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金纳米粒子修饰石墨电极的电化学制备与表征:用于杨梅素抗氧化分析

Electrochemical Preparation and Characterization of a Gold Nanoparticles Graphite Electrode: Application to Myricetin Antioxidant Analysis.

作者信息

Ng Khan Loon, Lee See Mun, Khor Sook Mei, Tan Guan Huat

机构信息

Department of Chemistry, Faculty of Science, University of Malaya.

出版信息

Anal Sci. 2015;31(10):1075-81. doi: 10.2116/analsci.31.1075.

Abstract

Graphite material is abundantly available from recyclable sources. It possesses a good electrical conductance property, which makes it an attractive material as a working electrode. However, due to a high activation overpotential it has limited applications as compared to other solid metal electrodes. In this present work, we obtained a graphite rod from a used battery, and carried out electrochemical improvements by electro-deposition with gold nanoparticles (AuNPs). The heterogeneous electron transfer rate and electron transfer resistance of the fabricated electrode were improved. The electrode overpotential has shown improvement by 50 mV, and the effective surface area has increased by 2 fold. To determine the practicability of the AuNPs/graphite electrode, we used the electrode in the analysis of myricetin. A square-wave voltammetry was used in the analysis, and the detection response increased by 2.5 fold, which suggested an improvement in the electrode sensitivity.

摘要

石墨材料可从可回收来源大量获取。它具有良好的电导性能,这使其成为一种有吸引力的工作电极材料。然而,由于高活化过电位,与其他固体金属电极相比,其应用有限。在本工作中,我们从废旧电池中获得一根石墨棒,并通过金纳米颗粒(AuNPs)电沉积进行电化学改进。所制备电极的异相电子转移速率和电子转移电阻得到改善。电极过电位降低了50 mV,有效表面积增加了两倍。为了确定AuNPs/石墨电极的实用性,我们将该电极用于杨梅素的分析。分析中采用方波伏安法,检测响应提高了2.5倍,这表明电极灵敏度有所提高。

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