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Electrocatalytic Oxidation of Dopamine at a Nanocuprous Oxide-Methylene Blue Composite Glassy Carbon Electrode

Cuprous oxide nanowhisker was prepared by using cetyltrimethyl ammonium bromide (CATB) as soft template, and was characterized by XRD and TEM methods. The electrochemical properties of nano‐Cu2O and nano‐Cu2O‐methylene blue (MB) modified electrode were studied. The experimental results indicate that...

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Bibliographic Details
Published in:Electroanalysis (New York, N.Y.) N.Y.), 2006-03, Vol.18 (5), p.478-484
Main Authors: Liu, Chuanyin, Hu, Junfu, Hu, Jiming, Tanga, Hongwu
Format: Article
Language:English
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Summary:Cuprous oxide nanowhisker was prepared by using cetyltrimethyl ammonium bromide (CATB) as soft template, and was characterized by XRD and TEM methods. The electrochemical properties of nano‐Cu2O and nano‐Cu2O‐methylene blue (MB) modified electrode were studied. The experimental results indicate that nano‐Cu2O shows a couple of redox peaks corresponding to the redox of Cu(II)/Cu(I), the peak currents are linear to the scan rates which demonstrate that the electrochemical response of Cu2O is surface‐controlled. The composite nano‐Cu2O‐Nafion‐MB modified electrode shows a trend of decrease of peak currents corresponding to the Cu (II)/Cu (I). However, the electrocatalytic ability of nano‐Cu2O‐MB composite film to dopamine increases dramatically. At this composite electrode, dopamine shows a couple of quasireversible redox peaks with a peak separation of 106 mV, the peak current increases about 8 times and the oxidation peak potential decreases about 200 mV as compared to that at bare glassy carbon electrode. The peak currents change linearly with concentration of dopamine from 1×10−7 to 3.2×10−4 mol/L, the detection limit is 4.6×10−8 mol/L. The composite electrode can effectively eliminate the interference of ascorbic acid and has better stability and excellent reproducibility.
ISSN:1040-0397
1521-4109
DOI:10.1002/elan.200503425