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dc.contributor.authorStudenyak Ihoren
dc.contributor.authorСтуденяк Ігорuk
dc.contributor.authorBereznyuk Serhiyen
dc.contributor.authorСергій Березнюкuk
dc.contributor.authorPogodin Artemen
dc.contributor.authorПогодін Артемuk
dc.contributor.authorFilep Mykhailoen
dc.contributor.authorФілеп Михайлоuk
dc.contributor.authorFilep Mihályhu
dc.contributor.authorShender Irynaen
dc.contributor.authorШендер Іринаuk
dc.contributor.authorOleksandr Kokhanen
dc.contributor.authorКохан Олександрuk
dc.date.accessioned2024-03-15T11:38:55Z-
dc.date.available2024-03-15T11:38:55Z-
dc.date.issued2020-
dc.identifier.citationIn Proceedings of the 2020 IEEE 10th International Conference on “Nanomaterials: Applications & Properties” (NAP-2020). Volume 2., Sumy, Sumy State University, 2020. 4 p.en
dc.identifier.isbn978-1-7281-8506-4-
dc.identifier.urihttps://dspace.kmf.uz.ua/jspui/handle/123456789/3413-
dc.description.abstractAbstract. Ceramic samples based on (Cu1-xAgx)7SiS5I nanocrystalline powders were manufactured by pressing them at ~ 400 MPa pressure and subsequent annealing at 973 K during 36 hours. Investigations of electrical conductivity of ceramics based on (Cu1-xAgx)7SiS5I solid solutions were carried out by the method of impedance spectroscopy in the frequency range from 10 Hz to 2×106 Hz and in the temperature range 292-383 K. It is established that with increasing the content of silver atoms in ceramic samples based on (Cu1-xAgx)7SiS5I, the ionic component of electrical conductivity increases nonlinearly, while electronic component decreases nonlinearly, and their ratio increases nonlinearly and for Ag7SiS5I exceeds 60000.en
dc.language.isoenen
dc.publisherSumy State Universityen
dc.relation.ispartofseries;Volume 2.-
dc.rightsAttribution-NonCommercial-NoDerivs 3.0 United States*
dc.rights.urihttp://creativecommons.org/licenses/by-nc-nd/3.0/us/*
dc.subjectsolid solutionsen
dc.subjectceramicsen
dc.subjectelectrical conductivityen
dc.subjectactivation energyen
dc.subjectcompositional dependenceen
dc.titleElectrical conductivity of ceramics based on (Cu1-x Agx)7SiS5I nanocrystalline powdersen
dc.typedc.type.collaborativeen
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