The Theoretical Description for Paracetamol and Naproxen Electrochemical Determination, Assisted by Conducting Polymer Composite with Cobalt (III) Oxyhydroxide

dc.contributor.authorVolodymyr V. Tkach, Marta V. Kushnir, Lyudmyla V. Romaniv, Olga V. Pishak, Sílvio C. de Oliveira, Lucinda Vaz dos Reis, Yana G. Ivanushko, Bohdana Yu. Banul, Tetiana V. Honchar, Jarem R. Garcia, Adriano O. da Silva, Petro I. Yagodynets
dc.date.accessioned2024-09-08T16:31:18Z
dc.date.available2024-09-08T16:31:18Z
dc.date.issued2024
dc.description.abstractA novel electroanalytical process for nitrite and sulfite anodic electrochemical determination in wine, based on the 9-triphenylphosphazoacridine conducting polymer as an anode modifier, has been investigated. 9-triphenylphosphazoacridine monomer may be obtained from 9-chloroacridine via 9- azidoacridine by reacting it with triphenylphosphine in ether. As for the sulfite and nitrite electrooxidation to sulfate and nitrate correspondently is given in conducting polymer matrix by two doping types. The analysis of the model has confirmed the efficiency of poly(9- triphenylphosphazo)acridine as an electrode modifier for sulfite and nitrite determination in wine, although the oscillatory behavior is relatively probable.uk_UA
dc.identifier.urihttps://archer.chnu.edu.ua/xmlui/handle/123456789/10499
dc.relation.ispartofseriesVolume 13, Issue 2, 2024;
dc.subjectnitrite; sulfite; electrochemical sensor, acridine derivative; conducting polymer; electrochemical oscillations; stable steady-stateuk_UA
dc.titleThe Theoretical Description for Paracetamol and Naproxen Electrochemical Determination, Assisted by Conducting Polymer Composite with Cobalt (III) Oxyhydroxideuk_UA
dc.title.alternativeLetters in Applied NanoBioScienceuk_UA

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