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Carbon nanotube-modified electrodes for the simultaneous determination of dopamine and ascorbic acid

The Analyst · 2002 · Vol. 127(5) · pp. 653–658
Zonghua WangJun LiuQionglin LiangYiming WangGuoan Luo

Abstract

The voltammetric separation of dopamine and ascorbic acid was studied with cyclic voltammetry at two kinds of carbon nanotube-modified electrodes (coated and intercalated). The anodic peak difference reached 270 mV under the present conditions. The separation mechanism and effect factors were carefully studied. Using various types of surfactants as coating dispersants of carbon nanotubes, it was demonstrated that the charge nature of the surfactants had a strong effect on the electrochemical behavior of dopamine and ascorbic acid. When the oxidation solution of carbon nanotubes was changed from the most commonly used mixed concentrated nitric acid and sulfuric acid (1 + 3 v/v) to dilute nitric acid and to hydrochloric acid, the anodic peak separation value of dopamine and ascorbic acid increased significantly, and it was shown that carboxylic acid groups attached to the carbon nanotubes were an adverse factor for the discrimination of DA from AA. These results indicated that the resolution of DA and AA was mainly attributable to the stereo porous interfacial layer formed from aggregated pores and inner cavities of the carbon nanotubes. The modified electrodes exhibited an attractive ability to measure DA and AA simultaneously and showed good stability and reproducibility.

Electrochemical sensors and biosensorsConducting polymers and applicationsElectrochemical Analysis and ApplicationsAscorbic acidCarbon nanotubeChemistryCyclic voltammetryNitric acidElectrochemistrySulfuric acidElectrodeInorganic chemistryChemical engineering

MeSH terms

Ascorbic AcidCarbonDopamineElectrochemistryElectrodesNanotechnology

Funding

  • National Natural Science Foundation of China
Citations
465
FWCI
26.40
field-weighted impact
References
33
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100%
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References
Protein electrochemistry at carbon nanotube electrodes
Journal of Electroanalytical Chemistry · 1997 · 357 citations
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Nature · 1991 · 42,584 citations
The immobilisation of proteins in carbon nanotubes
Inorganica Chimica Acta · 1998 · 263 citations
Single-shell carbon nanotubes of 1-nm diameter
Nature · 1993 · 8,859 citations
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