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Light programmable micro/nanomotors with optically tunable in-phase electric polarization

机译:光可编程微/纳米热管,具有光学可调谐的相位电极极化

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To develop active nanomaterials that can instantly respond to external stimuli with designed mechanical motions is an important step towards the realization of nanorobots. Herein, we present our finding of a versatile working mechanism that allows instantaneous change of alignment direction and speed of semiconductor nanowires in an external electric field with simple visible-light exposure. The light induced alignment switch can be cycled over hundreds of times and programmed to express words in Morse code. With theoretical analysis and simulation, the working principle can be attributed to the optically tuned real-part (in-phase) electrical polarization of a semiconductor nanowire in aqueous suspension. The manipulation principle is exploited to create a new type of microscale stepper motor that can readily switch between in-phase and out-phase modes, and agilely operate independent of neighboring motors with patterned light. This work could inspire the development of new types of micro/nanomachines with individual and reconfigurable maneuverability for many applications.
机译:为了开发有活性的纳米材料,可以立即响应外部刺激的设计机械运动是实现纳米罗波的一个重要步骤。在此,我们介绍了多功能的工作机制,其允许在外部电场中瞬间改变半导体纳米线的具有简单的可见光暴露的外部电场。光引起的对准开关可以循环数百次并编程为在摩尔斯电码中表达单词。通过理论分析和仿真,工作原理可归因于含水悬浮液中半导体纳米线的光学调谐的实数(同相)电极。可以利用操纵原理来创建一种新型的微观步进电机,可以容易地在同相和超相模模式之间切换,并且独立于具有图案光的相邻电动机难以操作。这项工作可以激发新类型的微/纳米机,为许多应用提供个体和可重新配置的机动性。

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