Institute for Molecular Engineering, The University of Chicago, Chicago, IL 60637, USA.
Soft Matter. 2017 Oct 25;13(41):7465-7472. doi: 10.1039/c7sm01403a.
Liquid crystal shells have attracted considerable attention in recent years. In such systems, a combination of confinement and curvature generates topological defect structures that do not exist in the bulk. Past studies, however, have largely focused on perfectly spherical shells, and little attention has been devoted to the impact of core geometry on the configuration and arrangement of topological defects. In this work, a microfluidic glass capillary device is used to encapsulate spherical and prolate ellipsoidal particles in nematic liquid crystal (LC) droplets dispersed in aqueous media. Our experimental studies show that, when trapped inside a radial LC droplet, spherical particles with both homeotropic and planar anchoring are highly localized at the droplet's center. While the radial configuration of the LC droplets is not altered by a homeotropic particle, polystyrene particles with strong planar anchoring disturb the radial ordering, leading to a twisted structure. Experiments indicate that off-center particle positions can also arise, in which defects are displaced towards the vicinity of the droplet's surface. In contrast, when prolate ellipsoidal particles are encapsulated in a thick radial LC shell, the minimum free energy corresponds to configurations where the particle is positioned at the droplet center. In this case, defects arise at the two ends of the prolate ellipsoid, where the curvature of the particle is maximal, leading to the formation of peculiar hybrid and twisted structures.
近年来,液晶壳引起了相当大的关注。在这样的系统中,限制和曲率的组合产生了在体相不存在的拓扑缺陷结构。然而,过去的研究主要集中在完美的球形壳上,很少关注核的几何形状对拓扑缺陷的构型和排列的影响。在这项工作中,使用微流控玻璃毛细管装置将球形和长椭球形颗粒封装在各向异性液晶(LC)液滴中,这些液滴分散在水介质中。我们的实验研究表明,当被困在径向 LC 液滴内时,具有垂直和平行锚定的球形颗粒高度局域在液滴的中心。虽然 LC 液滴的径向构型不受垂直粒子的影响,但具有强平行锚定的聚苯乙烯粒子会干扰径向有序,导致扭曲结构。实验表明,也会出现偏离中心的粒子位置,其中缺陷会被推向液滴表面附近。相比之下,当长椭球形颗粒被封装在厚的径向 LC 壳中时,最小自由能对应于粒子位于液滴中心的构型。在这种情况下,缺陷出现在长椭球的两端,那里的粒子曲率最大,导致形成奇特的混合和扭曲结构。