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盘状液晶元和球形磁性纳米粒子二元混合物中的场致反列相和双轴有序化

Field-induced anti-nematic and biaxial ordering in binary mixtures of discotic mesogens and spherical magnetic nanoparticles.

作者信息

Peroukidis Stavros D, Klapp Sabine H L, Vanakaras Alexandros G

机构信息

Department of Chemical Engineering, University of Patras, 26504 Patras, Greece.

出版信息

Soft Matter. 2020 Dec 16;16(47):10667-10675. doi: 10.1039/d0sm01366h.

Abstract

Using computer simulations we explore the equilibrium structure and response to external stimuli of complex magnetic hybrids consisting of magnetic particles in discotic liquid crystalline matrices. We show that the anisotropy of the liquid crystalline matrix (either in the nematic or in the columnar phase) promotes the collective orientational ordering of self-assembled magnetic particles. Upon applying an external homogeneous magnetic field in an otherwise isotropic state, the magnetic particles self-assemble into linear-rodlike-chains. At the same time structural changes occur in the matrix. The matrix transforms from an isotropic to a non-conventional anti-nematic state in which the symmetry axis of the discs is, on average, perpendicular to the magnetic field. In addition, a stable biaxial nematic state is found upon applying an external field to an otherwise uniaxial discotic nematic state. These observed morphologies constitute an appealing alternative to binary mixtures of rigid rod-disc system and indicate that non-trivial biaxial ordering can be obtained in the presence of a uniaxial external stimulus.

摘要

我们利用计算机模拟研究了由盘状液晶基质中的磁性颗粒组成的复杂磁性混合物的平衡结构及其对外部刺激的响应。我们表明,液晶基质(向列相或柱状相)的各向异性促进了自组装磁性颗粒的集体取向有序化。在原本各向同性的状态下施加外部均匀磁场时,磁性颗粒自组装成线性棒状链。与此同时,基质中会发生结构变化。基质从各向同性转变为非常规的反铁电向列相状态,其中盘状分子的对称轴平均垂直于磁场。此外,在向原本单轴盘状向列相状态施加外部磁场时,会发现一种稳定的双轴向列相状态。这些观察到的形态构成了刚性棒 - 盘系统二元混合物的一种有吸引力的替代方案,并表明在单轴外部刺激存在的情况下可以获得非平凡的双轴有序化。

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