Lai Meixue, Zhong Lijie, Liu Siyi, Tang Yitian, Han Tingting, Deng Huali, Bao Yu, Ma Yingming, Wang Wei, Niu Li, Gan Shiyu
Guangdong Engineering Technology Research Center for Sensing Materials & Devices, Guangzhou Key Laboratory of Sensing Materials & Devices, Center for Advanced Analytical Science, School of Chemistry and Chemical Engineering, Guangzhou University, Guangzhou, 510006, PR China.
Guangdong Engineering Technology Research Center for Sensing Materials & Devices, Guangzhou Key Laboratory of Sensing Materials & Devices, Center for Advanced Analytical Science, School of Chemistry and Chemical Engineering, Guangzhou University, Guangzhou, 510006, PR China.
Anal Chim Acta. 2024 Jan 25;1287:342046. doi: 10.1016/j.aca.2023.342046. Epub 2023 Nov 21.
Solid-contact ion-selective electrodes (SC-ISEs) feature miniaturization and integration that have gained extensive attention in non-invasive wearable sweat electrolyte sensors. The state-of-the-art wearable SC-ISEs mainly use polyethylene terephthalate, gold and carbon nanotube fibers as flexible substrates but suffer from uncomfortableness, high cost and biotoxicity. Herein, we report carbon fiber-based SC-ISEs to construct a four-channel wearable potentiometric sensor for sweat electrolytes monitoring (Na/K/pH/Cl). The carbon fibers were extracted from commercial cloth, of which the starting point is addressing the cost and reproducibility issues for flexible SC-ISEs. The bare carbon fiber electrodes exhibited reversible voltammetric and stable impedance performances. Further fabricated SC-ISEs based on corresponding ion-selective membranes disclosed Nernstian sensitivity and anti-interface ability toward both ions and organic species in sweat. Significantly, these carbon fiber-based SC-ISEs revealed high reproducibility of standard potentials between normal and bending states. Finally, a textile-based sensor was integrated with a solid-contact reference electrode, which realized on-body sweat electrolytes analysis. The results displayed high accuracy compared with ex-situ tests by ion chromatography. This work highlights carbon fiber-based multichannel wearable potentiometric ion sensors with low cost, biocompatibility and reproducibility.
固态接触式离子选择性电极(SC-ISEs)具有小型化和集成化的特点,在无创可穿戴汗液电解质传感器中受到广泛关注。目前最先进的可穿戴SC-ISEs主要使用聚对苯二甲酸乙二酯、金和碳纳米管纤维作为柔性基底,但存在佩戴不舒适、成本高和生物毒性等问题。在此,我们报道了基于碳纤维的SC-ISEs,用于构建一种用于汗液电解质监测(Na/K/pH/Cl)的四通道可穿戴电位传感器。碳纤维是从商用布料中提取的,其出发点是解决柔性SC-ISEs的成本和可重复性问题。裸碳纤维电极表现出可逆的伏安性能和稳定的阻抗性能。基于相应离子选择性膜进一步制备的SC-ISEs对汗液中的离子和有机物质均表现出能斯特响应灵敏度和抗界面干扰能力。值得注意的是,这些基于碳纤维的SC-ISEs在正常状态和弯曲状态之间显示出标准电位的高重现性。最后,将基于纺织品的传感器与固态接触式参比电极集成,实现了人体汗液电解质分析。与离子色谱法的异位测试相比,结果显示出高准确性。这项工作突出了基于碳纤维的多通道可穿戴电位离子传感器具有低成本、生物相容性和可重复性的特点。