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首页> 外文期刊>Angewandte Chemie >Object Transportation System Mimicking the Cilia of Paramecium aurelia Making Use of the Light-Controllable Crystal Bending Behavior of a Photochromic Diarylethene
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Object Transportation System Mimicking the Cilia of Paramecium aurelia Making Use of the Light-Controllable Crystal Bending Behavior of a Photochromic Diarylethene

机译:对象运输系统模仿ParameCium Aurelia的Cilia,利用光致变色二芳基乙烯的可光可调晶体弯曲行为

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摘要

The design of an object transportation system exploiting the bending behavior of surface-assembled diarylethene crystals is reported. A photoactuated smart surface based on this system can transport polystyrene beads to a desired area depending on the direction of the incident light. Two main challenges were addressed to accomplish directional motion along a surface: first, the preparation of crystals whose bending behavior depends on the direction of incident light; second, the preparation of a film on which these photochromic crystal plates are aligned. Nuclei generation and nuclear growth engineering were achieved by using a roughness-controlled dotted microstructured substrate. This system demonstrates how to achieve a mechanical function as shown by remote-controlled motion along a surface.
机译:报道了利用表面组装的二芳基乙烯晶体的弯曲行为的物体运输系统的设计。 基于该系统的透光型智能表面可以根据入射光的方向将聚苯乙烯珠子输送到所需区域。 解决了两个主要挑战以沿着表面实现定向运动:首先,弯曲行为取决于入射光方向的晶体的制备; 其次,将这些光致变色晶体板对准的薄膜的制备。 通过使用粗糙度控制的虚线微结构基底实现核生成和核生长工程。 该系统演示了如何实现如沿着表面的远程控制运动所示的机械功能。

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