抗坏血酸
材料科学
超级电容器
微型多孔材料
电容
非阻塞I/O
纳米复合材料
石墨烯
检出限
电化学
镍
化学工程
生物传感器
氧化镍
复合数
电流密度
吸附
介孔材料
纳米技术
氧化物
导电体
安培法
比能量
储能
无机化学
催化作用
铂金
电阻率和电导率
多孔性
电导率
纳米传感器
电极
纳米颗粒
作者
Fengjuan Miao,Siwen Cui,Bairui Tao
标识
DOI:10.1109/jsen.2025.3611505
摘要
With the growing demand for health monitoring, the development of non-invasive, real-time technologies to detect biomarkers in biofluids is crucial. This research develops a dual-functional electrochemical sensor, utilizing a three-dimensional porous nanocomposite of NiO/Cu-ZIF/GO, for the highly precise and selective measurement of lactate in sweat. The composite structure, comprising NiO nanoflowers, Cu-ZIF cubic frameworks, and ultrathin graphene oxide (GO) nanosheets, was successfully synthesized via solvothermal methods, magnetic stirring, and liquid-phase physical adsorption strategies. This material integrates the high catalytic activity of NiO, the microporous confinement effect of Cu-ZIF, and the conductive network of GO, achieving synergistic enhancement of lactate oxidation and energy storage. The electrochemical tests exhibited a sensitivity of 36.72 μA·mM⁻¹·cm⁻² and a detection limit of 0.354 mM, excellent anti-interference capability (against uric acid, ascorbic acid, etc.), and long-term stability (96.6% initial response retained after 30 days). In addition, the material shows a specific capacitance of 120 F g ⁻ ¹ (1A g-1) in the supercapacitor, and when the current density is 1A g-1, the specific capacitance is 93.6% after 5000 times of charge and discharge, which verifies its dual function characteristics.
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