Publication | Open Access
Method for estimating ionicities of oxides using O1s photoelectron spectra
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2015
Year
EngineeringTheoretical Inorganic ChemistryPerovskite Oxide Batio3ChemistryInorganic MaterialElectronic StructureAverage ValenceChemical EngineeringElectron SpectroscopyO1s Photoelectron SpectraInorganic ChemistryOxide ElectronicsAtomic PhysicsPhysical ChemistryGeneral Experimental MethodQuantum ChemistryElectrochemistryNatural SciencesSpectroscopyApplied Physics
The average valence, ValO, of the oxygen anions in the perovskite oxide BaTiO3, was found using O1s photoelectron spectra to be −1.55. This experimental result is close to the theoretical value for BaTiO3 (−1.63) calculated by Cohen [Nature 358, 136 (1992)] using density functional theory. Using the same approach, we obtained values of ValO for several monoxides, and investigated the dependence of ValO and the ionicity on the second ionization energy, V(M2+), of the metal cation. We found that the dependence of the ionicity on V(M2+) in this work is close to that reported by Phillips [Rev. Mod. Phys. 42, 317 (1970)]. We therefore suggest that O1s photoelectron spectrum measurements should be accepted as a general experimental method for estimating the ionicity and average valence of oxygen anions.
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