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首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >A facile route towards controllable electric-optical performance of polymer-dispersed liquid crystal via the implantation of liquid crystalline epoxy network in conventional resin
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A facile route towards controllable electric-optical performance of polymer-dispersed liquid crystal via the implantation of liquid crystalline epoxy network in conventional resin

机译:通过植入常规树脂植入液晶环氧树网的聚合物分散液晶的可控电光性能的容纳途径

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摘要

A liquid crystalline epoxide was synthesized and its curing reactivity was compared with that of the conventional epoxy monomers. By utilizing the difference in curing reactivity between the liquid crystalline epoxide and nonliquid crystalline epoxy monomers, a coexistent system of polymer-dispersed and polymer-stabilized liquid crystal (LC) in the intelligent films can be obtained by two-step thermal curing method. If the later curing process was undertaken under an external electric field, the ordered microstructure of liquid crystalline epoxy polymer (LCEP) network can be implanted into the conventional epoxy resin. The competition of the anchoring effect on the LC molecules from the LCEP network and the conventional epoxy resin matrix was crucial to the electrooptical performance of the films. Moreover, the performance of the films can be adjusted by controlling the content of liquid crystalline epoxide and the external electric field applied during later curing. This approach can provide a facile route to regulate the electric-optical performance of polymer-dispersed liquid crystal films for practical applications.
机译:合成液晶环氧化物,并将其固化反应性与常规环氧单体的固化反应性进行了比较。通过利用液晶环氧化物和非石英晶环氧单体之间的固化反应性差异,通过两步热固化方法可以获得智能膜中的聚合物分散和聚合物稳定液晶(LC)的共同体系。如果在外部电场下进行后来的固化过程,则可以将液晶环氧聚合物(LCEP)网络的有序微结构植入常规环氧树脂中。从LCEP网络和常规环氧树脂基质对LC分子的锚定作用的竞争对于薄膜的电光性能至关重要。此外,可以通过控制液晶环氧化物的含量和在后来固化期间施加的外部电场来调节膜的性能。该方法可以提供容易路径来调节聚合物分散的液晶膜的电光性能,用于实际应用。

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