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    STUDIA CHEMIA - Ediţia nr.4 din 2020  
         
  Articol:   ACTIVATED MULTI-WALLED CARBON NANOTUBES FOR ELECTROCHEMICAL DETECTION OF DOPAMINE IN THE PRESENCE OF ASCORBIC AND URIC ACID.

Autori:  ANDREA KELLENBERGER, RODICA GAVRILA, NICOLETA PLESU.
 
       
         
  Rezumat:  
DOI: 10.24193/subbchem.2020.4.03

Published Online: 2020-12-30
Published Print: 2020-12-30
pp. 35-52
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ABSTRACT: Electrochemical sensors have been prepared using pristine and activated multi-walled carbon nanotubes on glassy carbon electrode. The detection of dopamine in the presence of ascorbic acid was tested by square wave voltammetry and cyclic voltammetry. Best results were obtained for glassy carbon modified with activated carbon nanotubes electrodes. A linear dependence between current intensities and dopamine concentrations is found in both the absence/presence of ascorbic acid, in the range of 4-100 µM / 6-100 µM, with detection and quantification limits of 0.44 / 0.64 and 1.45 / 2.14 µM, respectively and high sensitivity. The developed electrodes also showed very good performance in separating the oxidation potentials of ascorbic acid, dopamine and uric acid, with peak potential differences of 200 and 170 mV. Dopamine detection in synthetic solutions in the presence of both ascorbic and uric acid gave recovery rates of 98%, indicating that the method is reliable.

Key words: electrochemical sensor, carbon nanotubes, dopamine, ascorbic acid, square wave voltammetry
 
         
     
         
         
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