Stretchable conductive Janus hydrogel with controllable porous structures for high‐performance strain sensing

Author:

Zhang Shi‐Yuan1,Pan Da‐Wei12ORCID,Fan Hai‐Dong3,Shi Lu1,Yang Yi‐Min1,Liu Zhuang12,Ju Xiao‐Jie12,Xie Rui12,Wang Wei12,Chu Liang‐Yin12

Affiliation:

1. School of Chemical Engineering Sichuan University Chengdu China

2. State Key Laboratory of Polymer Materials Engineering Sichuan University Chengdu China

3. Department of Mechanics Sichuan University Chengdu Sichuan China

Abstract

AbstractA stretchable conductive Janus hydrogel with controllable porous structures is developed for highly sensitive monitoring of human motion. The Janus porous structure of the hydrogel is fabricated using patterned single‐layer droplets produced by microfluidics as pore‐forming templates. The hydrogel possess dual‐crosslinked polymeric networks to achieve good stretchability (480%), which allows fully cover the stretching range of human skin (usually <200%). Meanwhile, the hydrogel possess controllable Janus porous structures with local strain/stress enhancement to achieve high sensitivity (GF = 5.2) for strain‐sensing. The Janus hydrogel shows fast response for stretching (175 ms) and recovery (170 ms), and good durability (200 cycles at 50% strain). The conductive Janus hydrogel with high sensitivity and good mechanical properties are promising for developing soft wearable sensors in fields such as human health monitoring and human motion detection.

Funder

National Natural Science Foundation of China

Publisher

Wiley

Subject

Materials Chemistry,Polymers and Plastics,Physical and Theoretical Chemistry

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