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Published on: April 7, 2017
Hydrogel with Ultrafast Self-Healing Property Both in Air and Underwater
Wei-Peng Chen1,2, De-Zhao Hao3,4, Wan-Jun Hao1
1Hainan Tropical Island Resources Ministry of Education Key Laboratory of Advanced Materials, Hainan University , Haikou 570228, P. R. China.
Abstract:
Self-healing hydrogels have a great potential application in 3D printing, soft robotics, and tissue engineering. There have been a large number of successful strategies for developing hydrogels that exhibit rapid and autonomous recovery. However, developing a gel with an excellent self-healing performance within several seconds is still an enormous challenge. Here, an ultrafast self-healing hydrogel based on an agarose/PVA double network (DN) is presented. The gel utilizing a dynamic borate bond exhibits 100% cure in strength and elongation after healing for 10 s in air, and this hydrogel shows an excellent self-healing property underwater as well. In addition, the agarose/PVA DN hydrogel exhibits a smart self-healing property for an in situ priority recovery, ensuring that the shape and the function are the same as those of the original one. With the combination of self-healing properties, such a hydrogel could be applied to a board range of areas.

