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Photochemical manipulation of colloidal structures in liquid-crystal colloids

机译:液晶胶体中胶体结构的光化学操纵

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We investigated photochemical manipulation of physical properties and colloidal structures of liquid-crystal (LC) colloids containing azobenzene compounds. In a LC suspension where polymeric particles were dispersed in a host LC, we achieved photochemical control of light-scattering properties of the suspension. In a nematic phase, when the suspension was sandwiched with two glass plates, the film became opaque. This would be attributable to an appearance of both multidomain structures of LC alignment and mismatches of refractive indices between the materials. The opaque state turned into a transparent one when a nematic-to-isotropic phase transition was induced by the trans-to-cis photoisomerization of the azo-dye. This will result from a disappearance of both the multidomain structures and the refractive-index mismatches in the isotropic phase. The transparent film went back into the initial opaque film when the nematic phase was obtained by the cis-to-trans photoisomerization. In a LC emulsion in which glycerol or water droplets were dispersed in liquid crystals, we examined photochemical change of defect structures and inter-droplet distances by the photochemical manner. At the initial state, Saturn ring and hedgehog defects were formed around the droplets. For the glycerol droplets, we observed structural transformations between Saturn ring and boojums on irradiation with ultra-violet and visible light. For the water droplets, the inter-droplet distances varied by changing defect size on the irradiation. These phenomena would result from modulation of anchoring conditions of the droplets by the photoisomerization of the azo-dyes.
机译:我们研究了含有偶氮苯化合物的液晶(LC)胶体的物理性质和胶体结构的光化学操作。在将聚合物颗粒分散在宿主LC中的LC悬浮液中,我们实现了光散射性能的光化学控制。在向列阶段中,当悬浮液用两个玻璃板夹着时,薄膜变得不透明。这将归因于LC对准和材料之间的折射率不匹配的多麦片结构的外观。当偶氮染料的反式-CIS光硅白化诱导向致各向同性相转变时,不透明状态转化为透明的状态。这将是由于多麦草结构的消失和各向同性相中的折射率消失。当通过顺式对反式光硅白化获得向列相时,透明膜返回到初始不透明膜。在LC乳液中,其中将甘油或水滴分散在液晶中,我们通过光化学方式检查了缺陷结构和液滴间距的光化学变化。在初始状态下,在液滴周围形成土星环和刺猬缺陷。对于甘油液滴,我们观察到紫外线和可见光照射的土星环和Boojum之间的结构变换。对于水滴,通过改变辐射上的缺陷尺寸而变化的液滴距离变化。这些现象将由偶氮染料的光硅白化调节液滴的锚固条件。

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