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WO3 纳米线的表面增强作用及其在传统中药和厚朴酚的氧化和电化学检测中的应用。

Surface enhancement of WO3 nanowires toward the oxidation and electrochemical detection of honokiol in traditional Chinese medicine.

机构信息

Key Laboratory of Biological Resources Protection and Utilization of Hubei Province, Department of Chemistry, Hubei Institute for Nationalities, Enshi, China.

出版信息

Colloids Surf B Biointerfaces. 2012 Dec 1;100:103-6. doi: 10.1016/j.colsurfb.2012.04.039. Epub 2012 May 8.

Abstract

WO(3) nanowires (nano-WO(3)) were synthesized using a simple hydrothermal technique, and then used to modify the carbon paste electrode (CPE). The electrochemical behavior of honokiol on the unmodified CPE and nano-WO(3) modified CPE was compared. It was found that nano-WO(3) remarkably increased the oxidation signal of honokiol. The influences of supporting electrolyte, amount of nano-WO(3), accumulation potential and time were studied on the oxidation peak current of honokiol. Based on the strong enhancement effect of nano-WO(3), a sensitive, simple and rapid electrochemical method was developed for the detection of honokiol. The linear range was from 3×10(-8) to 2.0×10(-5)M, and the detection limit was as low as 1×10(-8)M after 2-min accumulation. Finally, it was used to determine honokiol in traditional Chinese medicines, and the recovery was over the range between 96.5% and 98.8%.

摘要

WO(3)纳米线(nano-WO(3))采用简单的水热技术合成,并用于修饰碳糊电极(CPE)。比较了姜黄素在未经修饰的 CPE 和 WO(3)纳米线修饰的 CPE 上的电化学行为。结果表明,WO(3)纳米线显著增加了姜黄素的氧化信号。研究了支持电解质、WO(3)纳米线的量、积累电位和时间对姜黄素氧化峰电流的影响。基于 WO(3)纳米线的强增强效应,开发了一种灵敏、简单、快速的电化学方法来检测姜黄素。线性范围为 3×10(-8)至 2.0×10(-5)M,经过 2 分钟的积累,检测限低至 1×10(-8)M。最后,将其用于测定中药中的姜黄素,回收率在 96.5%至 98.8%之间。

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