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向列型触变液晶形状和指向矢场交叉的实验实现

Experimental realization of crossover in shape and director field of nematic tactoids.

作者信息

Jamali Vida, Behabtu Natnael, Senyuk Bohdan, Lee J Alex, Smalyukh Ivan I, van der Schoot Paul, Pasquali Matteo

机构信息

Department of Chemical and Biomolecular Engineering, Rice University, Houston, Texas 77005, USA.

Department of Physics, University of Colorado at Boulder, Boulder, Colorado 80309, USA.

出版信息

Phys Rev E Stat Nonlin Soft Matter Phys. 2015 Apr;91(4):042507. doi: 10.1103/PhysRevE.91.042507. Epub 2015 Apr 27.

Abstract

Spindle-shaped nematic droplets (tactoids) form in solutions of rod-like molecules at the onset of the liquid crystalline phase. Their unique shape and internal structure result from the interplay of the elastic deformation of the nematic and anisotropic surface forces. The balance of these forces dictates that tactoids must display a continuous variation in aspect ratio and director-field configuration. Yet, such continuous transition has eluded observation for decades: tactoids have displayed either a bipolar configuration with particles aligned parallel to the droplet interface or a homogeneous configuration with particles aligned parallel to the long axis of the tactoid. Here, we report the first observation of the continuous transition in shape and director-field configuration of tactoids in true solutions of carbon nanotubes in chlorosulfonic acid. This observation is possible because the exceptional length of carbon nanotubes shifts the transition to a size range that can be visualized by optical microscopy. Polarization micrographs yield the interfacial and elastic properties of the system. Absorbance anisotropy measurements provide the highest nematic order parameter (S=0.79) measured to date for a nematic phase of carbon nanotubes at coexistence with its isotropic phase.

摘要

在棒状分子溶液中,液晶相开始时会形成纺锤形向列相液滴(类晶)。它们独特的形状和内部结构源于向列相的弹性变形与各向异性表面力之间的相互作用。这些力的平衡决定了类晶在纵横比和指向矢场构型上必须呈现连续变化。然而,几十年来这种连续转变一直未被观测到:类晶要么呈现出粒子平行于液滴界面排列的双极构型,要么呈现出粒子平行于类晶长轴排列的均匀构型。在此,我们报告了首次在氯磺酸中碳纳米管的真实溶液中观测到类晶在形状和指向矢场构型上的连续转变。之所以能够进行这种观测,是因为碳纳米管的超长长度将转变转移到了可以通过光学显微镜观察到的尺寸范围。偏振显微照片揭示了该系统的界面和弹性特性。吸光度各向异性测量给出了迄今为止在碳纳米管的向列相与其各向同性相共存时所测得的最高向列序参数(S = 0.79)。

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