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首页> 外文期刊>Angewandte Chemie >A Light-Activated Polymer Composite Enables On-Demand Photocontrolled Motion: Transportation at the Liquid/Air Interface
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A Light-Activated Polymer Composite Enables On-Demand Photocontrolled Motion: Transportation at the Liquid/Air Interface

机译:光活化的聚合物复合材料使得按需光电控制运动:液体/空气接口的运输

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摘要

Swimmers at liquid/air interfaces have drawn enormous attention because of their potential applications. Described herein is one novel light-driven swimmer based on a bimorph composite structure of a photoresponsive liquid-crystalline polymer network and a commercially available polyimide (Kapton). The motion of the swimmer can be controlled by photoirradiation. The bilayer-structured film shows quickly photoinduced bending towards the Kapton side upon exposure to UV light, and recovers immediately after removal of light. When placed on a liquid surface, the swimmer propels itself continually though rhythmic beating the liquid like a dolphin moving forward with its tail fin. Besides, light-powered rotation of the swimmer is successfully achieved by simply changing the length-width ratio and the irradiation site, mimicking the function of a dolphin's pectoral fin. Combining the forward movement and rotation motion together, on-demand directional control of the photo-driven swimmer can be readily obtained at room temperature, showing promise for miniaturized units for transportation.
机译:液体/空气界面的游泳者因其潜在的应用而引起了巨大的关注。本文描述的是一种基于光反应液晶聚合物网络和市售聚酰亚胺(Kapton)的二硼复合结构的一种新型光驱动游泳运动员。游泳运动员的运动可以通过PhotosoRadiation来控制。双层结构化薄膜在暴露于UV光时朝向Kapton侧的快速光学突出,并在去除光后立即恢复。当放置在液体表面上时,游泳运动员虽然节奏地击打像海豚向前移动的液体跳动液体,但是呈节奏地推动。此外,通过简单地改变长度宽度和照射位点,模仿海豚的胸鳍的功能,可以成功实现游泳运动员的光动力旋转。将前进运动和旋转运动组合在一起,在室温下可以容易地获得光驱动游泳运动员的按需方向控制,显示出用于运输的小型化单元的承诺。

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