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一种用于人体运动监测的高灵敏度、超耐用、环保型离子皮肤。

A Highly Sensitive, Ultra-Durable, Eco-Friendly Ionic Skin for Human Motion Monitoring.

作者信息

Li Zhaoxin, Xu Haoyan, Jia Na, Li Yifei, Zhu Liangkuan, Sun Zhuangzhi

机构信息

Province Key Laboratory of Forestry Intelligent Equipment Engineering, College of Mechanical and Electrical Engineering, Northeast Forestry University, Harbin 150000, China.

Key Laboratory of Bio-Based Material Science & Technology, Ministry of Education, Northeast Forestry University, Harbin 150000, China.

出版信息

Polymers (Basel). 2022 May 6;14(9):1902. doi: 10.3390/polym14091902.

Abstract

Ionic conductive hydrogels have shown great potential in areas such as wearable devices and electronic skins. Aiming at the sensitivity and biodegradability of the traditional flexible hydrogel electronic skin, this paper developed an ionic skin (S-iSkin) based on edible starch-sodium alginate (starch-SA), which can convert the external strain stimulus into a voltage signal without an external power supply. As an excellent ion conductive polymer, S-iSkin exhibited good stretchability, low hydrophilicity and outstanding electrochemical and sensing properties. Driven by sodium ions, the ion charge transfer resistance of S-iSkin is reduced by 4 times, the capacitance value is increased by 2 times and its conductivity is increased by 7 times. Additionally, S-iSkin has excellent sensitivity and linearity (R = 0.998), a long service life and good biocompatibility. Under the action of micro-stress, it can produce a voltage change ratio of 2.6 times, and its sensitivity is 52.04. The service life test showed that it can work stably for 2000 s and work more than 200 stress-voltage response cycles. These findings provide a foundation for the development of health monitoring systems and micro-stress sensing devices based on renewable biomass materials.

摘要

离子导电水凝胶在可穿戴设备和电子皮肤等领域展现出了巨大潜力。针对传统柔性水凝胶电子皮肤的灵敏度和生物可降解性问题,本文开发了一种基于可食用淀粉 - 海藻酸钠(淀粉 - SA)的离子皮肤(S - iSkin),它无需外部电源就能将外部应变刺激转化为电压信号。作为一种优异的离子导电聚合物,S - iSkin表现出良好的拉伸性、低亲水性以及出色的电化学和传感性能。在钠离子驱动下,S - iSkin的离子电荷转移电阻降低了4倍,电容值增加了2倍,电导率提高了7倍。此外,S - iSkin具有优异的灵敏度和线性度(R = 0.998)、长使用寿命和良好的生物相容性。在微应力作用下,它能产生2.6倍的电压变化率,灵敏度为52.04。使用寿命测试表明,它能稳定工作2000秒,且能完成200多个应力 - 电压响应循环。这些研究结果为基于可再生生物质材料的健康监测系统和微应力传感设备的开发奠定了基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2bc4/9101320/e67c32eb2ab1/polymers-14-01902-g001.jpg

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