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An improved sensitivity non-enzymatic glucose sensor based on a CuO nanowire modified Cu electrode

机译:基于CuO纳米线修饰的Cu电极的改进的灵敏度非酶葡萄糖传感器

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摘要

CuO nanowires have been prepared and applied for the fabrication of glucose sensors with highly enhanced sensitivity. Cu(OH)(2) nanowires were initially synthesised by a simple and fast procedure, CuO nanowires were then formed simply by removing the water through heat treatment. The structures and morphologies of Cu(OH)(2) and CuO nanowires were characterised by X-ray diffraction, X-ray photoelectron spectroscopy, scanning electron microscopy, and transmission electron microscopy. The direct electrocatalytic oxidation of glucose in alkaline medium at CuO nanowire modified electrodes has been investigated in detail. Compared to a bare Cu electrode, a substantial decrease in the overvoltage of the glucose oxidation was observed at the CuO nanowire electrodes with oxidation starting at ca. 0.10 V vs. Ag/AgCl (saturated KCl). At an applied potential of 0.33 V, CuO nanowire electrodes produce high and reproducible sensitivity to glucose with 0.49 mu A/mu mol dm(-3). Linear responses were obtained over a concentration range from 0.40 mu mol dm(-3) to 2.0 mmol dm(-3) with a detection limit of 49 nmol dm(-3) (S/N = 3). The CuO nanowire modified electrode allows highly sensitive, low working potential, stable, and fast amperometric sensing of glucose, thus is promising for the future development of non-enzymatic glucose sensors.
机译:已经制备了CuO纳米线,并将其用于具有高度增强的灵敏度的葡萄糖传感器的制造中。 Cu(OH)(2)纳米线最初是通过简单而快速的程序合成的,然后只需通过热处理除去水即可形成CuO纳米线。通过X射线衍射,X射线光电子能谱,扫描电子显微镜和透射电子显微镜对Cu(OH)(2)和CuO纳米线的结构和形貌进行了表征。详细研究了在CuO纳米线修饰电极上碱性介质中葡萄糖的直接电催化氧化。与裸露的Cu电极相比,在CuO纳米线电极处观察到葡萄糖氧化的过电压的显着降低,其中氧化始于约2。相对于Ag / AgCl(饱和KCl)为0.10V。在0.33 V的施加电势下,CuO纳米线电极对葡萄糖具有0.49μA/μmol dm(-3)的灵敏度,可再现性高。在0.40μmoldm(-3)至2.0 mmol dm(-3)的浓度范围内获得线性响应,检出限为49 nmol dm(-3)(S / N = 3)。 CuO纳米线修饰的电极允许对葡萄糖进行高度灵敏,低工作电位,稳定和快速的安培感测,因此对于非酶促葡萄糖传感器的未来发展很有希望。

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