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Nematic-Field Driven Positioning of Particles in Liquid Crystal Droplets

机译:向列驱动液晶滴中粒子的定位

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摘要

Common nematic oils, such as 5CB, experience planar anchoring at aqueous interfaces. When these oils are emulsified, this anchoring preference and the resulting topological constraints lead to formation of droplets that exhibit one or two point defects within the nematic phase. Here, we explore the interactions of adsorbed particles at the aqueous interface through a combination of experiments and coarse-grained modeling, and demonstrate that surface-active particles, driven by elastic forces in the droplet, readily localize to these defect regions in a programmable manner. When droplets include two nanoparticles, these preferentially segregate to the two poles, thereby forming highly regular dipolar structures that could serve for hierarchical assembly of functional structures. Addition of sufficient concentrations of surfactant changes the interior morphology of the droplet, but pins defects to the interface, resulting in aggregation of the two particles.
机译:常见的向列油(例如5CB)在水界面处经历平面锚固。当这些油被乳化时,这种锚定偏好和所产生的拓扑约束导致形成在向列相内表现出一或两个点缺陷的液滴。在这里,我们通过结合实验和粗粒模型探索在水界面吸附颗粒的相互作用,并证明在液滴中弹力驱动下的表面活性颗粒易于以可编程方式定位于这些缺陷区域。当液滴包含两个纳米粒子时,它们优先偏向两个极点,从而形成高度规则的偶极结构,可用于功能结构的分层组装。添加足够浓度的表面活性剂会改变液滴的内部形态,但会将缺陷固定在界面上,从而导致两个颗粒的聚集。

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