
The Theoretical Description for Amavadin-Ion Electrochemical Determination in Amanita muscaria Mushroom Pulp and Extract by Galvanostatic Conducting Polymer Doping
2022; Volume: 13; Issue: 4 Linguagem: Inglês
10.33263/briac134.400
ISSN2069-5837
AutoresVolodymyr Tkach, Marta V. Kushnir, Vira Kopiika, Olga V. Luganska, Lyudmyla Omelyanchik, Жолт Кормош, Mariia Mytchenok, Jarem Raul Garcia, Каріна Паламарек, Konon Bagrii, Oksana Vitriak, Anzhelika Medvedeva, Sílvio De Oliveira, Petró Yagodynets, Dilafruz Razhabova, L. N. Niyazov, Dilfuza M. Musayeva, Xayriddin Kosimov, Oysha Jabborova, Bakhodirjon Samadov, Gulandom Sagdullayeva, Gulhayo Hamdanova, Viktoriia Payentko, Eugeny Demianenko, José Ferrão Da Paiva Martins, Lucinda Vaz, Dos Reis,
Tópico(s)Slime Mold and Myxomycetes Research
ResumoThe theoretical description for amavadin-ion electrochemical determination in mushroom pulp has been given for the first time. The correspondent mathematical model has been developed and analyzed by linear stability theory and bifurcation analysis, providing the theoretical investigation of the electrochemical behavior of the electroanalytical system. It has been shown that the system behavior in galvanostatic mode is more dynamic than in potentiostatic mode, which is reflected in the enhancement of the probability of the electrochemical oscillations due to the intense influence of chemical and electrochemical stages on both DEL and surface charge. Nevertheless, the system is efficient for electroanalysis or conducting polymer modification for electroanalytical purposes.
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