智能材料
材料科学
伪装
执行机构
纳米技术
纳米结构
结构着色
共价键
弹性体
光子晶体
化学
液晶
计算机科学
光电子学
复合材料
人工智能
有机化学
作者
Jiazhe Ma,Jiajia Yang,Cristian Valenzuela,Xuan Zhang,Ling Wang,Wei Feng
标识
DOI:10.1002/anie.202116219
摘要
Endowing a cholesteric liquid crystal elastomer (CLCE) exhibiting a helicoidal nanostructure with dynamically tailorable functionalities is of paramount significance for its emerging applications in diverse fields such as adaptive optics and soft robotics. Here, a mechanochromic, shape-programmable and self-healable CLCE is judiciously designed and synthesized through integrating dynamic covalent boronic ester bonds into the main-chain CLCE polymer network. The circularly polarized reflection of CLCEs can be reversibly and dynamically tuned across the entire visible spectrum by mechanical stretching. Thanks to the introduction of dynamic boronic ester bonds, the CLCEs were found to show robust reprogrammable and self-healing capabilities. The research disclosed herein can provide new insights into the development of 4D (color and 3D shape) programmable photonic actuators towards bioinspired camouflage, adaptive optical systems, and next-generation intelligent machines.
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