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基于液晶聚合物的仿生光驱动软体机器人。

Bioinspired light-driven soft robots based on liquid crystal polymers.

机构信息

Laboratory of Stimuli-responsive Functional Materials & Devices, Department of Chemical Engineering and Chemistry, Eindhoven University of Technology, P.O. Box 513, 5600 MB, Eindhoven, The Netherlands.

出版信息

Chem Soc Rev. 2020 Sep 21;49(18):6568-6578. doi: 10.1039/d0cs00363h.

Abstract

Nature is a constant source of inspiration for materials scientists, fueling the dream of mimicking life-like motion and tasks in untethered, man-made devices. Liquid crystalline polymers (LCPs) programmed to undergo three-dimensional shape changes in response to light are promising materials for fulfilling this dream. The successful development of autonomous, highly controlled light-driven soft robots calls for an understanding of light-driven actuation, advancements in material function and performance, and progress in engineering principles for transforming actuation into life-like motions, from simple bending to walking, for example. This tutorial review includes an introduction to liquid crystal (LC)-based materials and highlights developments in light-responsive LC polymers, shape programmability and sustained motions to finally achieve bioinspired untethered soft robots able to perform locomotion and tasks.

摘要

自然是材料科学家源源不断的灵感来源,激发了人们在无需系绳的人造设备中模拟类生命运动和任务的梦想。经过编程可对光做出三维形状变化的液晶聚合物 (LCP) 是实现这一梦想的有前途的材料。要成功开发自主、高度可控的光驱动软机器人,就需要深入了解光驱动致动、材料功能和性能的进步,以及将致动转化为类生命运动(例如,从简单弯曲到行走)的工程原理的进展。本教程综述包括对基于液晶 (LC) 的材料的介绍,并重点介绍了光响应 LC 聚合物、形状可编程性和持续运动方面的最新进展,最终实现了仿生的无需系绳的软机器人,它们能够执行运动和任务。

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