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基于高拉伸纤维的电势型离子传感器,用于实时多通道分析人体汗液。

Highly Stretchable Fiber-Based Potentiometric Ion Sensors for Multichannel Real-Time Analysis of Human Sweat.

机构信息

State Key Laboratory of Electroanalytical Chemistry, c/o Engineering Laboratory for Modern Analytical Techniques, Changchun Institute of Applied Chemistry, Chinese Academy of Sciences, Changchun 130022, P. R. China.

University of Chinese Academy of Sciences, Beijing 100039, P. R. China.

出版信息

ACS Sens. 2020 Sep 25;5(9):2834-2842. doi: 10.1021/acssensors.0c00960. Epub 2020 Sep 14.

Abstract

Wearable potentiometric ion sensors are attracting attention for real-time ion monitoring in biological fluids. One of the key challenges lies in keeping the analytical performances under a stretchable state. Herein, we report a highly stretchable fiber-based ion-selective electrode (ISE) prepared by coating an ion-selective membrane (ISM) on a stretchable gold fiber electrode. The fiber ISE ensures high stretchability up to 200% strain with only 2.1% increase in resistance of the fiber electrode. Owing to a strong attachment between the ISM and gold fiber electrode substrate, the ISE discloses favorable stability and potential repeatability. The Nernst slope of the ion response fluctuates from 59.2 to 57.4 mV/dec between 0 and 200% strain. Minor fluctuation of the intercept () (±4.97 mV) also results. The ISE can endure 1000 cycles at the maximum stretch. Sodium, chloride, and pH fiber sensors were fabricated and integrated into a hairband for real-time analysis of human sweat. The result displays a high accuracy compared with ex situ analysis. The integrated sensors were calibrated before and just after on-body measurements, and they offer reliable results for sweat analysis.

摘要

可穿戴式电位离子传感器因其可实时监测生物流体中的离子而受到关注。其中一个关键挑战在于保持在可拉伸状态下的分析性能。本文报告了一种通过在可拉伸金纤维电极上涂覆离子选择性膜(ISM)制备的高拉伸纤维基离子选择性电极(ISE)。该纤维 ISE 可确保高达 200%应变的高拉伸性,而纤维电极的电阻仅增加 2.1%。由于 ISM 和金纤维电极基底之间的强附着,ISE 表现出良好的稳定性和重现性。离子响应的 Nernst 斜率在 0 至 200%应变之间从 59.2 变为 57.4 mV/dec。截距()的波动也很小(±4.97 mV)。ISE 可以在最大拉伸下承受 1000 次循环。制备了钠离子、氯离子和 pH 纤维传感器,并集成到发带中,用于实时分析人体汗液。与体外分析相比,结果显示出较高的准确性。集成传感器在体内测量前后进行了校准,为汗液分析提供了可靠的结果。

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