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Electro-optical properties of PDLC films using diethylenetriamine (DETA) hardener

机译:使用二亚乙基三胺(DETA)硬化剂的PDLC膜的电光特性

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The author's results obtained today and in previous works are summarized. The present work has been performed to investigate the effects of the structure and electro-optical (E-O) properties of epoxy resin based polymer dispersed liquid crystal (PDLC) films smart glass using Diethylenetriamine (DETA) as hardener with 4-cyano-4′-penthylbiphenyl (5CB) liquid crystal. In this study we have been prepared PDLC films by the thermal polymerization-induced phase separation (PIPS) method, with a thickness of 10.0 ± 1.0?μm controlled by a polyethylene terephathalate (PET) spacer and optimal preparation condition were 25% and 30% 5CB LC, respectively, with a curing time 7?hours at 70°c temperature. In addition, PDLC films were prepared with different amounts of DETA to investigate the best ratio of the hardener. Results showed that when the weight ratio of LC 5CB was 30% in PDLC and mol 3% of DETA hardener, then dispersed state of LC were well proportioned, and the variation of transmittance reached the highest value. The optical characterization of the PDLC film indicates an improvement of the angular transmission of visible light. Meanwhile, it is examined that by adjusting the mol% of hardener and LC 5CB content possesses good E-O properties with a low energy efficient method for preparing PDLC smart glass display technology.
机译:提交人今天获得的成果和以前的作品总结了。已经进行了本作的工作以研究环氧树脂基聚合物分散液晶(PDLC)薄膜智能玻璃的结构和电光(EO)性能使用二亚乙基三胺(DETA)作为硬化剂,具有4-氰基-4'的硬化剂五苯基苯基(5cb)液晶。在该研究中,我们已经通过热聚合诱导的相分离(PIPS)方法制备了PDLC膜,厚度为10.0±1.0≤μm,由聚乙烯Terephatalate(PET)间隔物控制,最佳制剂条件为25%和30%分别为5CB LC,固化时间7?小时在70℃温度下。另外,用不同量的滴度制备PDLC膜以研究硬化剂的最佳比例。结果表明,当LC 5CB的重量比在PDLC和MOL 3%的DETA硬化剂中的3%的时间增加时,然后LC的分散状态很大,透射率的变化达到了最高值。 PDLC膜的光学表征表示可见光的角度传递的改善。同时,通过调节硬化剂的摩尔%,LC 5CB含量的摩尔%具有良好的E-O性能,具有低能量有效的方法,用于制备PDLC智能玻璃显示技术。

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