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Electrochemical sensors based on the electropolymerized natural phenolic antioxidants and their analytical application by the electropolymerization of suitable monomers is one of the methods of sensors fabrication. Among a wide range

Electrochemical DNA sensors based on electropolymerized materialsThe use of electropolymerized materials in the DNA sensors is reviewed with particular emphasis

Electrochemical DNA sensors and aptasensors based on electropolymerized materials and polyelectrolyte complexes electropolymerization and layer-by-layer assembling are reviewed. The conditions of electropolymerization and the role

Electrochemical DNA sensors and aptasensors based on electropolymerized materials and polyelectrolyte complexes electropolymerization and layer-by-layer assembling are reviewed. The conditions of electropolymerization and the role

Electrochemical DNA sensors and aptasensors based on electropolymerized materials and polyelectrolyte complexes electropolymerization and layer-by-layer assembling are reviewed. The conditions of electropolymerization and the role

Electropolymerized Eugenol-MWNT-Based Electrode for Voltammetric Evaluation of Wine Antioxidant Capacity© 2015 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim. Eugenol electropolymerization conditions

Electrochemistry of new derivatives of phenothiazine: Electrode kinetics and electropolymerization conditionsTz-(COOH)2 in multiple potential cycling. The carboxylic groups critically influenced electropolymerization

Selective electrochemical sensor based on the electropolymerized p-coumaric acid for the direct determination of L-cysteine
Selective electrochemical sensor based on the electropolymerized p-coumaric acid for the direct

Bi-enzyme sensor based on thick-film carbon electrode modified with electropolymerized tyramineBi-enzyme sensor based on thick-film carbon electrode modified with electropolymerized tyramine

Electropolymerized Eugenol-MWNT-Based Electrode for Voltammetric Evaluation of Wine Antioxidant Capacity© 2015 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim. Eugenol electropolymerization conditions

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