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铁电纳米颗粒/弯曲核向列型液晶混合物的弹性和介电性能

Elastic and dielectric properties of ferroelectric nanoparticles/bent-core nematic liquid crystal blend.

作者信息

Khan Raj Kumar, Turlapati Srikanth, Rao Nandiraju V S, Ghosh Sharmistha

机构信息

Department of Physics, University of Calcutta, 92 Acharya Prafulla Chandra Road, 700 009, Kolkata, India.

Chemistry Department, Assam University, 788011, Silchar, India.

出版信息

Eur Phys J E Soft Matter. 2017 Sep;40(9):75. doi: 10.1140/epje/i2017-11564-x. Epub 2017 Sep 4.

Abstract

Bent-core liquid crystals present the first evidence of forming polar superstructures from achiral molecules. The nematic phase is the newest member of the bent-core family and turns out to be extremely interesting owing to its distinct features compared to its calamitic counterpart. Here the investigation of one achiral unsymmetrical 2-methyl-3-amino-benzoic acid (2,6-substituted toluene)-derived four-ring bent-core nematic (BCN) liquid crystals (11-2M-F) is presented after nanodispersion. Ferroelectric nanoparticles significantly affect the phase transition temperature, threshold voltage, dielectric permittivity, elastic constants and splay viscosity of the pristine BCN. In most bent-core nematic liquid crystals the bent elastic constant (K) is usually lower than the splay elastic constant (K) owing to the presence of short-range smectic-C-like correlations in the nematic phase. Thus the elastic anisotropy ([Formula: see text]) is usually negative in bent-core nematics unlike in rod-like nematic liquid crystals where K is always greater than K. Here we report a short-core bent-shaped nematic liquid crystal whose negative elastic anisotropy was turned to positive by minute addition of ferroelectric nanoparticles.

摘要

弯曲核液晶首次证明了由非手性分子形成极性超结构。向列相是弯曲核家族的最新成员,由于其与棒状对应物相比具有独特的特征,结果证明非常有趣。本文介绍了一种非手性不对称2-甲基-3-氨基苯甲酸(2,6-取代甲苯)衍生的四环弯曲核向列(BCN)液晶(11-2M-F)在纳米分散后的情况。铁电纳米颗粒显著影响原始BCN的相变温度、阈值电压、介电常数、弹性常数和展曲粘度。在大多数弯曲核向列液晶中,由于向列相中存在类似近晶C的短程相关性,弯曲弹性常数(K)通常低于展曲弹性常数(K)。因此,与棒状向列液晶中K始终大于K不同,弯曲核向列相中的弹性各向异性([公式:见原文])通常为负。在此,我们报道了一种短核弯曲形状的向列液晶,通过微量添加铁电纳米颗粒,其负弹性各向异性转变为正。

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