State Key Laboratory of Solidification Processing, School of Materials Science and Engineering, Northwestern Polytechnical University and Shaanxi Joint Laboratory of Graphene, Xi'an710072, P. R. China.
Faculty of Printing, Packaging Engineering, and Digital Media Technology, Xi'an University of Technology, Xi'an710048, P. R. China.
Anal Chem. 2023 Feb 21;95(7):3864-3872. doi: 10.1021/acs.analchem.2c05613. Epub 2023 Feb 6.
Sweat wearable sensors enable noninvasive and real-time metabolite monitoring in human health management but lack accuracy and wearable applicability. The rational design of sensing electrode materials will be critical yet challenging. Herein, we report a dual aerogel-based nonenzymatic wearable sensor for the sensitive and selective detection of uric acid (UA) in human sweat. The three-dimensional porous dual-structural aerogels composed of Au nanowires and N-doped graphene nanosheets (noted as N-rGO/Au DAs) provide a large active surface, abundant access to the target, rapid electron transfer pathways, and a high intrinsic activity. Thus, a direct UA electro-oxidation is demonstrated at the N-rGO/Au DAs with a much higher activity than those at the individual gels (i.e., Au and N-rGO). Moreover, the resulting sensing chip displays high performance with a good anti-interfering ability, long-term stability, and excellent flexibility toward the UA detection. With the assistance of a wireless circuit, a wearable sensor is successfully applied in the real-time UA monitoring on human skin. The obtained result is comparable to that evaluated by high-performance liquid chromatography. This dual aerogel-based nonenzymatic biosensing platform not only holds considerable promise for the reliable sweat metabolite monitoring but also opens an avenue for metal-based aerogels as flexible electrodes in wearable sensing.
基于水凝胶的无酶可穿戴传感器可实现人体健康管理中对代谢物的非侵入式、实时监测,但缺乏准确性和可穿戴适用性。因此,合理设计传感电极材料至关重要,但也极具挑战性。在此,我们报道了一种基于双水凝胶的非酶促可穿戴传感器,用于灵敏和选择性检测人体汗液中的尿酸(UA)。该传感器由金纳米线和掺氮石墨烯纳米片组成的三维多孔双结构水凝胶(记为 N-rGO/Au DAs),具有大的活性表面积、丰富的目标物接触点、快速的电子转移途径和高本征活性。因此,在 N-rGO/Au DAs 上实现了尿酸的直接电氧化,其活性远高于单个水凝胶(即 Au 和 N-rGO)。此外,所得传感芯片在 UA 检测方面具有良好的抗干扰能力、长期稳定性和出色的柔韧性,表现出优异的性能。借助无线电路,成功地将可穿戴传感器应用于人体皮肤实时 UA 监测中。所获得的结果与高效液相色谱评估的结果相当。该基于双水凝胶的无酶生物传感平台不仅有望实现可靠的汗液代谢物监测,而且还为金属基气凝胶作为可穿戴传感器中的柔性电极开辟了道路。