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基于碳纳米管/茜素红S修饰电极界面增强效应的曲酸测定

Determination of kojic acid based on the interface enhancement effects of carbon nanotube/alizarin red S modified electrode.

作者信息

Liu Jieshu, Zhou Dazhai, Liu Xiaopeng, Wu Kangbing, Wan Chidan

机构信息

Key Laboratory of Biologic Resources Protection and Utilization of Hubei Province, Hubei Institute for Nationalities, Enshi 445000, PR China.

出版信息

Colloids Surf B Biointerfaces. 2009 Apr 1;70(1):20-4. doi: 10.1016/j.colsurfb.2008.12.003. Epub 2008 Dec 9.

Abstract

Based on non-covalent interactions such as pi-pi stacking, van der Waals interactions and strong adsorption, alizarin red S (ARS) interacts with multi-walled carbon nanotubes (MWNT), improving the solubility of MWNT in water and resulting in a stable MWNT/ARS solution. By successive cyclic sweeps between 0.0 and 2.2V in the MWNT/ARS solution, a MWNT/ARS composite film was fabricated on an electrode surface. The electrochemical behaviors of kojic acid at the bare electrode, the ARS film-modified electrode and the MWNT/ARS film-modified electrode were investigated. It was found that the oxidation signal of kojic acid significantly increased at the MWNT/ARS film-modified electrode, which was attributed to the unique properties of MWNT such as large surface area, strong adsorptive ability and subtle electronic character. The effects of pH and cyclic number of electropolymerization were examined. A rapid, sensitive and simple electrochemical method was then developed for the determination of kojic acid. This method exhibits good linearity over the range from 4.0 x 10(-7) to 6.0 x 10(-5)mol L(-1), and the limit of detection is as low as 1.0 x 10(-7)mol L(-1). In order to validate feasibility, the MWNT/ARS film-modified electrode was used for quantitative analysis of kojic acid in food samples.

摘要

基于诸如π-π堆积、范德华相互作用和强吸附等非共价相互作用,茜素红S(ARS)与多壁碳纳米管(MWNT)相互作用,提高了MWNT在水中的溶解度,从而得到稳定的MWNT/ARS溶液。通过在MWNT/ARS溶液中在0.0至2.2V之间连续循环扫描,在电极表面制备了MWNT/ARS复合膜。研究了曲酸在裸电极、ARS膜修饰电极和MWNT/ARS膜修饰电极上的电化学行为。结果发现,曲酸在MWNT/ARS膜修饰电极上的氧化信号显著增加,这归因于MWNT的独特性质,如大表面积、强吸附能力和微妙的电子特性。考察了pH值和电聚合循环次数的影响。然后开发了一种快速、灵敏且简单的电化学方法用于测定曲酸。该方法在4.0×10⁻⁷至6.0×10⁻⁵mol L⁻¹范围内呈现良好的线性,检测限低至1.0×10⁻⁷mol L⁻¹。为了验证可行性,将MWNT/ARS膜修饰电极用于食品样品中曲酸的定量分析。

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