Peculiar Thermal Behavior of UO 2 Local Stucture

Most materials expand with temperature because of the anharmonicity of lattice vibration, and only a few shrink with increasing temperature. UO , whose thermal properties are of significant importance for the safe use of nuclear energy, was considered for a long time to belong to the first group. Th...

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Veröffentlicht in:Inorganic chemistry 2018-12, Vol.57 (23), p.14890-14894
Hauptverfasser: Prieur, Damien, Epifano, Enrica, Dardenne, Kathy, Rothe, Joerg, Hennig, Christoph, Scheinost, Andreas C, Neuville, Daniel R, Martin, Philippe M
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Sprache:eng
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Zusammenfassung:Most materials expand with temperature because of the anharmonicity of lattice vibration, and only a few shrink with increasing temperature. UO , whose thermal properties are of significant importance for the safe use of nuclear energy, was considered for a long time to belong to the first group. This view was challenged by recent in situ synchrotron X-ray diffraction measurements, showing an unusual thermal decrease of the U-O distances. This thermal shrinkage was interpreted as a consequence of the splitting of the U-O distances due to a change in the U local order from Fm3̅ m to Pa3̅. In contrast to these previous investigations and using an element-specific synchrotron-based spectroscopic method, we show here that the U sublattice remains locally of the fluorite type from 50 to 1265 K, and that the decrease of the first U-O bond lengths is associated with an increase of the disorder.
ISSN:0020-1669
1520-510X
DOI:10.1021/acs.inorgchem.8b02657