材料科学
离子液体
自愈水凝胶
标度系数
应变计
聚合物
韧性
热稳定性
智能聚合物
复合材料
化学工程
高分子化学
化学
病理
替代医学
催化作用
制作
工程类
医学
生物化学
作者
Xinyu Qu,Ye Zhao,Ziang Chen,Siying Wang,Yanfang Ren,Qian Wang,Jinjun Shao,Wenjun Wang,Xiaochen Dong
出处
期刊:Research
[AAAS00]
日期:2021-01-01
卷期号:2021
被引量:30
标识
DOI:10.34133/2021/9845482
摘要
To meet critical requirements on flexible electronic devices, multifunctionalized flexible sensors with excellent electromechanical performance and temperature perception are required. Herein, lignin-reinforced thermoresponsive poly(ionic liquid) hydrogel is prepared through an ultrasound-assisted synthesized method. Benefitting from the electrostatic interaction between lignin and ionic liquid, the hydrogel displays high stretchability (over 1425%), excellent toughness (over 132 kPa), and impressive stress loading-unloading cyclic stability. The hydrogel strain sensor presents excellent electromechanical performance with a high gauge factor (1.37) and rapid response rate (198 ms), which lays the foundation for human body movement detection and smart input. Moreover, owing to the thermal-sensitive feature of poly(ionic liquid), the as-prepared hydrogel displays remarkable thermal response sensitivity (0.217°C-1) in body temperature range and low limit of detection, which can be applied as a body shell temperature indicator. Particularly, the hydrogel can detect dual stimuli of strain and temperature and identify each signal individually, showing the specific application in human-machine interaction and artificial intelligence. By integrating the hydrogel strain sensor into a wireless sensation system, remote motion capture and gesture identification is realized in real-time.
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