Center for Advanced Analytical Science, Guangzhou Key Laboratory of Sensing Materials and Devices, Guangdong Engineering Technology Research Center for Sensing Materials and Devices, School of Chemistry and Chemical Engineering, Guangzhou University, Guangzhou 510006, P. R. China.
Anal Chem. 2024 Nov 12;96(45):18239-18245. doi: 10.1021/acs.analchem.4c04471. Epub 2024 Nov 4.
Wearable, noninvasive sweat sensors enable real-time monitoring of metabolites in human health management. However, the commercial enzyme-based and currently nonenzymatic glucose sensor represents sluggish glucose oxidation kinetics and a narrow sensing range. Rational design of sensitive materials is significant yet faces a huge challenge. Herein, we construct a single-atom Pt supported on NiCo-LDH/TiCT heterostructures (Pt-NiCo-LDH/TiCT) as the nonenzymatic electrochemical glucose sensor sensitive materials for selective detection of glucose level in human sweat. The obtained Pt-NiCo-LDH/TiCT with improved structural stability and enhanced charge transfer efficiency shows a low oxidation peak potential of 0.49 V, high sensitivity of 506.6 μA mM cm, a low detection limit of 0.035 μM, and long-term stability toward the glucose detection. The wearable sensor, coupled with a wireless transmission module and a signal processing chip, is used for real-time perspiration glucose monitoring during outdoor exercise. The result is comparable to that of high-performance liquid chromatography (HPLC). This research provides a new paradigm for designing a wearable nonenzymatic electrochemical glucose sensor, enabling noninvasive real-time monitoring of glucose concentrations in human sweat.
可穿戴、非侵入式汗液传感器可实现人体健康管理中代谢物的实时监测。然而,商业酶基和当前非酶葡萄糖传感器代表了葡萄糖氧化动力学缓慢和传感范围狭窄的问题。合理设计敏感材料具有重要意义,但面临着巨大的挑战。在此,我们构建了一种单原子 Pt 负载在 NiCo-LDH/TiCT 异质结构(Pt-NiCo-LDH/TiCT)上的非酶电化学生物葡萄糖传感器敏感材料,用于选择性检测人体汗液中的葡萄糖水平。所获得的 Pt-NiCo-LDH/TiCT 具有改进的结构稳定性和增强的电荷转移效率,表现出低氧化峰电位 0.49 V、高灵敏度 506.6 μA mM cm、低检测限 0.035 μM 以及对葡萄糖检测的长期稳定性。可穿戴传感器与无线传输模块和信号处理芯片相结合,用于户外运动期间实时汗液葡萄糖监测。结果与高性能液相色谱(HPLC)相当。这项研究为设计可穿戴非酶电化学生物葡萄糖传感器提供了新范例,可实现人体汗液中葡萄糖浓度的非侵入式实时监测。