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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