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Highly Efficient Non-Enzymatic Glucose Sensor Based on CuO Modified Vertically-Grown ZnO Nanorods on Electrode

机译:基于CuO修饰的垂直生长ZnO纳米棒的高效非酶葡萄糖传感器电极

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摘要

There is a major challenge to attach nanostructures on to the electrode surface while retaining their engineered morphology, high surface area, physiochemical features for promising sensing applications. In this study, we have grown vertically-aligned ZnO nanorods (NRs) on fluorine doped tin oxide (FTO) electrodes and decorated with CuO to achieve high-performance non-enzymatic glucose sensor. This unique CuO-ZnO NRs hybrid provides large surface area and an easy substrate penetrable structure facilitating enhanced electrochemical features towards glucose oxidation. As a result, fabricated electrodes exhibit high sensitivity (2961.7 μA mM−1 cm−2), linear range up to 8.45 mM, low limit of detection (0.40 μM), and short response time (<2 s), along with excellent reproducibility, repeatability, stability, selectivity, and applicability for glucose detection in human serum samples. Circumventing, the outstanding performance originating from CuO modified ZnO NRs acts as an efficient electrocatalyst for glucose detection and as well, provides new prospects to biomolecules detecting device fabrication.
机译:将纳米结构附着在电极表面上,同时保留其工程形态,高表面积,理化特性以用于有前景的传感应用,这是一个重大挑战。在这项研究中,我们在掺氟氧化锡(FTO)电极上生长了垂直排列的ZnO纳米棒(NRs),并用CuO修饰以实现高性能的非酶葡萄糖传感器。这种独特的CuO-ZnO NRs杂化物可提供大的表面积和易于渗透的底物结构,有助于增强葡萄糖氧化的电化学特性。结果,制成的电极显示出高灵敏度(2961.7μAmM -1 μcm -2 ),线性范围高达8.45μmM,检测限低(0.40μmM),响应时间短(<2 s),以及出色的重现性,可重复性,稳定性,选择性和人血清样品中葡萄糖检测的适用性。规避,源自CuO修饰的ZnO NRs的出色性能,可作为一种高效的葡萄糖检测电催化剂,也为生物分子检测装置的制造提供了新的前景。

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