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鸟嘌呤核苷在碳离子液体电极上的电化学行为及其测定

Electrochemical behaviors of guanosine on carbon ionic liquid electrode and its determination.

作者信息

Sun Wei, Duan Yuanyuan, Li Yinzhuo, Gao Hongwei, Jiao Kui

机构信息

Key Laboratory of Eco-Chemical Engineering of Ministry of Education, College of Chemistry and Molecular Engineering, Qingdao University of Science and Technology, 53 Zhenzhou Road, Qingdao 266042, China.

出版信息

Talanta. 2009 May 15;78(3):695-9. doi: 10.1016/j.talanta.2008.12.034. Epub 2008 Dec 24.

Abstract

The electrochemical behaviors of guanosine on the ionic liquid of N-butylpyridinium hexafluorophosphate (BPPF(6)) modified carbon paste electrode (CPE) was studied in this paper and further used for guanosine detection. Guanosine showed an adsorption irreversible oxidation process on the carbon ionic liquid electrode (CILE) with the oxidation peak potential located at 1.12 V (vs. SCE) in a pH 4.5 Britton-Robinson (B-R) buffer solution. Compared with that on the traditional carbon paste electrode, small shift of the oxidation peak potentials appeared but with a great increment of the oxidation peak current on the CILE, which was due to the presence of ionic liquid in the modified electrode adsorbed the guanosine on the surface and promoted the electrochemical response. The electrochemical parameters such as the electron transfer coefficient (alpha), the electron transfer number (n), and the electrode reaction standard rate constant (k(s)) were calculated as 0.74, 1.9 and 1.26 x 10(-4)s(-1), respectively. Under the optimal conditions the oxidation peak current showed a good linear relationship with the guanosine concentration in the range from 1.0 x 10(-6) to 1.0 x 10(-4)mol/L by cyclic voltammetry with the detection limit of 2.61 x 10(-7)mol/L (3sigma). The common coexisting substances showed no interferences to the guanosine oxidation. The CILE showed good ability to distinguish the electrochemical response of guanosine and guanine in the mixture solution. The urine samples were further detected by the proposed method with satisfactory results.

摘要

本文研究了鸟苷在六氟磷酸正丁基吡啶鎓(BPPF(6))修饰碳糊电极(CPE)离子液体上的电化学行为,并将其进一步用于鸟苷检测。在pH 4.5的 Britton-Robinson(B-R)缓冲溶液中,鸟苷在碳离子液体电极(CILE)上呈现吸附不可逆氧化过程,氧化峰电位位于1.12 V(vs. SCE)。与传统碳糊电极相比,CILE上氧化峰电位有小幅度偏移,但氧化峰电流大幅增加,这是由于修饰电极中离子液体的存在使鸟苷吸附在表面并促进了电化学响应。计算得到电子转移系数(α)、电子转移数(n)和电极反应标准速率常数(k(s))等电化学参数分别为0.74、1.9和1.26×10(-4)s(-1)。在最佳条件下,通过循环伏安法,氧化峰电流与鸟苷浓度在1.0×10(-6)至1.0×10(-4)mol/L范围内呈现良好线性关系,检测限为2.61×10(-7)mol/L(3σ)。常见共存物质对鸟苷氧化无干扰。CILE在混合溶液中对鸟苷和鸟嘌呤的电化学响应具有良好的区分能力。采用所提方法对尿样进行进一步检测,结果令人满意。

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