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血红蛋白膜修饰电极电化学制备FAD/ZnO及其电分析性质

The electrochemical preparation of FAD/ZnO with hemoglobin film-modified electrodes and their electroanalytical properties.

作者信息

Lin Kuo-Chiang, Chen Shen-Ming

机构信息

Department of Chemical Engineering and Biotechnology, National Taipei University of Technology, No. 1, Section 3, Chung-Hsiao East Road, Taipei 106, Taiwan, Republic of China.

出版信息

Biosens Bioelectron. 2006 Mar 15;21(9):1737-45. doi: 10.1016/j.bios.2005.08.010. Epub 2005 Oct 3.

Abstract

Flavin adenine dinucleotide (FAD)-modified zinc oxide self-assembly films were prepared using repeated cyclic voltammetry. The electrochemical reaction of the hemoglobin with the FAD/ZnO self-assembly film-modified electrodes and their electrocatalytic properties were investigated. This paper describes the successful loading of the electrochemically active molecules of hemoglobin and FAD along with ZnO by electrochemical method. In addition to the cyclic voltammetry, an electrochemical quartz crystal microbalance was used to study the growth mechanism and the properties of the films. The FAD/zinc oxide films exhibited a single redox couple, which corresponded to the FAD redox couple. The electrocatalytic properties of the O2, H2O2, trichloroacetic acid and SO(3)2- were studied by the FAD/zinc oxide films in the absence or in the presence of hemoglobin. The electrocatalytic reduction current had been developed from the cathodic peak of the FAD/zinc oxide redox couple. The electrocatalytic process involved an interaction of hemoglobin and FAD/GC film-modified electrode to increase the electrocatalytic reduction current. The electrocatalytic reduction of O2 using the FAD/zinc oxide films was investigated by cyclic voltammetry and rotating ring-disk electrode methods.

摘要

采用循环伏安法制备了黄素腺嘌呤二核苷酸(FAD)修饰的氧化锌自组装膜。研究了血红蛋白与FAD/ZnO自组装膜修饰电极的电化学反应及其电催化性能。本文介绍了通过电化学方法成功地将血红蛋白和FAD的电化学活性分子与ZnO负载在一起。除了循环伏安法外,还使用电化学石英晶体微天平研究了膜的生长机理和性能。FAD/氧化锌膜表现出单一的氧化还原对,这与FAD氧化还原对相对应。在不存在或存在血红蛋白的情况下,通过FAD/氧化锌膜研究了O2、H2O2、三氯乙酸和SO(3)2-的电催化性能。FAD/氧化锌氧化还原对的阴极峰产生了电催化还原电流。电催化过程涉及血红蛋白与FAD/GC膜修饰电极的相互作用,以增加电催化还原电流。采用循环伏安法和旋转环盘电极法研究了FAD/氧化锌膜对O2的电催化还原。

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