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dc.creatorDanilov N.A., Lyagaeva J.G., Medvedev D.A., Demin A.K., Tsiakaras P.en
dc.date.accessioned2023-01-31T07:50:24Z
dc.date.available2023-01-31T07:50:24Z
dc.date.issued2018
dc.identifier10.1016/j.electacta.2018.07.179
dc.identifier.issn00134686
dc.identifier.urihttp://hdl.handle.net/11615/73068
dc.description.abstractProton-conducting materials constitute a class of oxide compounds possessing the required properties for application as electrolytes for low- and intermediate temperature solid oxide cells. In the present investigation, new highly dense BaCe0.8−xZrxDy0.2O3−δ ceramic materials (x = 0.2 … 0.6, Δx = 0.1) are successfully prepared and their electrochemical properties are thoroughly characterised. The separation of total conductivity in bulk and grain boundary components along with ionic and electronic contributions is performed using 2-probe AC and 4-probe DC conductivity measurements. The obtained results reveal that the bulk region determines the transport properties of the materials, starting from ∼190 °C for x = 0.2 and 470 °C for x = 0.6, whereas at lower temperatures the total conductivity is controlled by the grain boundaries. According to high-temperature measurements performed in air and hydrogen atmospheres with a wide water vapour partial pressure variation, the Zr-enriched samples (in comparison with the Ce-enriched ones) exhibit a higher contribution of electronic conductivity in oxidising atmospheres and a lower contribution of proton conductivity in reducing atmospheres. The negative effects of Zr for Ce substitution on the transport properties are compensated by their higher chemical stability, motivating the optimal composition exploration required for the specified electrochemical devices. © 2018 Elsevier Ltden
dc.language.isoenen
dc.sourceElectrochimica Actaen
dc.source.urihttps://www.scopus.com/inward/record.uri?eid=2-s2.0-85050879775&doi=10.1016%2fj.electacta.2018.07.179&partnerID=40&md5=dd262ce767b6f604acc2c38e544ea340
dc.subjectBarium zirconateen
dc.subjectCeramic materialsen
dc.subjectChemical stabilityen
dc.subjectGrain boundariesen
dc.subjectPerovskiteen
dc.subjectProton conductivityen
dc.subjectSolid oxide fuel cells (SOFC)en
dc.subjectTemperature measurementen
dc.subjectTransport propertiesen
dc.subjectBaCeO3en
dc.subjectBaZrO3en
dc.subjectDc conductivity measurementsen
dc.subjectElectronic contributionsen
dc.subjectGrain boundary transporten
dc.subjectHigh temperature measurementen
dc.subjectIntermediate temperaturesen
dc.subjectProton conducting materialsen
dc.subjectAtmospheric temperatureen
dc.subjectElsevier Ltden
dc.titleTransport properties of highly dense proton-conducting BaCe0.8–xZrxDy0.2O3–δ materials in low- and high-temperature rangesen
dc.typejournalArticleen


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