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基于光响应水凝胶的软体机器人:综述

Photoresponsive hydrogel-based soft robot: A review.

作者信息

Jiang Jingang, Xu Shuainan, Ma Hongyuan, Li Changpeng, Huang Zhiyuan

机构信息

Key Laboratory of Advanced Manufacturing and Intelligent Technology, Ministry of Education, Harbin University of Science and Technology, Harbin, 150080, Heilongjiang, PR China.

Harbin Branch of Taili Communication Technology Limited, China Electronics Technology Group Corporation, Harbin, 150080, Heilongjiang, PR China.

出版信息

Mater Today Bio. 2023 May 10;20:100657. doi: 10.1016/j.mtbio.2023.100657. eCollection 2023 Jun.

Abstract

Soft robots have received a lot of attention because of their great human-robot interaction and environmental adaptability. Most soft robots are currently limited in their applications due to wired drives. Photoresponsive soft robotics is one of the most effective ways to promote wireless soft drives. Among the many soft robotics materials, photoresponsive hydrogels have received a lot of attention due to their good biocompatibility, ductility, and excellent photoresponse properties. This paper visualizes and analyzes the research hotspots in the field of hydrogels using the literature analysis tool Citespace, demonstrating that photoresponsive hydrogel technology is currently a key research direction. Therefore, this paper summarizes the current state of research on photoresponsive hydrogels in terms of photochemical and photothermal response mechanisms. The progress of the application of photoresponsive hydrogels in soft robots is highlighted based on bilayer, gradient, orientation, and patterned structures. Finally, the main factors influencing its application at this stage are discussed, including the development directions and insights. Advancement in photoresponsive hydrogel technology is crucial for its application in the field of soft robotics. The advantages and disadvantages of different preparation methods and structures should be considered in different application scenarios to select the best design scheme.

摘要

软机器人因其出色的人机交互能力和环境适应性而备受关注。目前,大多数软机器人由于采用有线驱动,其应用受到限制。光响应性软机器人技术是推动无线软驱动的最有效方法之一。在众多软机器人材料中,光响应性水凝胶因其良好的生物相容性、延展性和出色的光响应特性而备受关注。本文使用文献分析工具Citespace对水凝胶领域的研究热点进行可视化和分析,表明光响应性水凝胶技术目前是一个关键的研究方向。因此,本文从光化学和光热响应机制方面总结了光响应性水凝胶的研究现状。基于双层、梯度、取向和图案化结构,突出了光响应性水凝胶在软机器人中的应用进展。最后,讨论了现阶段影响其应用的主要因素,包括发展方向和见解。光响应性水凝胶技术的进步对其在软机器人领域的应用至关重要。在不同的应用场景中,应考虑不同制备方法和结构的优缺点,以选择最佳设计方案。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/97f2/10205512/af7ba5f00994/ga1.jpg

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