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dc.contributor.authorShuaibov, O.K-
dc.contributor.authorMinya, O.Y-
dc.contributor.authorHrytsak, R.V-
dc.contributor.authorMalinina, A.A-
dc.contributor.authorMalinin, A.N-
dc.contributor.authorBilak, Yurii-
dc.contributor.authorHomoki, Z.T-
dc.contributor.authorБілак, Юрій Юрійовичuk
dc.contributor.authorМалініна, Антоніна Олександрівнаuk
dc.contributor.authorМалінін, Олександр Миколайовичuk
dc.contributor.authorГомокі, Золтан Тіборовичuk
dc.date.accessioned2023-01-13T08:10:33Z-
dc.date.available2023-01-13T08:10:33Z-
dc.date.issued2022-06-21-
dc.identifier.citationShuaibov O.K, Minya E.Y, Hrytsak R.V, Malinina A.A, Malinin A.N et al(2022) Electrophysical Characteristics Of Gas-Discharge Synthesis Of Thin Films On The Basis Of A Superion Conductor (Ag2s) In Air; J. Pharmaceutics and Pharmacology Research. 5(7); DOI: 10.31579/2693-7247/093uk
dc.identifier.urihttps://dspace.uzhnu.edu.ua/jspui/handle/lib/46898-
dc.description.abstractThe electrophysical characteristics of an overvoltage nanosecond discharge in air at atmospheric pressure between electrodes made of a superionic conductor, Ag2S, are presented. In the process of microexplosions of inhomogeneities on the working surfaces of electrodes in a strong electric field, vapors of the Ag2S compound and its dissociation products in plasma are introduced into the interelectrode space. This creates the prerequisites for the synthesis of thin structured films that have the properties of superionic conductors and can be deposited on a dielectric substrate placed near the discharge gap. The spatial and electrical characteristics of an overvoltage nanosecond discharge, the Raman scattering spectra of the synthesized films and their surfaces are studied.uk
dc.language.isoenuk
dc.publisherJournal of Pharmaceutics and Pharmacology Researchuk
dc.subjectelectrophysical;uk
dc.subjectmicroexplosions;uk
dc.subjectinhomogeneitiesuk
dc.titleElectrophysical Characteristics Of Gas-Discharge Synthesis Of Thin Films On The Basis Of A Superion Conductor (Ag2s) In Airuk
dc.typeTextuk
dc.pubTypeСтаттяuk
Appears in Collections:Наукові публікації кафедри квантової електроніки

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