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Oxygen vacancy ordering in superlatives of the two novel oxides, La2Ni2O5 and La2Co2O5, prepared by low temperature reduction of the parent perovskites
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1985
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EngineeringTheoretical Inorganic ChemistryOxidation ResistanceHalide PerovskitesChemistryInorganic MaterialPerovskite ModuleOxygen VacancyOrdered StructuresParent PerovskitesMaterials ScienceInorganic ChemistryOxide ElectronicsPerovskite MaterialsComposition La2b2o5Lead-free PerovskitesCrystallographyTransition Metal IonsCondensed Matter PhysicsFunctional MaterialsLow Temperature Reduction
Controlled reduction of LaBO3(B = Co or Ni) perovskites gives rise to ordered structures of composition La2B2O5, belonging to the homologous series LanBnO3n–1, which retain the original features of the perovskite; the co-ordination of the transition metal ions differ, with Ni2+ ions showing octahedral and square-planar co-ordination and the Co2+ ions showing octahedral and tetrahedral co-ordination.
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