College of Biological, Chemical Sciences and Engineering, Jiaxing University, Jiaxing, Zhejiang-314001, P. R. China.
Analyst. 2019 Aug 5;144(16):4925-4934. doi: 10.1039/c9an00917e.
Designing highly active electrode is important for the fabrication of electrochemical sensing platforms, and core-shell nanostructures with large specific surface areas and ease of accessibility are effective probes for the detection of biomolecules. In this work, we report the development of hierarchical core-shell Ni3S2/NiMoO4 nanowires on a nickel foam substrate (Ni-Ni3S2/NiMoO4) as a non-noble metal catalyst electrode for the electrochemical oxidation of glucose in alkaline electrolyte. As an electrochemical sensor for glucose detection, the fabricated hierarchical Ni-Ni3S2/NiMoO4 core-shell nanowires display an enhanced catalytic response, a fast response time of 1 s with a limit of detection (LOD) of 0.055 μM (S/N = 3), and a higher sensitivity of 10.49 μA μM-1 cm-2. Unlike Ni3S2 or NiMoO4 electrodes, the observed superior catalytic activity towards glucose is mainly due to the promotional effect of NiMoO4 nanosheets on the Ni3S2 nanowires, which can increase the large active surface area and generate numerous active sites within and on the surface walls of the nanowire structures. The developed Ni-Ni3S2/NiMoO4 nanowire electrode can selectively detect glucose in the presence of other carbohydrates, such as fructose, sucrose, lactose, maltose, galactose, mannose, and xylose, indicating potential anti-interference properties. The Ni-Ni3S2/NiMoO4 nanowire electrode is highly stable for reuse and its practical application is demonstrated using real blood serum samples. These results demonstrate that hierarchical core-shell Ni3S2/NiMoO4 nanowires show potential for application in the development of low-cost applied glucose sensors.
设计高活性电极对于电化学传感平台的制造非常重要,而具有大比表面积和易于接近的核壳纳米结构是检测生物分子的有效探针。在这项工作中,我们报告了在镍泡沫基底上制备分层核壳 Ni3S2/NiMoO4 纳米线(Ni-Ni3S2/NiMoO4)作为非贵金属催化剂电极,用于在碱性电解质中电化学氧化葡萄糖。作为葡萄糖检测的电化学传感器,所制备的分层 Ni-Ni3S2/NiMoO4 核壳纳米线显示出增强的催化响应,响应时间为 1 s,检测限(LOD)为 0.055 μM(S/N = 3),灵敏度为 10.49 μA μM-1 cm-2。与 Ni3S2 或 NiMoO4 电极不同,观察到的对葡萄糖的优异催化活性主要归因于 NiMoO4 纳米片对 Ni3S2 纳米线的促进作用,这可以增加纳米线结构的内部和表面壁上的大活性表面积并产生大量活性位点。所开发的 Ni-Ni3S2/NiMoO4 纳米线电极可以在存在其他碳水化合物(如果糖、蔗糖、乳糖、麦芽糖、半乳糖、甘露糖和木糖)的情况下选择性地检测葡萄糖,表明具有潜在的抗干扰特性。Ni-Ni3S2/NiMoO4 纳米线电极具有高度的可重复使用稳定性,并且通过使用实际的血清样本证明了其实际应用。这些结果表明,分层核壳 Ni3S2/NiMoO4 纳米线在开发低成本应用葡萄糖传感器方面具有应用潜力。