伪装
软机器人
自愈水凝胶
结构着色
变形
仿生学
执行机构
纳米技术
材料科学
智能材料
软质材料
超分子化学
计算机科学
人工智能
化学
高分子化学
光子晶体
光电子学
分子
有机化学
作者
Shuxin Wei,Wei Lü,Xiaoxia Le,Chunxin Ma,Han Lin,Baoyi Wu,Jiawei Zhang,Patrick Théato,Tao Chen
标识
DOI:10.1002/ange.201908437
摘要
Abstract Many living organisms have amazing control over their color, shape, and morphology for camouflage, communication, and even reproduction in response to interplay between environmental stimuli. Such interesting phenomena inspire scientists to develop smart soft actuators/robotics via integrating color‐changing functionality based on polymer films or elastomers. However, there has been no significant progress in synergistic color‐changing and shape‐morphing capabilities of life‐like material systems such as hydrogels. Herein, we reported a new class of bioinspired synergistic fluorescence‐color‐switchable polymeric hydrogel actuators based on supramolecular dynamic metal–ligand coordination. Artificial hydrogel apricot flowers and chameleons have been fabricated for the first time, in which simultaneous color‐changing and shape‐morphing behaviors are controlled by the subtle interplay between acidity/alkalinity, metal ions, and temperature. This work has made color‐changeable soft machines accessible and is expected to hold wide potential applications in biomimetic soft robotics, biological sensors, and camouflage.
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