螺吡喃
聚丙烯酸
自愈水凝胶
变形
丙烯酸
共聚物
材料科学
肿胀 的
执行机构
软机器人
化学工程
纳米技术
聚合物
高分子化学
化学
计算机科学
复合材料
人工智能
工程类
计算机视觉
作者
Liwei Wu,Yiming Liu,Wenhong Yang,Zejun Liu,Cuiping Liu,Xiaomin Yuan,Lingling Zhang,Jie Ju,Xi Yao
标识
DOI:10.1002/advs.202416173
摘要
Smart hydrogels are considered as close mimics to the functions of biological entities. However, the stimuli-responsive performance of hydrogels is often limited by the slow diffusion process during water exchange with the surrounding environment. Here, a homogenous hydrogel composed of a water-soluble spiropyran covalently attached to the polyacrylic acid network is reported. This hydrogel demonstrates rapid and reversible shape-morphing behavior in air, underwater, or in oil. The mechanism involves the reversible protonation of spiropyran triggered by light stimuli. The release/capture of protons regulates the local proton concentration near the carboxyl groups in the polyacrylic acid network, distinguishing it from existing stimuli-responsiveness based on bulk water diffusion. The environment-independent shape-morphing performance of the unique in-situ stimuli transfer process, resulting in local water transfer amongst parts of a single piece of hydrogel is attributed. Eventually, light-controlled reversible actuation of the hydrogel is demonstrated, offering exciting possibilities for applications in flexible electronics, and soft actuators/robots.
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