Attachment of gold nanoparticles to glassy carbon electrode and its application for the direct electrochemistry and electrocatalytic behavior of hemoglobin

被引:154
作者
Zhang, L [1 ]
Jiang, XU [1 ]
Wang, EK [1 ]
Dong, SJ [1 ]
机构
[1] Chinese Acad Sci, Changchun Inst Appl Chem, State Key Lab Electroanalyt Chem, Changchun 130022, Jilin, Peoples R China
基金
中国博士后科学基金;
关键词
gold nanoparticles; hemoglobin; direct electron transfer; hydrogen peroxide;
D O I
10.1016/j.bios.2004.10.021
中图分类号
Q6 [生物物理学];
学科分类号
071011 ;
摘要
Gold nanoparticles have been attached onto glassy carbon electrode surface through sulfhydryl-terminated monolayer and characterized by X-ray photoelectron spectroscopy, atomic force microscopy, electrochemical impedance spectroscopy and cyclic voltammetry. The gold nanoparticles-attached glassy carbon electrodes have been applied to the immobilization/adsorption of hemoglobin, with a monolayer surface coverage of about 2.1 x 10(-10) mol cm(-2), and consequently obtained the direct electrochemistry of hemoglobin. Gold nanoparticles, acting as a bridge of electron transfer, can greatly promote the direct electron transfer between hemoglobin and the modified glassy carbon electrode without the aid of any electron mediator. In phosphate buffer solution with pH 6.8, hemoglobin shows a pair of well-defined redox waves with formal potential (E-0') of about -0.085 V (versus Ag/AgCl/saturated KCl). The immobilized hemoglobin maintained its biological activity, showing a surface controlled electrode process with the apparent heterogeneous electron transfer rate constant (k(s)) of 1.05 s(-1) and charge-transfer coefficient (a) of 0.46, and displays the features of a peroxidase in the electrocatalytic reduction of hydrogen peroxide. A potential application of the hemoglobin-immobilized gold nanoparticles modified glassy carbon electrode as a biosensor to monitor hydrogen peroxide has been investigated. The steady-state current response increases linearly with hydrogen peroxide concentration from 2.0 x 10(-6) to 2.4 x 10(-4) M. The detection limit (3a) for hydrogen peroxide is 9.1 x 10(-7) M. (c) 2004 Elsevier B.V. All rights reserved.
引用
收藏
页码:337 / 345
页数:9
相关论文
共 40 条
[1]  
ADAMS PA, 1990, CHEM COMMUN, V2, P97
[2]  
ARMSTRONG FA, 1992, ADV INORGANIC CHEM, V38
[3]   ELECTROCHEMICAL BONDING OF AMINES TO CARBON-FIBER SURFACES TOWARD IMPROVED CARBON-EPOXY COMPOSITES [J].
BARBIER, B ;
PINSON, J ;
DESARMOT, G ;
SANCHEZ, M .
JOURNAL OF THE ELECTROCHEMICAL SOCIETY, 1990, 137 (06) :1757-1764
[4]  
Bard A. J., 1980, ELECTROCHEMICAL METH
[5]  
BENDAYAN M, 1989, COLLOIDAL GOLD PRINC, V2
[6]   Ordered electrochemically active films of hemoglobin, didodecyldimethylammonium ions, and clay [J].
Chen, XL ;
Hu, NF ;
Zeng, YH ;
Rusling, JF ;
Yang, J .
LANGMUIR, 1999, 15 (20) :7022-7030
[7]   Permselectivity sensitivity, and amperometric pH sensing at thioctic acid monolayer microelectrodes [J].
Cheng, Q ;
BrajterToth, A .
ANALYTICAL CHEMISTRY, 1996, 68 (23) :4180-4185
[8]   A CARRAGEENAN HYDROGEL STABILIZED COLLOIDAL GOLD MULTIENZYME BIOSENSOR ELECTRODE UTILIZING IMMOBILIZED HORSERADISH-PEROXIDASE AND CHOLESTEROL OXIDASE CHOLESTEROL ESTERASE TO DETECT CHOLESTEROL IN SERUM AND WHOLE-BLOOD [J].
CRUBLISS, AL ;
STONEHUERNER, JG ;
HENKENS, RW ;
ZHAO, J ;
ODALY, JP .
BIOSENSORS & BIOELECTRONICS, 1993, 8 (06) :331-337
[9]   ELECTROCHEMICAL OXIDATION OF AMINE-CONTAINING COMPOUNDS - A ROUTE TO THE SURFACE MODIFICATION OF GLASSY-CARBON ELECTRODES [J].
DEINHAMMER, RS ;
HO, M ;
ANDEREGG, JW ;
PORTER, MD .
LANGMUIR, 1994, 10 (04) :1306-1313
[10]   ELECTRODE PROCESSES OF HEMOGLOBIN AT A PLATINUM-ELECTRODE COVERED BY BRILLIANT CRESYL BLUE [J].
DONG, SJ ;
ZHU, YM ;
SONG, SH .
BIOELECTROCHEMISTRY AND BIOENERGETICS, 1989, 21 (03) :233-243