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β-索诺凝胶碳电极:用于儿茶酚胺电化学测定的新选择。

beta-Sonogel-carbon electrodes: a new alternative for the electrochemical determination of catecholamines.

作者信息

Izaoumen Nissrin, Cubillana-Aguilera Laura M, Naranjo-Rodríguez Ignacio, de Cisneros José L Hidalgo-Hidalgo, Bouchta Dounia, Temsamani Khalid R, Palacios-Santander José M

机构信息

University Abdelmalek Essaâdi, Department of Chemistry, Faculty of Sciences of Tétouan, Equipe de Recherche Electrochimie et Systèmes Interfaciaux (ERESI). M'Hannech II, B.P. 2121, 93002-Tétouan, Morocco.

出版信息

Talanta. 2009 Apr 30;78(2):370-6. doi: 10.1016/j.talanta.2008.11.027. Epub 2008 Nov 27.

Abstract

In this work, a new alternative for the electrochemical determination of catecholamines based on beta-cyclodextrin-Sonogel-Carbon electrodes is reported. The incorporation of beta-CD and graphite in the preparation of the Sonogel-Carbon material leads to a modification of the electrode surface properties which causes a significant increase in the oxidation peak current of biomolecules such as dopamine, L-epinephrine, D,L-norepinephrine and catechol. This phenomenon might be attributed to the formation of an inclusion complex between beta-CD and the catecholamines. The amount of beta-CD necessary to form the Sonogel electrode was studied and optimization of electrochemical parameters, perm selectivity and mechanical stability of the sensor are discussed. Scanning electron microscopy and electrochemical impedance spectroscopy measurements were employed to characterize the electrical parameters and the structural properties of the new electrode surface, respectively. Cyclic voltammetry (CV) and Adsorptive differential pulse voltammetry (AdDPV) measurements were also used to explore the electrochemical behaviour of the electrode versus the quoted catecholamines. The beta-CD-Sonogel-Carbon electrode offers fast and linear responses towards dopamine, norepinephrine, epinephrine and catechol, with good and low detection limits: 0.164, 0.294, 0.699 and 0.059 micromol L(-1), respectively.

摘要

在这项工作中,报道了一种基于β-环糊精-溶胶-凝胶-碳电极电化学测定儿茶酚胺的新方法。在溶胶-凝胶-碳材料制备过程中加入β-环糊精和石墨会导致电极表面性质发生改变,从而使多巴胺、L-肾上腺素、D,L-去甲肾上腺素和儿茶酚等生物分子的氧化峰电流显著增加。这种现象可能归因于β-环糊精与儿茶酚胺之间形成了包合物。研究了形成溶胶-凝胶电极所需的β-环糊精量,并讨论了传感器的电化学参数、渗透选择性和机械稳定性的优化。分别采用扫描电子显微镜和电化学阻抗谱测量来表征新电极表面的电学参数和结构性质。循环伏安法(CV)和吸附差分脉冲伏安法(AdDPV)测量也用于探究电极对上述儿茶酚胺的电化学行为。β-环糊精-溶胶-凝胶-碳电极对多巴胺、去甲肾上腺素、肾上腺素和儿茶酚具有快速且线性的响应,检测限良好且较低,分别为0.164、0.294、0.699和0.059 μmol L⁻¹。

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