自愈水凝胶
材料科学
纳米技术
自愈
压力敏感
导电体
生物医学工程
复合材料
光电子学
高分子化学
胶粘剂
医学
病理
替代医学
图层(电子)
作者
Mohammad Ali Darabi,Ali Khosrozadeh,Rene Mbeleck,Yuqing Liu,Qiang Chang,Junzi Jiang,Jun Cai,Quan Wang,Gaoxing Luo,Malcolm Xing
标识
DOI:10.1002/adma.201700533
摘要
The advent of conductive self‐healing (CSH) hydrogels, a class of novel materials mimicking human skin, may change the trajectory of the industrial process because of their potential applications in soft robots, biomimetic prostheses, and health‐monitoring systems. Here, the development of a mechanically and electrically self‐healing hydrogel based on physically and chemically cross‐linked networks is reported. The autonomous intrinsic self‐healing of the hydrogel is attained through dynamic ionic interactions between carboxylic groups of poly(acrylic acid) and ferric ions. A covalent cross‐linking is used to support the mechanical structure of the hydrogel. Establishing a fair balance between the chemical and physical cross‐linking networks together with the conductive nanostructure of polypyrrole networks leads to a double network hydrogel with bulk conductivity, mechanical and electrical self‐healing properties (100% mechanical recovery in 2 min), ultrastretchability (1500%), and pressure sensitivity. The practical potential of CSH hydrogels is further revealed by their application in human motion detection and their 3D‐printing performance.
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