Publication | Open Access
Core-level satellites and outer core-level multiplet splitting in Mn model compounds
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2000
Year
Inorganic ChemistryElectron CorrelationEngineeringCharge TransferPhysicsCore-level SatellitesNatural SciencesElectron SpectroscopyApplied PhysicsCondensed Matter PhysicsQuantum MaterialsQuantum ChemistryChemistryMn Model CompoundsElectronic Structure
We report a systematic study of the Mn 2p, 3s, and 3p core-level photoemission and satellite structures for Mn model compounds. Charge transfer from the ligand state to the 3d metal state is observed and is distinguished by prominent shake-up satellites. We also observe that the Mn 3s multiplet splitting becomes smaller as the Mn oxidation state increases, and that 3s–3d electron correlation reduces the branching ratio of the S:7S5 states in the Mn 3s spectra. In addition, as the ligand electronegativity decreases, the spin-state purity is lost in the 3s spectra, as evidenced by peak broadening. Our results are best understood in terms of the configuration–interaction model including intrashell electron correlation, charge transfer, and final-state screening.
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