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向列型液晶纳米复合材料中通过分支形态实现的自组装。

Self-assembly via branching morphologies in nematic liquid-crystal nanocomposites.

作者信息

Gurevich Sebastian, Soule Ezequiel, Rey Alejandro, Reven Linda, Provatas Nikolas

机构信息

Department of Physics, Centre for the Physics of Materials, McGill University, Montreal, Quebec, Canada and Department of Chemical Engineering, McGill University, Montreal, Quebec, Canada.

Institute of Materials Science and Technology (INTEMA), University of Mar del Plata and National Research Council (CONICET), Mar del Plata, Argentina.

出版信息

Phys Rev E Stat Nonlin Soft Matter Phys. 2014 Aug;90(2):020501. doi: 10.1103/PhysRevE.90.020501. Epub 2014 Aug 7.

Abstract

We demonstrate that the morphological diversity in liquid-crystal hybrid systems is much richer than previously anticipated. More importantly, we reveal the existence of a dual mechanism for self-assembly of nanoparticles via morphological instabilities at phase boundaries. Using numerical simulations, we study the growth of isolated nematic droplets in an isotropic liquid crystal (LC) doped with nanoparticles (NPs) and provide insight into the nature of microstructure evolution in LC hybrids. Our work expands the numerically accessible time and length scales in these systems, capturing morphologies which develop under the competition of nonequilibrium elastic interactions, diffusive instabilities mediated by NP transport, and the anisotropy of the nematic field. By mapping nematic morphologies, we also propose a methodology for estimating various important LC material parameters that are difficult to obtain experimentally.

摘要

我们证明,液晶混合系统中的形态多样性比之前预期的要丰富得多。更重要的是,我们揭示了通过相界处的形态不稳定性实现纳米颗粒自组装的双重机制。通过数值模拟,我们研究了在掺杂有纳米颗粒(NP)的各向同性液晶(LC)中孤立向列相液滴的生长,并深入了解了LC混合体系中微观结构演化的本质。我们的工作扩展了这些系统中数值可及的时间和长度尺度,捕捉了在非平衡弹性相互作用、由NP输运介导的扩散不稳定性以及向列场各向异性的竞争下形成的形态。通过绘制向列相形态图,我们还提出了一种估算各种难以通过实验获得的重要LC材料参数的方法。

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