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Electronic structure of early 3<i>d</i>-transition-metal oxides by analysis of the 2<i>p</i>core-level photoemission spectra
348
Citations
33
References
1996
Year
EngineeringComputational ChemistryChemistryEarly 3Electronic Excited StateElectronic StructureElectron SpectroscopyCharge-transfer MechanismCharge-transfer RegimeOxide HeterostructuresInorganic ChemistryPhysicsPhysical ChemistryLate Tm CompoundsQuantum ChemistryTransition Metal ChalcogenidesNatural SciencesCondensed Matter PhysicsApplied Physics
The electronic structures of a wide range of early transition-metal (TM) compounds, including Ti and V oxides with metal valences ranging from 2+ to 5+ and formal d-electron numbers ranging from 0 to 2, have been investigated by a configuration-interaction cluster model analysis of the core-level metal 2p x-ray photoemission spectra (XPS). Inelastic energy-loss backgrounds calculated from experimentally measured electron-energy-loss spectra (EELS) were subtracted from the XPS spectra to remove extrinsic loss features. Parameter values deduced for the charge-transfer energy \ensuremath{\Delta} and the d-d Coulomb repulsion energy U are shown to continue the systematic trends established previously for the late TM compounds, giving support to a charge-transfer mechanism for the satellite structures. The early TM compounds are characterized by a large metal d-ligand p hybridization energy, resulting in strong covalency in these compounds. Values for \ensuremath{\Delta} and U suggest that many early TM compounds should be reclassified as intermediate between the charge-transfer regime and the Mott-Hubbard regime. \textcopyright{} 1996 The American Physical Society.
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1954 | 1.7K | |
1973 | 671 | |
1979 | 602 | |
1993 | 596 | |
1992 | 531 | |
1994 | 355 | |
1986 | 341 | |
1979 | 229 | |
1991 | 199 |
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