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Thermal and Optical Characterization of Polymer-Dispersed Liquid Crystals

机译:聚合物分散液晶的热敏和光学表征

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摘要

Liquid crystals are compounds that display order in the liquid state above the melting temperature and below the mesogenic isotropic temperature. Polymer-dispersed liquid crystals (PDLCs) are composite materials in which liquid crystalline material is dispersed within a polymer matrix to form micron-sized droplets. The aim was to prepare several cholesteryl esters or alkoxybenzoic acid PDLCs and characterise thermal and optical properties. Differential scanning calorimetry and polarized optical microscopy were employed. The matrix polymer was a one-component UV-curable epoxy-acrylate resin. PDLCs were formed through entropy controlled phase separation resulting from UV-initiated crosslinking. The liquid crystals, both as mesogenic moieties and as dispersed droplets, exhibited various textures according to their molecular order and orientation. These textures formed in constrained regions separated by phase boundaries that occurred at temperatures characteristic of each liquid crystal used. The PDLC phase transitions occurred at temperatures lower than those exhibited by the mesogenic components in the neat state.
机译:液晶是在熔融温度和低于介晶各向同性温度的液态下显示液态的化合物。聚合物分散的液晶(PDLC)是复合材料,其中液晶材料分散在聚合物基质内以形成微米尺寸的液滴。目的是制备几种胆固醇酯或烷氧基苯甲酸PDLC并表征热和光学性质。采用差分扫描量热法和偏振光光学显微镜。基质聚合物是单组分UV可固化的环氧丙烯酸酯树脂。通过UV引发的交联产生的熵控相分离形成PDLC。液晶,既是脱源部分和分散液滴,也根据其分子阶阶层和取向表现出各种纹理。这些纹理形成在由所用液晶的温度特性发生的相位边界分开的受约束区域中。 PDLC相转变发生在低于介于介质的介质组分中呈现的温度下的温度。

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