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dc.contributor.authorIstomin, S. Ya.
dc.contributor.authorKarakulina, O. M.
dc.contributor.authorRozova, M.G.
dc.contributor.authorKazakov, S.M.
dc.contributor.authorGippius, A.A.
dc.contributor.authorAntipov, E.V.
dc.contributor.authorBobrikov, I.A.
dc.contributor.authorBalagurov, A.M.
dc.contributor.authorTsirlin, A.A.
dc.contributor.authorMichau, A.
dc.contributor.authorBiendicho, J.J.
dc.contributor.authorSvensson, G.
dc.contributor.otherInstitut de Recerca en Energía de Catalunya
dc.date.accessioned2017-03-21T11:45:26Z
dc.date.available2017-03-21T11:45:26Z
dc.date.issued2016
dc.identifier.citationIstomin, S. Y. [et al.]. Tuning the high-temperature properties of Pr2NiO4+δ by simultaneous Pr- and Ni-cation replacement. "RSC Advances", 2016, vol. 6, 40, p. 33951-33958.
dc.identifier.issn20462069
dc.identifier.urihttp://hdl.handle.net/2117/102732
dc.description.abstractNovel Pr2-xSrxNi1-xCoxO4±δ (x = 0.25; 0.5; 0.75) oxides with the tetragonal K2NiF4-type structure have been prepared. Room-temperature neutron powder diffraction (NPD) study of x = 0.25 and 0.75 phases together with iodometric titration results have shown the formation of hyperstoichiometric oxide for x = 0.25 (δ = 0.09(2)) and a stoichiometric one for x = 0.75. High-temperature X-ray powder diffraction (HT XRPD) showed substantial anisotropy of the thermal expansion coefficient (TEC) along the a- and c-axis of the crystal structure, which increases with increasing the Co content from TEC(c)/TEC(a) = 2.4 (x = 0.25) to 4.3 (x = 0.75). High-temperature NPD (HT NPD) study of the x = 0.75 sample reveals that a very high expansion of the axial (Ni/Co)-O bonds (75.7 ppm K-1 in comparison with 9.1 ppm K-1 for equatorial ones) is responsible for such behaviour, and is caused by a temperature-induced transition between low- and high-spin states of Co3+. This scenario has been confirmed by high-temperature magnetization measurements on a series of Pr2-xSrxNi1-xCoxO4±δ samples. For compositions with high Ni content (x = 0.25 and 0.5) we synthesised K2NiF4-type oxides Pr2-x-ySrx+y(Ni1-xCox)O4±δ, y = 0.0-0.75 (x = 0.25); y = 0.0-0.5 (x = 0.5). The studies of the TEC, high-temperature electrical conductivity in air, chemical stability of the prepared compounds in oxygen and toward interaction with Ce2-xGdxO2-x/2 (GDC) at high temperatures reveal optimal behaviour of Pr1.35Sr0.65Ni0.75Co0.25O4+δ. This compound shows stability in oxygen at 900°C and does not react with GDC at least up to 1200°C. It features low TEC of 13 ppm K-1 and high-temperature electrical conductivity in air of 280 S cm-1 at 900°C, thus representing a promising composition for use as a cathode material in intermediate temperature solid oxide fuel cells (IT-SOFC). © The Royal Society of Chemistry 2016.
dc.language.isoeng
dc.rightsAttribution-NonCommercial-NoDerivs 3.0 Spain
dc.rights.urihttp://creativecommons.org/licenses/by-nc-nd/3.0/es/
dc.subjectÀrees temàtiques de la UPC::Enginyeria dels materials::Assaig de materials
dc.subject.otherCathodes
dc.subject.otherCerium
dc.subject.otherChemical compounds
dc.subject.otherChemical stability
dc.subject.otherCobalt
dc.subject.otherCobalt compounds
dc.subject.otherCrystal structure
dc.subject.otherDiffraction
dc.subject.otherElectric conductivity
dc.subject.otherFuel cells
dc.subject.otherGadolinium
dc.subject.otherNickel
dc.subject.otherPraseodymium
dc.subject.otherProduct development
dc.subject.otherSolid oxide fuel cells (SOFC)
dc.subject.otherThermal expansion
dc.subject.otherX ray powder diffraction
dc.titleTuning the high-temperature properties of Pr2NiO4+δ by simultaneous Pr- and Ni-cation replacement
dc.typeArticle
dc.identifier.doi10.1039/c6ra03099h
dc.relation.publisherversionhttp://pubs.rsc.org/en/content/articlepdf/2016/ra/c6ra03099h
dc.rights.accessOpen Access
dc.description.versionPostprint (published version)
local.citation.other40
local.citation.publicationNameRSC Advances
local.citation.volume6
local.citation.startingPage33951
local.citation.endingPage33958


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