Spectromicroscopic evidence of interstitial and substitutional dopants in association with oxygen vacancies in Sm-doped ceria nanoparticles

Dopant-induced structural differences and defects in Sm doped CeO 2 nanoparticles (NPs) exhibiting room temperature ferromagnetism were investigated by complementary spectroscopic analysis, including X-ray Absorption Spectroscopy, Extended X-Ray Absorption Fine Structure analysis, Raman spectroscopy...

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Veröffentlicht in:Physical chemistry chemical physics : PCCP 2014-01, Vol.16 (7), p.3274-3281
Hauptverfasser: Chen, Shih-Yun, Chen, Ren-Jie, Lee, William, Dong, Chung-Li, Gloter, Alexandre
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Sprache:eng
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Zusammenfassung:Dopant-induced structural differences and defects in Sm doped CeO 2 nanoparticles (NPs) exhibiting room temperature ferromagnetism were investigated by complementary spectroscopic analysis, including X-ray Absorption Spectroscopy, Extended X-Ray Absorption Fine Structure analysis, Raman spectroscopy and atomically resolved Scanning Transmission Electron Microscopy-Electron Energy Loss Spectroscopy (STEM-EELS). The CeO 2 NPs were prepared by precipitation methods with Sm/Ce ratios ranging from 0 to 0.17 and with typical sizes from 2 to 4 nanometers. These results demonstrated that the nature and the distributions of defects strongly depend on the concentrations of the dopants. Two regimes in the formation of these (Ce 1− x , Sm x )O 2− δ NPs were observed. At lower dopant levels ( x < 7%), Sm 3+ atoms mainly replace the Ce atoms in the (Ce 3+ -O 2− vacancy) complexes which are present in ceria NPs. The dopants are unambiguously observed and localized as diluted by real space STEM-EELS spectromicroscopy done with atomic sensitivity. Nevertheless, this substitution induces a strong structural rearrangement and some Sm dopants are also observed as interstitials in association with Ce vacancies. At higher doping concentrations ( x > 7%), a Sm rich phase in association with a high amount of oxygen vacancies is observed at the surface of the particles. It results in the formation of core-shell type nanoparticles with crystallographic continuities where a Sm doped CeO 2− δ core is surrounded by a layer of typical (Ce 0.7 , Sm 0.3 ) 2 O 3 composition. STEM-EELS, XAS, EXAFS and Raman investigation of dopants in association with oxygen vacancies in room temperature ferromagnetic Sm-doped ceria nanoparticles.
ISSN:1463-9076
1463-9084
DOI:10.1039/c3cp54613f