首页> 外文会议>Symposium on Liquid Crystal Materials and Devices, held April 5-7, 1999, San Francisco, California, U.S.A. >Light transmission-light scattering reverse mode switching of (liquid crystalline polymer/liquid crystal) composite system
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Light transmission-light scattering reverse mode switching of (liquid crystalline polymer/liquid crystal) composite system

机译:(液晶聚合物/液晶)复合系统的透光-光散射反向模式转换

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Conventional (polymer/liquid crystal) composite films exhibit the normal mode electro-optical switching, that is, the light scattering-light transmission switching upon electric field OFF-ON states, respectively. The "reverse mode" electro-optical switching, that is, the light transmission-light scattering switching upon electric field OFF-KON states, respectively, has been investigated for a novel type of composite system being composed of a side chain type liquid crystalline polymer (LCP) and low molecular weight liquid crystals (LCs). The polarizing optical microscopic observation and X-ray diffraction study revealed that the two types of smectic-like short range ordering were present in the (LCP/LCs) composite system in a nematic state. It was confirmed from electric capacitance measurements of the homogeneous alignment cell that these phases with different smectic-like short range orderings each exhibited a different value of threshold voltage. Although the homogeneous alignment cell of the (LCP/LCs) composite system was in a light transmitting state in the absence of an electric voltage, the cell turned into a light scattering state upon the application of an electric voltage of 5-15 V for the cell of 14 mu m thick (0.4-1.1 MV centre dot m~(-1). The reversible change from the light scattering state to the transmission state was observed after removing the electric voltage. The light scattering state of the (LCP/LCs) composite system upon the application of electric voltage might be due to the appearance of optically heterogeneous structure induced by the different values of the threshold voltage between the two types of smectic-like phases with different short range orderings. These phases might be in a phase-separated state with an optical dimension (several hundred nm). The reversible "reverse mode" electro-optical switching was realized for the (LCP/LCs) composite system in a nematic state in which the two types of smectic-like short range orderings were separately formed in an optical size level.
机译:常规的(聚合物/液晶)复合膜表现出正常模式的电光切换,即分别在电场OFF-ON状态下的光散射-光透射切换。对于由侧链型液晶聚合物组成的新型复合系统,已经研究了“反向模式”电光转换,即分别在电场OFF-KON状态下的光透射-光散射转换。 (LCP)和低分子量液晶(LCs)。偏光显微镜观察和X射线衍射研究表明,(LCP / LCs)复合体系中存在两种向列状态的近晶状短程有序。从均相取向电池的电容测量结果证实,这些具有类似近晶状短程排列的相分别显示出不同的阈值电压值。尽管(LCP / LCs)复合系统的均质取向电池在没有电压的情况下处于透光状态,但在5-15 V的电压下,该电池变成了光散射状态。电池的厚度为14μm(0.4-1.1 MV中心点m〜(-1)。去除电压后,观察到了从光散射状态到透射状态的可逆变化。(LCP / LCs )复合系统在施加电压时可能是由于两种近晶状相具有不同的短程有序阈值电压值不同而引起的光学异质结构的出现。这些相可能处于一个相中(LCP / LCs)复合系统在向列状态下具有两种类型的污点的可逆“反向模式”电光转换在光学尺寸水平上分别形成类似于ic的短程有序。

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