自愈水凝胶
材料科学
超分子化学
执行机构
智能材料
软质材料
微流控
纳米技术
软机器人
人工肌肉
高分子化学
计算机科学
人工智能
分子
有机化学
化学
作者
Bin Xue,Meng Qin,Tiankuo Wang,Junhua Wu,Dongjun Luo,Qing Jiang,Ying Li,Yi Cao,Wei Wang
标识
DOI:10.1002/adfm.201603947
摘要
Hydrogel actuators that can undergo structural change upon external stimuli are highly demanded due to their potential applications in diverse fields. However, the actuators based on physically cross‐linked supramolecular hydrogels are largely unexplored. This study reports the engineering of an electrically controllable supramolecular hydrogel as an actuator from a self‐assembling short peptide, in which a catechol moiety is introduced as the stimuli‐responsive motif. This kind of electrochemically responsive hydrogel is mechanically stable and can switch its physical properties dramatically upon the applied electric field. The mechanism and reversibility of the change are studied in detail. As a proof of principle, devices are designed to perform the unidirectional expansion and rotational motion under electrical stimulations. The applications of the actuators for controllable drug release and actuation of microfluidic devices are also illustrated. It is expected that these kind of supramolecular hydrogel actuators can find broad applications as novel biosensors, artificial robots, and smart soft materials.
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