Design of large-span stick-slip freely switch-able hydrogels via dynamic multiscale contact synergy
Zhang ZZ(张芝芝)1,2; Qin CX(秦晨曦)1,2; Feng HY(冯海燕)1,2; Xiang YY(向阳阳)2; Yu B(于波)2; Pei XW(裴小维)2; Ma YF(马延飞)2; Zhou F(周峰)2
刊名Nature Communications
2022-11-15
卷号13期号:1页码:1-10
英文摘要

Solid matter that can rapidly and reversibly switch between adhesive and non-adhesive states is desired in many technological domains including climbing robotics, actuators, wound dressings, and bioelectronics due to the ability for on-demand attachment and detachment. For most types of smart adhesive materials, however, reversible switching occurs only at narrow scales (nanoscale or microscale), which limits the realization of interchangeable surfaces with distinct adhesive states. Here, we report the design of a switchable adhesive hydrogel via dynamic multiscale contact synergy, termed as DMCS-hydrogel. The hydrogel rapidly switches between slippery (friction ~0.04 N/cm2) and sticky (adhesion ~3 N/cm2) states in the solid-solid contact process, exhibits large span, is switchable and dynamic, and features rapid adhesive switching. The design strategy of this material has wide applications ranging from programmable adhesive materials to intelligent devices.

语种英语
内容类型期刊论文
源URL[http://ir.licp.cn/handle/362003/29910]  
专题兰州化学物理研究所_固体润滑国家重点实验室
通讯作者Zhang ZZ(张芝芝); Yu B(于波)
作者单位1.中国科学院大学
2.中国科学院兰州化学物理研究所
推荐引用方式
GB/T 7714
Zhang ZZ,Qin CX,Feng HY,et al. Design of large-span stick-slip freely switch-able hydrogels via dynamic multiscale contact synergy[J]. Nature Communications,2022,13(1):1-10.
APA Zhang ZZ.,Qin CX.,Feng HY.,Xiang YY.,Yu B.,...&Zhou F.(2022).Design of large-span stick-slip freely switch-able hydrogels via dynamic multiscale contact synergy.Nature Communications,13(1),1-10.
MLA Zhang ZZ,et al."Design of large-span stick-slip freely switch-able hydrogels via dynamic multiscale contact synergy".Nature Communications 13.1(2022):1-10.
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