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Chirality-induced helical self-propulsion of cholesteric liquid crystal droplets

机译:Chirality-induced螺旋自航的胆甾型液晶微滴

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摘要

We report the first experimental realization of a chiral artificial microswimmer exhibiting helical motion without any external fields. We discovered that a cholesteric liquid crystal (CLC) droplet with a helical director field swims in a helical path driven by the Marangoni flow in an aqueous surfactant solution. We also showed that the handedness of the helical path is reversed when that of the CLC droplet is reversed by replacing the chiral dopant with the enantiomer. In contrast, nematic liquid crystal (NLC) droplets exhibited ballistic motions. These results suggest that the helical motion of the CLC droplets is driven by chiral couplings between the Marangoni flow and rotational motion via the helical director field of CLC droplets.
机译:我们报告的第一个实验实现人工microswimmer表现出螺旋手性运动没有任何外部字段。胆甾型液晶(CLC)滴与董事螺旋磁场螺旋游泳路径由马朗戈尼流的水表面活性剂的解决方案。手性螺旋的路径时逆转CLC的液滴被取代逆转对映体的手性掺杂剂。相反,向列液晶液滴(缴送工作)表现出弹道运动。建议CLC的螺旋运动水滴是由手性之间的耦合马朗戈尼流和旋转运动通过螺旋主任CLC滴。

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