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dc.contributor.authorVolodymyr V, Tkach
dc.contributor.authorMarta V, Kushnir
dc.contributor.authorSílvio C, de Oliveira
dc.contributor.authorIgor G, Biryuk
dc.contributor.authorTetyana B, Sykyrytska
dc.contributor.authorYana G, Ivanushko
dc.contributor.authorPetro I, Yagodynets
dc.contributor.authorAdriano O, da Silva
dc.contributor.authorNataliia P, Derevianko
dc.contributor.authorMykhailo P, Zavhorodnii
dc.contributor.authorVira M, Odyntsova
dc.contributor.authorMykola P, Krasko
dc.contributor.authorInna M, Shevchenko
dc.contributor.authorViktoriia M, Lavrinenko
dc.contributor.authorOleksii T, Yermak
dc.contributor.authorLaziz N, Niyazov
dc.contributor.authorDilfuza M, Musayeva
dc.contributor.authorXayriddin, Kosimov
dc.contributor.authorOysha, Jabborova
dc.contributor.authorGulandom, Sagdullayeva
dc.contributor.authorElvina, Sharipova
dc.contributor.authorTetiana V, Morozova
dc.contributor.authorOleksandr V, Mudrak
dc.contributor.authorJarem R, Garcia
dc.contributor.authorJosé Inácio Ferrão, da Paiva Martins
dc.contributor.authorZholt O, Kormosh
dc.contributor.authorAlla V, Grekova
dc.contributor.authorIanina F, Burdina
dc.contributor.authorRuslan V, Lavrik
dc.date.accessioned2026-03-27T08:32:44Z
dc.date.available2026-03-27T08:32:44Z
dc.date.issued2026
dc.identifier.citationVolodymyr V. Tkach, Marta V. Kushnir, Sílvio C. de Oliveira, Igor G. Biryuk, Tetyana B. Sykyrytska, Yana G. Ivanushko, Petro I. Yagodynets, Adriano O. da Silva, Nataliia P. Derevianko, Mykhailo P`. Zavhorodnii, Vira M. Odyntsova, Mykola P. Krasko, Inna M. Shevchenko, Viktoriia M. Lavrinenko, Oleksii T. Yermak, Laziz N. Niyazov, Dilfuza M. Musayeva, Xayriddin Kosimov, Oysha Jabborova, Gulandom Sagdullayeva, Elvina Sharipova, Tetiana V. Morozova, Oleksandr V. Mudrak, Jarem R. Garcia, José Inácio Ferrão da Paiva Martins, Zholt O. Kormosh, Alla V. Grekova, Ianina F. Burdina, Ruslan V. Lavrik (2026). Dibenzoxazepine Anodic Determination and Removal on CuS Nanoparticles: A Theoretical Insight. Letters in Applied NanoBioScience. Vollume 15. https://doi.org/10.33263/LIANBS151.047 (Scopus)uk_UA
dc.identifier.issn2284-6808
dc.identifier.urihttps://docs.academia.vn.ua/handle/123456789/2690
dc.description.abstractFor the first time, the electroanalytical system for the electrochemical determination and removal of dibenzoxazepine chemical warfare agent on CuS-modified anode has been given. Two oxidation scenarios, including the electropolymerization and N-oxidation, are possible for dibenzoxazepine. Either way, both dibenzoxazepine and its N-oxide will be removed from the environment towards the polymer phase. The analysis of the electroanalytical process using linear stability theory and bifurcation analysis confirms that the steady-state stability allows us to use this process for both electroanalytical and electrocatalytic purposes.uk_UA
dc.language.isoenuk_UA
dc.publisherLetters in Applied NanoBioScience. Open-Access Journaluk_UA
dc.subjectchemical warfare agents; dibenzoxazepine; electrochemical sensing; electrochemical determination; electrochemical removal; copper sulfide; electropolymerization; stable steady-state.uk_UA
dc.titleDibenzoxazepine Anodic Determination and Removal on CuS Nanoparticles: A Theoretical Insightuk_UA
dc.typeArticleuk_UA


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