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dc.contributor.authorEgorova, A. V.en
dc.contributor.authorBelova, K. G.en
dc.contributor.authorAnimitsa, I. E.en
dc.contributor.authorMorkhova, Ye. A.en
dc.contributor.authorKabanov, A. A.en
dc.date.accessioned2021-05-18T12:21:35Z-
dc.date.available2021-05-18T12:21:35Z-
dc.date.issued2021-03-
dc.identifier.citationEffect of Zinc Doping on Electrical Properties of LaAlO3 Perovskite / A. V. Egorova, K. G. Belova, I. E. Animitsa, Ye. A. Morkhova, A. A. Kabanov // Chimica Techno Acta. — 2021. — Vol. 8, No. 1. — № 20218103.en
dc.identifier.issn2411-1414online
dc.identifier.urihttp://elar.urfu.ru/handle/10995/97933-
dc.descriptionReceived: 09.11.2020. Revised: 03.02.2021. Accepted: 03.02.2021. Available online: 04.02.2021.en
dc.descriptionThis article belongs to the PCEE-2020 Special Issueen
dc.description.abstractNew solid solution with the general formula of LaAl1-xZnxO3-1/2x was prepared by a solid-state reaction route. According to XRD, the crystal structure of LaAlO3 is rhombohedral, while the solid solution possesses cubic symmetry. Homogeneity region of the solid solution LaAl1-xZnxO3-1/2x was narrow and limited to the maximum concentration of 5 mol. %. Computer simulations using crystallochemistry and density functional theory approaches showed that LaAlO3 has high energy barriers for O2–-ion transport (>2.79 eV). These results are in good agreement with the low values of electrical conductivity obtained experimentally. The electrical conductivity of LaAl1-xZnxO3-1/2x was measured by impedance spectroscopy in the temperature range of 200–1000 °C. The partial substitution of Al3+ by Zn2+ was found to increase the electrical conductivity by ~2 orders of magnitude. The electrical conductivity of doped phase LaAl0.95Zn0.05O2.975 as a function of oxygen partial pressure was measured, and the partial contributions (oxygen-ionic and electronic) were determined. It was found that the sample has mixed ionic and p-type electronic conductivity, while the electronic contribution increases with the rise of the temperature.en
dc.description.sponsorshipThe theoretical study was supported by the Russian Science Foundation project no. 19-73-10026. Y.A.M. thanks the Russian Foundation for Basic Research (RFBR) for a partial support with grant no. 20-33-90018. The DFT calculations were performed using the supercomputer ‘Zeo-lite’ (SCTMS). The experimental study was supported by the State Assignment no. АААА-А20-120061990010-7.en
dc.format.mimetypeapplication/pdfen
dc.language.isoenen
dc.publisherUral Federal Universityen
dc.publisherУральский федеральный университетru
dc.relationinfo:eu-repo/grantAgreement/RSF//19-73-10026en
dc.relation.ispartofChimica Techno Acta. 2021. Vol. 8. № 1en
dc.subjectPEROVSKITEen
dc.subjectLANTHANUM ALUMINA ZINC STRUCTUREen
dc.subjectIONIC CONDUCTIVITYen
dc.subjectMODELING OF ION TRANSPORTen
dc.subjectGEOMETRICAL-TOPOLOGICAL ANALYSISen
dc.subjectVORONOI PARTITIONen
dc.subjectBVSE-SIMULATIONen
dc.subjectDFT-CALCULATIONen
dc.titleEffect of Zinc Doping on Electrical Properties of LaAlO3 Perovskiteen
dc.typeArticleen
dc.typeinfo:eu-repo/semantics/acceptedVersionen
dc.typeinfo:eu-repo/semantics/articleen
dc.conference.namePhysical Chemistry and Electrochemistry of Molten and Solid State Electrolytesen
dc.conference.nameXVIII Российская конференция «Физическая химия и электрохимия расплавленных и твердых электролитов»ru
dc.conference.date21.09.2020-25.09.2020-
dc.identifier.rsihttps://elibrary.ru/item.asp?id=45746977-
dc.identifier.doi10.15826/chimtech.2020.8.1.03-
local.contributor.employeeЕгорова, Анастасия Вячеславовнаru
local.contributor.employeeБелова, Ксения Геннадьевнаru
local.contributor.employeeАнимица, Ирина Евгеньевнаru
local.issue1-
local.volume8-
local.fund.rsf19-73-10026-
local.fund.rffi20-33-90018-
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