Zhao Wenyu, Lin Zhuofan, Sun Zongtao, Zhu Zhihao, Lin Waner, Xu Yingtian, Peng Zhengchun, Sun Zhenglong, Wang Ziya
School of Science and Engineering, The Chinese University of Hong Kong, Shenzhen, Shenzhen, 518172, China.
Center for Stretchable Electronics and Nano Sensors, State Key Laboratory of Radio Frequency Heterogeneous Integration, School of Physics and Optoelectronic Engineering, Shenzhen University, Shenzhen, 518060, China.
Adv Sci (Weinh). 2023 Oct;10(28):e2303338. doi: 10.1002/advs.202303338. Epub 2023 Aug 4.
The application of stretchable strain sensors in human movement recognition, health monitoring, and soft robotics has attracted wide attention. Compared with traditional electronic conductors, stretchable ionic hydrogels are more attractive to organization-like soft electronic devices yet suffer poor sensitivity due to limited ion conduction modulation caused by their intrinsic soft chain network. This paper proposes a strategy to modulate ion transport behavior by geometry-induced strain concentration to adjust and improve the sensitivity of ionic hydrogel-based strain sensors (IHSS). Inspired by the phenomenon of vehicles slowing down and changing lanes when the road narrows, the strain redistribution of ionic hydrogel is optimized by structural and mechanical parameters to produce a strain-induced resistance boost. As a result, the gauge factor of the IHSS is continuously tunable from 1.31 to 9.21 in the strain range of 0-100%, which breaks through the theoretical limit of homogeneous strain-distributed ionic hydrogels and ensures a linear electromechanical response simultaneously. Overall, this study offers a universal route to modulate the ion transport behavior of ionic hydrogels mechanically, resulting in a tunable sensitivity for IHSS to better serve different application scenarios, such as health monitoring and human-machine interface.
可拉伸应变传感器在人体运动识别、健康监测和软机器人领域的应用已引起广泛关注。与传统电子导体相比,可拉伸离子水凝胶对类组织软电子器件更具吸引力,但由于其固有的软链网络导致离子传导调制有限,其灵敏度较差。本文提出了一种通过几何诱导应变集中来调节离子传输行为的策略,以调整和提高基于离子水凝胶的应变传感器(IHSS)的灵敏度。受道路变窄时车辆减速和变道现象的启发,通过结构和力学参数优化离子水凝胶的应变再分布,以产生应变诱导电阻增强。结果,在0-100%的应变范围内,IHSS的应变系数可在1.31至9.21之间连续调节,突破了均匀应变分布离子水凝胶的理论极限,并同时确保了线性机电响应。总体而言,本研究提供了一种机械调节离子水凝胶离子传输行为的通用途径,从而实现IHSS的灵敏度可调,以更好地服务于不同的应用场景,如健康监测和人机界面。