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近晶膜的弹性模量:杆级标度分析

Elastic moduli of a smectic membrane: a rod-level scaling analysis.

作者信息

Wensink H H, Morales Anda L

机构信息

Laboratoire de Physique des Solides-UMR 8502, CNRS & Université Paris-Sud, Université Paris-Saclay, 91405 Orsay, France.

出版信息

J Phys Condens Matter. 2018 Feb 21;30(7):075101. doi: 10.1088/1361-648X/aaa646.

Abstract

Chiral rodlike colloids exposed to strong depletion attraction may self-assemble into chiral membranes whose twisted director field differs from that of a 3D bulk chiral nematic. We formulate a simple microscopic variational theory to determine the elastic moduli of rods assembled into a bidimensional smectic membrane. The approach is based on a simple Onsager-Straley theory for a non-uniform director field that we apply to describe rod twist within the membrane. A microscopic approach enables a detailed estimate of the individual Frank elastic moduli (splay, twist and bend) as well as the twist penetration depth of the smectic membrane in relation to the rod density and shape. We find that the elastic moduli are distinctly different from those of a bulk nematic fluid, with the splay elasticity being much stronger and the curvature elasticity much weaker than for rods assembled in a three-dimensional nematic fluid. We argue that the use of the simplistic one-constant approximation in which all moduli are assumed to be of equal magnitude is not appropriate for modelling the structure-property relation of smectic membranes.

摘要

暴露于强耗散吸引力的手性棒状胶体可能会自组装成手性膜,其扭曲的指向矢场与三维体相手性向列相不同。我们制定了一个简单的微观变分理论来确定组装成二维近晶膜的棒的弹性模量。该方法基于一个简单的昂萨格 - 斯特拉利理论,用于描述不均匀指向矢场,我们将其应用于描述膜内的棒扭转。微观方法能够详细估计各个弗兰克弹性模量(展曲、扭转和弯曲)以及近晶膜相对于棒密度和形状的扭转穿透深度。我们发现弹性模量与体相向列流体的弹性模量明显不同,展曲弹性比组装在三维向列流体中的棒要强得多,而曲率弹性则弱得多。我们认为,假设所有模量大小相等的简单单常数近似不适用于模拟近晶膜的结构 - 性能关系。

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