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Self-supporting liquid crystal composite

机译:自支撑液晶复合材料

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Colloid-liquid crystal composites are a novel type of soft condensed matter, formed from dispersions of colloidal particles in liquid crystalline hosts. Here, we investigate the kinetics of network formation in mixtures of the thermotropic liquid crystal 5CB and nearly hard sphere colloids (polymethylmethacrylate particles), occurring as the liquid crystal moves from the isotropic to the nematic state. In the isotropic phase the particles (volume fraction < 0.2) are homogeneously distributed. While cooling through the isotropic-nematic phase transition the particles are expelled by the liquid crystal, forming a three dimensional network. Using time-resolved laser scanning confocal microscopy (LSCM) we image the dynamics of the network formation at single particle resolution. The particles perform Brownian motion in the isotropic phase, whereas in the network they remain frozen in position. We observe a broad distribution of the size of the liquid crystal domains, up to a few micrometers. DSC measurements show that the particles do not change the temperature of the phase transition, indicating that the particles do not alter the bulk properties of the liquid crystal.
机译:胶体液晶复合材料是一种新型的软冷凝物,由液晶宿主中的胶体颗粒的分散形成。在这里,我们研究了随着液晶从各向同性移动到向列状态的情况下,在热致液晶5cb和几乎硬球胶体(聚甲基丙烯酸甲酯颗粒)的混合物中进行网络形成的动力学。在各向同性相中,颗粒(体积分数<0.2)均匀分布。虽然通过各向同性 - 向列相转变冷却颗粒被液晶排出,形成三维网络。使用时间分辨的激光扫描共聚焦显微镜(LSCM),我们以单个粒子分辨率映像网络形成的动态。颗粒在各向同性阶段进行布朗运动,而在网络中,它们保持在位置冻结。我们观察到液晶畴的宽度分布,直至几微米。 DSC测量表明,颗粒不改变相转变的温度,表明颗粒不改变液晶的堆积性质。

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