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Thermophysical, dielectric, and electro-optic properties of nematic liquid crystal droplets confined to a thermoplastic polymer matrix

机译:局限在热塑性聚合物基体中的向列液晶液滴的热物理,介电和电光特性

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摘要

The thermophysical, dielectric and electro-optic properties of polymer-dispersed liquid crystal (PDLC) films made of monodisperse polystyrene (PS) and 4-n-pentyl-4(')-cyanobiphenyl (5CB) are investigated by polarized optical microscopy, differential scanning calorimetry, ac impedance analysis, and forward transmittance measurement technique. The PS-5CB system exhibits an upper critical solution temperature (UCST) shape phase diagram with a wide isotropic+isotropic (I+I) miscibility gap between the isotropic and nematic+isotropic (N+I) regions. An absorption domain in the dielectric spectrum of PDLC films was clearly observed at low frequency, and unambiguously assigned to the confined liquid crystalline phase in both nematic and isotropic states. The correlation between the dielectric and electro-optical results for PS-5CB (30:70) samples has shown that in the vicinity of the low frequency absorption domain (similar to200 Hz at T=25degreesC), a drastic decrease in the optical transmittance of the film occurs. This phenomenon can be related to an interfacial polarization process resulting from a charge accumulation at the droplet-polymer interface (Maxwell-Wagner-Sillars effect).
机译:用偏光光学显微镜研究了由单分散聚苯乙烯(PS)和4-正戊基-4(')-氰基联苯(5CB)制成的聚合物分散液晶(PDLC)薄膜的热物理,介电和电光性质。扫描量热法,交流阻抗分析和正向透射率测量技术。 PS-5CB系统显示出较高的临界溶液温度(UCST)形状相图,在各向同性和向列+各向同性(N + I)区域之间具有宽的各向同性+各向同性(I + I)混溶间隙。在低频下清楚地观察到PDLC薄膜介电谱中的吸收域,并且在向列和各向同性状态下,明确地将其分配给了受限的液晶相。 PS-5CB(30:70)样品的介电和电光结果之间的相关性表明,在低频吸收域附近(类似于T = 25℃下的200 Hz),PS-5CB的光透射率急剧下降。电影发生了。这种现象可能与界面极化过程有关,该极化过程是由于液滴-聚合物界面处的电荷积累(麦克斯韦-瓦格纳-西勒效应)引起的。

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