Phase behavior of nematic-nanoparticle mixtures

Arbresha Hölbl, A. Ranjkesh, Andreja Abina, S. Kralj, A. Zidanšek
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Abstract

We study the effects of nanoparticles (NPs) on thermotropic nematic liquid crystals (LCs) in relatively dilute NP–LC mixtures. We are interested in the fundamental generic mechanisms that quantitatively and qualitatively affect the phase behavior of LCs. A simple molecular field analysis shows that a phase transition will likely occur upon entry into the ordered phase. Moreover, the interaction between nematogenic NPs and LCs could force a sergeant–soldier-like behavior, in which only the phase behavior of one component is affected despite the symmetric appearance of the coupling term. When NPs are anisotropic, their influence on LC phase behavior can be qualitatively different depending on the anchoring, even in the absence of the disorder. We illustrate numerically that a random-field-type disorder might impose either short-range, quasi-long-range, or even long-range order, which might survive.
向列相-纳米颗粒混合物的相行为
本文研究了纳米颗粒(NPs)在相对稀释的NP-LC混合物中对热致向列相液晶(lc)的影响。我们对定量和定性地影响lc相行为的基本一般机制感兴趣。简单的分子场分析表明,进入有序相后可能发生相变。此外,nematogenic NPs和LCs之间的相互作用可能会导致类似中士-士兵的行为,在这种行为中,尽管耦合项是对称的,但只有一个组分的相行为受到影响。当NPs是各向异性时,它们对LC相行为的影响可能会因锚定的不同而有质的不同,即使在没有无序的情况下也是如此。我们用数值说明了一个随机场类型的无序可以施加短程、准远程或甚至可能存活的远程秩序。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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