Publication | Closed Access
Electronic structure of 3d transition metal pyrites (M = Fe, Co or Ni) by analysis of the M 2p core-level photoemission spectra
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Citations
14
References
1996
Year
Transition Metal PyritesEngineeringEmpty Ligand OrbitalsChemistryElectronic StructureIi-vi SemiconductorElectron SpectroscopyQuantum MaterialsScreening ChannelMaterials ScienceInorganic ChemistryPhysicsQuantum ChemistryCrystallographyTransition Metal ChalcogenidesMetal 2PNatural SciencesCondensed Matter PhysicsApplied PhysicsM 2P
We have reinterpreted the metal 2p core-level x-ray photoemission spectra of the 3d transition-metal pyrites , and using a new version of the single-impurity cluster model which includes the effects of charge transfer to the conduction band. By accounting for the effective screening of the strong core-hole potential involving the unfilled S 3p orbitals on the ligand sites, we can successfully model the highly asymmetric lineshapes and weak satellite structures found for and . Reduced screening in leads to the appearance of strong satellite structures and the spectrum is best interpreted using the screening channel to the narrow upper Hubbard band. These results indicate the importance of the empty ligand orbitals when interpreting the physical properties of the pyrite-type chalcogenides.
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