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电化学氧化和修饰电极上的乙炔黑纳米粒子对丹皮酚的检测。

Electrochemical oxidation and detection of paeonol on modified electrode with acetylene black nanoparticles.

机构信息

School of Pharmacy, Wenzhou Medical College, Wenzhou, China.

出版信息

Colloids Surf B Biointerfaces. 2011 Oct 15;87(2):378-81. doi: 10.1016/j.colsurfb.2011.05.045. Epub 2011 Jun 1.

Abstract

With an aim to construct a sensing platform for the electrochemical detection of paeonol, we modified the glassy carbon electrode with acetylene black nanoparticle (AB). A sensitive oxidation peak of paeonol was observed with remarkably increased peak current on the modified electrode because the electrode has a big surface area due to three dimensional structure of AB nanoparticles. The optimization of detection conditions was performed, including pH value of the buffer, the amount of AB nanoparticles on the electrode surface, the accumulation potential and time of paeonol. Under the optimized conditions, the oxidation peak current of paeonol increased linearly with its concentration over the range from 5×10(-7) to 1×10(-4) M. The detection limit was calculated to be 1×10(-7) M. The modified electrode was successfully applied to detect the content of paeonol in cortex moutan, a common traditional Chinese medicine. The method is new, sensitive, rapid and convenient for the detection of paeonol.

摘要

为构建用于丹皮酚电化学检测的传感平台,我们用乙炔黑纳米粒子(AB)修饰了玻碳电极。在修饰电极上观察到丹皮酚的灵敏氧化峰,由于 AB 纳米粒子的三维结构,电极具有较大的表面积,因此峰电流显著增加。对检测条件进行了优化,包括缓冲液的 pH 值、电极表面上 AB 纳米粒子的量、丹皮酚的积累电位和时间。在优化条件下,丹皮酚的氧化峰电流在 5×10(-7) 到 1×10(-4) M 的浓度范围内呈线性增加。检测限计算为 1×10(-7) M。修饰电极成功地用于检测常用中药丹皮中的丹皮酚含量。该方法新颖、灵敏、快速,便于丹皮酚的检测。

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