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基于有机水凝胶离子皮肤的无线传感器系统用于生理活动监测。

Wireless Sensor System Based on Organohydrogel Ionic Skin for Physiological Activity Monitoring.

机构信息

State Key Laboratory of Chemistry and Utilization of Carbon Based Energy Resources, School of Chemical Engineering and Technology, Xinjiang University, Urumqi 830017, P. R. China.

State Key Laboratory of Chemical Resource Engineering, College of Chemical Engineering, Beijing University of Chemical Technology, Beijing 100029, P. R. China.

出版信息

ACS Appl Mater Interfaces. 2024 May 15;16(19):25181-25193. doi: 10.1021/acsami.3c19473. Epub 2024 May 2.

Abstract

Supermolecular hydrogel ionic skin (i-skin) linked with smartphones has attracted widespread attention in physiological activity detection due to its good stability in complex scenarios. However, the low ionic conductivity, inferior mechanical properties, poor contact adhesion, and insufficient freeze resistance of most used hydrogels limit their practical application in flexible electronics. Herein, a novel multifunctional poly(vinyl alcohol)-based conductive organohydrogel (PCEL) with a supermolecular structure was constructed by innovatively employing sodium carboxymethyl cellulose (CMC-Na) as reinforcement material, ethylene glycol as antifreeze, and lithium chloride as a water retaining agent. Thanks to the synergistic effect of these components, the PCEL organohydrogel shows excellent performance in terms of ionic conductivity (1.61 S m), mechanical properties (tensile strength of 70.38 kPa and elongation at break of 537.84%), interfacial adhesion (1.06 kPa to pig skin), frost resistance (-50.4 °C), water retention (67.1% at 22% relative humidity), and remoldability. The resultant PCEL-based i-skin delivers satisfactory sensitivity (GF = 1.38) with fast response (348 ms) and high precision under different deformations and low temperature (-25 °C). Significantly, the wireless sensor system based on the PCEL organohydrogel i-skin can transmit signals from physiological activities and sign language to a smartphone by Bluetooth technology and dynamically displays the status of these movements. The organohydrogel i-skin shows great potential in diverse fields of physiological activity detection, human-computer interaction, and rehabilitation medicine.

摘要

超分子水凝胶离子皮肤(i-skin)与智能手机相连,由于其在复杂环境中具有良好的稳定性,因此在生理活动检测中引起了广泛关注。然而,大多数使用的水凝胶的低离子电导率、较差的机械性能、差的接触附着力和不足的耐冻性限制了它们在柔性电子学中的实际应用。在此,通过创新地使用羧甲基纤维素钠(CMC-Na)作为增强材料、乙二醇作为防冻剂和氯化锂作为保水剂,构建了一种新颖的多功能聚乙烯醇基导电有机水凝胶(PCEL),具有超分子结构。由于这些成分的协同作用,PCEL 有机水凝胶在离子电导率(1.61 S m)、机械性能(拉伸强度为 70.38 kPa,断裂伸长率为 537.84%)、界面附着力(1.06 kPa 到猪皮)、耐冻性(-50.4°C)、保水性(22%相对湿度下为 67.1%)和可重塑性方面表现出优异的性能。基于 PCEL 的 i-skin 产生的结果在不同的变形和低温(-25°C)下具有令人满意的灵敏度(GF = 1.38),响应速度快(348 ms)且精度高。重要的是,基于 PCEL 有机水凝胶 i-skin 的无线传感器系统可以通过蓝牙技术将生理活动和手语信号从智能手机传输,并动态显示这些运动的状态。有机水凝胶 i-skin 在生理活动检测、人机交互和康复医学等多个领域具有巨大的潜力。

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