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棒状和盘状颗粒液晶单分子层的相行为。

Phase behaviour of liquid-crystal monolayers of rod-like and plate-like particles.

作者信息

Martínez-Ratón Yuri, Varga Szabolcs, Velasco Enrique

机构信息

Grupo Interdisciplinar de Sistemas Complejos (GISC), Departamento de Matemáticas, Escuela Politécnica Superior, Universidad Carlos III de Madrid, Avenida de la Universidad 30, E-28911 Leganés, Madrid, Spain.

Institute of Physics and Mechatronics, University of Pannonia, PO Box 158, Veszprém H-8201, Hungary.

出版信息

J Chem Phys. 2014 May 28;140(20):204906. doi: 10.1063/1.4876719.

Abstract

Orientational and positional ordering properties of liquid crystal monolayers are examined by means of Fundamental-Measure Density Functional Theory. Particles forming the monolayer are modeled as hard parallelepipeds of square section of size σ and length L. Their shapes are controlled by the aspect ratio κ = L/σ (>1 for prolate and <1 for oblate shapes). The particle centers of mass are restricted to a flat surface and three possible and mutually perpendicular orientations (in-plane and along the layer normal) of their uniaxial axes are allowed. We find that the structure of the monolayer depends strongly on particle shape and density. In the case of rod-like shapes, particles align along the layer normal in order to achieve the lowest possible occupied area per particle. This phase is a uniaxial nematic even at very low densities. In contrast, for plate-like particles, the lowest occupied area can be achieved by random in-plane ordering in the monolayer, i.e., planar nematic ordering takes place even at vanishing densities. It is found that the random in-plane ordering is not favorable at higher densities and the system undergoes an in-plane ordering transition forming a biaxial nematic phase or crystallizes. For certain values of the aspect ratio, the uniaxial-biaxial nematic phase transition is observed for both rod-like and plate-like shapes. The stability region of the biaxial nematic phase enhances with decreasing aspect ratios for plate-like particles, while the rod-like particles exhibit a reentrant phenomenon, i.e., a sequence of uniaxial-biaxial-uniaxial nematic ordering with increasing density if the aspect ratio is larger than 21.34. In addition to this, packing fraction inversion is observed with increasing surface pressure due to the alignment along the layers normal. At very high densities the nematic phase destabilizes to a nonuniform phases (columnar, smectic, or crystalline phases) for both shapes.

摘要

通过基本测量密度泛函理论研究了液晶单层的取向和位置有序性质。构成单层的粒子被建模为尺寸为σ的方形截面和长度为L的硬平行六面体。它们的形状由纵横比κ = L/σ控制(κ>1为长形,κ<1为扁形)。粒子的质心被限制在一个平面上,并且允许其单轴轴有三种可能且相互垂直的取向(面内和平行于层法线)。我们发现单层的结构强烈依赖于粒子形状和密度。对于棒状形状的粒子,粒子沿层法线排列以实现每个粒子尽可能低的占据面积。即使在非常低的密度下,这个相也是单轴向列相。相反,对于板状粒子,通过单层中的随机面内有序排列可以实现最低的占据面积,即即使在密度趋近于零时也会发生平面向列有序排列。发现在较高密度下随机面内有序排列是不利的,系统会经历面内有序转变形成双轴向列相或结晶。对于纵横比的某些值,在棒状和板状形状中都观察到了单轴 - 双轴向列相转变。对于板状粒子,双轴向列相的稳定区域随着纵横比的减小而增大,而对于棒状粒子,如果纵横比大于21.34,则会出现重入现象,即随着密度增加,单轴 - 双轴 - 单轴向列有序排列的序列。除此之外,由于沿层法线的排列,随着表面压力的增加会观察到堆积分数反转。在非常高的密度下,对于两种形状,向列相都会失稳到非均匀相(柱状、近晶相或晶相)。

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