Satellite structure in the X-ray photoelectron spectra of some binary and mixed oxides of lanthanum and cerium
Сателлитная структура в рентгеновских фотоэлектронных спектрах некоторых бинарных и смешанных оксидов лантана и церия
1976-01-01
SCID: 54.1/z4wgbsgz
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Charge-transfer excitationsLanthanum and cerium oxidesSatellite structureShake-down processesX-ray photoelectron spectroscopy
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Abstract (AI)
A study of the core-electron X-ray photoelectron (X-p.e.) spectra of the f0 compounds La2O3, LaMO3(M = Fe and Co), CeO2, and BaCeO3 is described. Results on the chelate species [La(tmhd)3] and [Ce(tmhd)4](tmhd = 2,2,6,6-tetramethylheptane-3,5-dionato) are included for comparison. Special precautions have been taken to ensure an optimal degree of surface purity of the samples. Satellite structure has been observed for the 4p, in addition to the 3d and 4d, signals in both the lanthanum(III) and cerium(IV) compounds. These satellites arc discussed in terms of coexcitations of the charge-transfer type, principally O 2p→ metal 4f transitions. In the cerium(IV) oxides the satellites are apparently due to energy-gain (representing ‘ shake-down ’) rather than energy-loss (shake-up) processes.
Key Findings
1
Careful sample-surface preparation was used to optimize surface purity and improve the reliability of the spectral observations.
2
Core-electron XPS spectra were studied for La2O3, LaFeO3, LaCoO3, CeO2, BaCeO3, and corresponding lanthanide chelate species.
3
In cerium(IV) oxides, satellite features apparently arise from energy-gain, or shake-down, processes rather than conventional energy-loss shake-up processes.
4
Satellite structures were observed in 4p, 3d, and 4d signals of both lanthanum(III) and cerium(IV) compounds.
5
The satellites are interpreted mainly as charge-transfer coexcitations involving O 2p → metal 4f transitions.
Research Object
Core-electron X-ray photoelectron spectra of lanthanum(III) and cerium(IV) binary, mixed, and chelate compounds
Research Subject
Satellite structure in the 3d, 4d, and 4p signals and its charge-transfer, shake-down/shake-up origins
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1976-01-01
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