Electrochemical tyrosine sensor based on a glassy carbon electrode modified with a nanohybrid made from graphene oxide and multiwalled carbon nanotubes

被引:0
作者
Junhua Li
Daizhi Kuang
Yonglan Feng
Fuxing Zhang
Zhifeng Xu
Mengqin Liu
Deping Wang
机构
[1] Hengyang Normal University,Key Laboratory of Functional Organometallic Materials of Hunan Province College, Department of Chemistry and Material Science
来源
Microchimica Acta | 2013年 / 180卷
关键词
Electrochemical sensor; Graphene oxide; Carbon nanotube; L-tyrosine;
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学科分类号
摘要
We report on a glassy carbon electrode that was modified with a composite made from graphene oxide (GO) and multiwalled carbon nanotubes (MWCNT) that enables highly sensitive determination of L-tyrosine. The sensor was characterized by transmission electron microscopy and electrochemical impedance spectroscopy, and its electrochemical properties by cyclic voltammetry, chronocoulometry and differential pulse voltammetry. The GO/MWCNT hybrid exhibits strong catalytic activity toward the oxidation of L-tyrosine, with a well defined oxidation peak at 761 mV. The respective current serves as the analytical information and is proportional to the L-tyrosine concentration in two ranges of different slope (0.05 to 1.0 μM and 1.0 to 650.0 μM), with limits of detection and quantification as low as 4.4 nM and 14.7 nM, respectively. The method was successfully applied to the analysis of L-tyrosine in human body fluids. The excellent reproducibility, stability, sensitivity and selectivity are believed to be due to the combination of the electrocatalytic properties of both GO and MWCNT. They are making this hybrid electrode a potentially useful electrochemical sensing platform for bioanalysis.
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页码:49 / 58
页数:9
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共 104 条
[1]  
Jin GP(2004)The electrochemical behavior and amperometric determination of tyrosine and tryptophan at a glassy carbon electrode modified with butyrylcholine Electrochem Commun 6 454-460
[2]  
Lin XQ(2010)Determination of l-tyrosine by β-cyclodextrin sensitized fluorescence quenching method Spectrochim Acta A 77 566-571
[3]  
Zhu X(2011)Silver nanoparticle-treated filter paper as a highly sensitive surface-enhanced Raman scattering (SERS) substrate for detection of tyrosine in aqueous solution Anal Chim Acta 708 89-96
[4]  
Xu S(2008)High-performance liquid chromatography with fluorescence detection for quantitation of tryptophan and tyrosine in a shrimp waste protein concentrate J Chromatogr B 863 88-93
[5]  
Cheng ML(2011)Determination of L-tyrosine based on luminescence quenching of Mn-doped ZnSe quantum dots in enzyme catalysis system J Fluoresc 21 125-131
[6]  
Tsai BC(2011)Amperometric determination of L-tyrosine by an enzymeless sensor based on a carbon ceramic electrode modified with copper oxide nanoparticles Microchim Acta 173 59-64
[7]  
Yang J(2010)Construction of europium hexacyanoferrate film and its electrocatalyticactivity to tyrosine determination Appl Surf Sci 256 3148-3154
[8]  
Sánchez-Machado DI(2006)Voltammetric determination of tyrosine based on an l-serine polymer film electrode Colloids Surf B 50 147-151
[9]  
Chavira-Willys B(2008)Acylpyrazolone modified glassy carbon electrode effect on the electrochemical behavior of tyrosine Anal Lett 41 2832-2843
[10]  
Lόpez-Cervantes J(2012)Simultaneous determination of L-cysteine and L-tyrosine using Au-nanoparticles/poly-eriochrome black T film modified glassy carbon electrode Bioelectrochemistry 86 38-45