The effect of a compatible liquid crystal polymer on homogeneous reinforcement of mesogenic and nonmesogenic rigid-rod monomers

H. Hakemi
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引用次数: 0

Abstract

Discrete amount of main-chain Liquid Crystal Polymers (LCP) could mechanically reinforce the mesophase of rigid-rod monomers to form a supramolecular homogeneous composite for Liquid Crystal Display (LCD) materials. Moreover, a homogeneously dispersed LCP may induce an enantiotropic transition in monotropic or non-mesogenic rigid-rod compounds. In this work, we studied the blends of a flexible main-chain nematic LCP with an enantiotropic nematic, a monotropic nematic, and two non-mesogenic rigid-rod compounds as model systems. The results indicate that homogenous reinforcement of thermotropic LCP in these monomers is a valid concept and could lead to improvement of mesogenic stability, orienational and mechanical properties of rigid-rod materials for various applications.
相容液晶聚合物对介生和非介生刚性棒单体均相增强的影响
离散量的主链液晶聚合物(LCP)可以机械强化刚性棒单体的中间相,形成液晶显示(LCD)材料的超分子均质复合材料。此外,均匀分散的LCP可能在单向性或非介源性刚性棒化合物中诱导对映性转变。在这项工作中,我们研究了一种柔性主链向列相LCP与一种对映向列相、一种单向列相和两种非介生刚性棒化合物的共混物作为模型体系。结果表明,热致性LCP在这些单体中均相增强是一个有效的概念,可以改善刚性棒材料的介观稳定性、取向性和力学性能,适用于各种应用。
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