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[Macromolecular Materials and Engineering] Highly Flexible, Tough, and Self-Healable Hydrogels Enabled by Dual Cross-Linking of Triblock Copolymer Micelles and Ionic Interactions
writer:Hongwei Zhou,Min Zhang , Jiancheng Cao, Bo Yan, Wen Yang, Xilang Jin, Aijie Ma, Weixing Chen
keywords:Hydrogels
source:期刊
specific source:Macromolecular Materials and Engineering,DOI: 10.1002/mame.201600352
Issue time:2017年

Development of artifi cial soft materials that have good mechanical performances and autonomous healing ability is a longstanding pursuit but remains challenging. This work reports a kind of highly fl exible, tough, and self-healable poly(acrylic acid)/Fe(III) (PAA/Fe(III)) hydrogels. The hydrogels are dually cross-linked by triblock copolymer micelles and ionic interaction between Fe(III) and carboxyl groups. Due to the coexistence of these two crosslinking points, the resulting PAA/Fe(III) hydrogels are tough and can be fl exibly stretched, bent, knotted, and twisted. The hydrogels can withstand a deformation of 600% and an ultimate stress as high as 250 kPa. Moreover, the dynamic ionic interaction also endows the hydrogels self-healing properties. By varying the ratio of Fe(III)/AA, a compromised healing effi ciency of 73% and an ultimate stress of 200 kPa are obtained.