To assure the safety of oxide-fuel based nuclear reactors, the knowledge of the atomic-scale properties of U1−yMyO2±x materials is essential. These compounds show complex chemical properties, originating from the fact that actinides and rare earths may occur with different oxidation states. In these mostly ionic materials, aliovalent cationic configurations can induce changes in the oxygen stoichiometry, with dramatic effects on the properties of the fuel. First studies on U1−yAmyO2±x indicated that these materials exhibit particularly complex electronic and local-structure configurations. Here we present an in-depth study of these compounds, over a wide compositional domain, by combining XRD, XAS and Raman spectroscopy. We provide evidence...
A comprehensive analysis of X-ray absorption data obtained at the U L3-edge for a systematic series ...
Chemical environments can be chosen which stabilize actinides and lanthanides in unusually high or l...
Actinides show a great diversity in their chemistry due to the complex structure of 5f electron shel...
To assure the safety of oxide-fuel based nuclear reactors, the knowledge of the atomic-scale propert...
International audienceThe research for radiation-resistant compounds with fluorite related structure...
International audienceThe research for radiation-tolerant materials with fluorite related structure ...
The past decade has been very productive in the field of actinide (An) oxides containing high-valent...
For nuclear fuel related applications, the oxygen stoichiometry of mixed oxides U1–yMyO2±x is an ess...
Fine X-ray photo electron spectral (XPS) structure of uranium dioxide UO2 in the binding energy (BE)...
International audienceIn this paper, we determine for the fjrst time the electronic, structural and ...
The local structure and chemical speciation of the mixed valence, fluorite based oxides UO2+x (0.00p...
International audienceThe physicochemical properties of uranium are being studied in many applicatio...
Lanthanide and actinide oxides, such as CeO2 [cerium dioxide], ThO2 [thorium dioxide], and UO2 [uran...
A comprehensive analysis of X-ray absorption data obtained at the U L3-edge for a systematic series ...
Chemical environments can be chosen which stabilize actinides and lanthanides in unusually high or l...
Actinides show a great diversity in their chemistry due to the complex structure of 5f electron shel...
To assure the safety of oxide-fuel based nuclear reactors, the knowledge of the atomic-scale propert...
International audienceThe research for radiation-resistant compounds with fluorite related structure...
International audienceThe research for radiation-tolerant materials with fluorite related structure ...
The past decade has been very productive in the field of actinide (An) oxides containing high-valent...
For nuclear fuel related applications, the oxygen stoichiometry of mixed oxides U1–yMyO2±x is an ess...
Fine X-ray photo electron spectral (XPS) structure of uranium dioxide UO2 in the binding energy (BE)...
International audienceIn this paper, we determine for the fjrst time the electronic, structural and ...
The local structure and chemical speciation of the mixed valence, fluorite based oxides UO2+x (0.00p...
International audienceThe physicochemical properties of uranium are being studied in many applicatio...
Lanthanide and actinide oxides, such as CeO2 [cerium dioxide], ThO2 [thorium dioxide], and UO2 [uran...
A comprehensive analysis of X-ray absorption data obtained at the U L3-edge for a systematic series ...
Chemical environments can be chosen which stabilize actinides and lanthanides in unusually high or l...
Actinides show a great diversity in their chemistry due to the complex structure of 5f electron shel...