation with visible light completely recovers initial shape of selective reflection band. The switching is very fast and takes several seconds for the light action and less than one second for the electric field.
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