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首页> 外文期刊>Analytical Sciences >An Amperometric Biosensor for Glucose Based on Electrodeposited Redox Polymer/Glucose Oxidase Film on a Gold Electrode
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An Amperometric Biosensor for Glucose Based on Electrodeposited Redox Polymer/Glucose Oxidase Film on a Gold Electrode

机译:基于在金电极上电沉积的氧化还原聚合物/葡萄糖氧化酶膜的葡萄糖电流传感器

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In this paper, we described a glucose biosensor based on the co-electrodeposition of a poly(vinylimidazole) complex of [Os(bpy)2Cl]+/2+ (PVI-Os) and glucose oxidase (GOX) on a gold electrode surface. The one-step co-electrodeposition method provided a better control on the sensor construction, especially when it was applied to microsensor construction. The modified electrode exhibited the classical features of a kinetically fast redox couple bound to an electrode surface and the redox potential of the redox polymer/enzyme film was 0.14 V (vs. SCE). For a scan rate of up to 200 mV s-1, the peak-to-peak potential separation was less than 25 mV. In the presence of glucose, a typical catalytic oxidation current was observed, which reached a plateau at 0.25 V (vs. SCE). Under the optimal experimental conditions, the steady-state electrooxidation current measured at 0.30 V (vs. SCE) was linear to the glucose concentration in the range of 0 - 30 mM. Successful attempts were made in blood sample analysis.
机译:在本文中,我们基于金电极表面上[Os(bpy)2Cl] + / 2+(PVI-Os)和葡萄糖氧化酶(GOX)的聚(乙烯基咪唑)配合物的共电沉积描述了一种葡萄糖生物传感器。单步共电沉积方法可以更好地控制传感器的结构,尤其是将其应用于微传感器结构时。修饰的电极表现出结合到电极表面上的动力学快速氧化还原对的经典特征,并且氧化还原聚合物/酶膜的氧化还原电势为0.14 V(vs. SCE)。对于高达200 mV s-1的扫描速率,峰峰电位间隔小于25 mV。在葡萄糖存在下,观察到典型的催化氧化电流,该电流在0.25 V(vs. SCE)达到平稳状态。在最佳实验条件下,在0.30 V(vs. SCE)下测得的稳态电氧化电流与葡萄糖浓度在0-30 mM范围内呈线性关系。在血液样本分析中进行了成功的尝试。

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