Please use this identifier to cite or link to this item: http://rps.chtei-knteu.cv.ua:8585/jspui/handle/123456789/1332
Title: Theoretical Description for Sucralose Cathodical Electrochemical Determination on the Conducting Polymer, Containing Pyridinic Nitrogen Atoms
Authors: Bagrii, Konon
Tkach, Volodymyr
Storoshchuk, Bogdan
Storoshchuk, Nataliia
Kopiika, Vira
Luganska, Olga
Omelyanchyk, Lyudmyla
Gencheva, Viktoria
Yeshchenko, Yulia
Kormosh, Zholt
Nazymok, Yevgeniya
Moysiuk, Volodymyr
Rusnak, Vitalii
Palichuk, Yuriy
Odyntsova, Vira
Omelyanchik, Volodymyr
Palamarek, Karina
Strutynska, Lyubov
Danyliuk, Inna
De Oliveira, Sílvio
Yagodynets, Petro
Razhabova, Dilafruz
Keywords: sucralose
stable steady-state
electrochemical sensor
conducting polymer
electrochemical oscillations
Issue Date: 2022
Publisher: Biointerface Research in Applied Chemistry, Volume 12, Issue 2, 2022, pp. 1499-1506
Abstract: A novel process for sucralose cathodically electrochemical determination has been suggested. In this process, the conducting polymer with pyridinic nitrogen atoms reacts specifically with sucralose, yielding a salt. This salt is thereby reduced gradually, yielding a less conducting macromolecule. The analysis of the correspondent mathematical model, realized through the linear stability theory and bifurcation analysis, shows that the oscillatory behavior is more probable to be realized due to charge changes and rearrangements during the electroanalytical process its influence on the surface and DEL conductivity. Nevertheless, this process may be efficient for the sucralose electrochemical determination.
URI: http://rps.chtei-knteu.cv.ua:8585/jspui/handle/123456789/1332
ISSN: 2069-5837
Appears in Collections:31 Хімія

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