Conductive hydrogels have combined high conductivity and excellent mechanical properties[1,2],and have received increasing attention due to their promising and diverse applications in flexible energy storage devices[3...Conductive hydrogels have combined high conductivity and excellent mechanical properties[1,2],and have received increasing attention due to their promising and diverse applications in flexible energy storage devices[3,4],soft robotics[5,6],and wearable sensors[7–9].Nevertheless,their applications are severely limited by inevitable function loss because they would be frozen or dehydrated due to climate change[10–14].展开更多
基金supported by the National Natural Science Foundation of China(22002024)the Natural Science Foundation of Guangxi Province(2019GXNSFBA245033,2019GXNSFGA245003,and 2021JJB120045)Guangxi Technology Base and Talent Subject(AD19245105,AD19245035)。
文摘Conductive hydrogels have combined high conductivity and excellent mechanical properties[1,2],and have received increasing attention due to their promising and diverse applications in flexible energy storage devices[3,4],soft robotics[5,6],and wearable sensors[7–9].Nevertheless,their applications are severely limited by inevitable function loss because they would be frozen or dehydrated due to climate change[10–14].