接口
机器人学
数码产品
人工智能
机器人
计算机科学
自愈
系统工程
人机交互
纳米技术
工程管理
工程类
材料科学
电气工程
医学
替代医学
病理
计算机硬件
作者
Yu Jun Tan,Glenys Jocelin Susanto,Hashina Parveen Anwar Ali,Benjamin C. K. Tee
标识
DOI:10.1002/adma.202002800
摘要
Robots are increasingly assisting humans in performing various tasks. Like special agents with elite skills, they can venture to distant locations and adverse environments, such as the deep sea and outer space. Micro/nanobots can also act as intrabody agents for healthcare applications. Self-healing materials that can autonomously perform repair functions are useful to address the unpredictability of the environment and the increasing drive toward the autonomous operation. Having self-healable robotic materials can potentially reduce costs, electronic wastes, and improve a robot endowed with such materials longevity. This review aims to serve as a roadmap driven by past advances and inspire future cross-disciplinary research in robotic materials and electronics. By first charting the history of self-healing materials, new avenues are provided to classify the various self-healing materials proposed over several decades. The materials and strategies for self-healing in robotics and stretchable electronics are also reviewed and discussed. It is believed that this article encourages further innovation in this exciting and emerging branch in robotics interfacing with material science and electronics.
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