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Experimental versus ab initio x-ray absorption of iron-doped zirconia: Trends in O K-edge spectra as a function of iron doping.

Articolo
Data di Pubblicazione:
2014
Abstract:
We present an experimental study of x-ray absorption near edge structure (XANES) at L2,3, M2,3, and K edges of, respectively, Fe, Zr, and O in iron-doped zirconia (ZrO2:Fe) for different Fe dopant concentrations x (from x ∼ 6%to x ∼ 25%at.) andmake the comparisonwith ab initio simulations at the O K-edge.The x-raymagnetic circular dichroism (XMCD) measurements show no evidence of ferromagnetic (FM) order for all the analyzed samples in agreement with our ab initio simulations, which show an antiferromagnetic (AFM) order. We found that substituting Zr with Fe atoms leads to a radical change in the O K-edge XANES spectrum, especially in the pre-edge region where a pre-edge peak appears. This pre-edge peak is ascribed to dipole transitions from O1s to O2p states that are hybridized with the unoccupied Fe 3d states.Both theoretical and experimental results reveal that the intensity
of the pre-edge peak increases with Fe concentration, suggesting the increase of unoccupied Fe 3d states. The increase of Fe concentration increases oxygen vacancies as required for charge neutrality and consequently improves AFM ordering. According to our first-principles calculations, the effect of one Fe atom is mostly localized in the first oxygen shell and vanishes as one moves far from it. Thus the increase of the O K-pre-edge peak with increasing Fe concentration is due to the increase of percentage of oxygen atoms that are near neighbors to Fe atoms.
Tipologia CRIS:
1.1 Articolo in rivista
Keywords:
Dilute magnetic oxides, X-ray absorption spectroscopy, X-ray magnetic circular dichroism, thin films
Elenco autori:
Douma, D. H.; Ciprian, Roberta; Lamperti, A.; Lupo, P.; Cianci, E.; Sangalli, D.; Casoli, Francesca; Nasi, L.; Albertini, F.
Link alla scheda completa:
https://iris.unibs.it/handle/11379/459079
Pubblicato in:
PHYSICAL REVIEW. B, CONDENSED MATTER AND MATERIALS PHYSICS
Journal
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