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Prolate and oblate chiral liquid crystal spheroids

机译:扩展和扁平手性液晶晶体晶体

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摘要

Liquid crystals are known to exhibit intriguing textures and color patterns, with applications in display and optical technologies. This work focuses on chiral materials and examines the palette of morphologies that arises when microdroplets are deformed into nonspherical shapes in a controllable manner. Specifically, geometrical confinement and mechanical strain are used to manipulate orientational order, phase transitions, and topological defects that arise in chiral liquid crystal droplets. Inspired by processes encountered in nature, where insects and animals often rely on strain and temperature to alter the optical appearance of dispersed liquid crystalline elements, chiral droplets are dispersed in polymer films and deformation induced by uniaxial or biaxial stretching. Our measurements are interpreted by resorting to simulations of the corresponding systems, thereby providing an in-depth understanding of the morphologies that arise in these materials. The reported structures and assemblies offer potential for applications in smart coatings, smart fabrics, and wearable sensors.
机译:已知液晶表现出有趣的纹理和颜色图案,具有显示和光学技术的应用。这项工作侧重于手性材料,并在以可控方式以可控的方式逐渐变形为非球形形状时出现的形态。具体地,几何限制和机械菌株用于操纵手性液晶液晶液滴中出现的定义阶,相变性,相变性和拓扑缺陷。受到自然界中遇到的过程的启发,其中昆虫和动物经常依赖于应变和温度来改变分散的液晶元件的光学外观,手性液滴分散在高分子膜和由单轴或双轴拉伸诱导的变形中。我们的测量通过借助于模拟相应的系统来解释,从而提供对这些材料中产生的形态的深入理解。报告的结构和组件提供了智能涂料,智能织物和可穿戴传感器的应用潜力。

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