The nanostructure and phase evolution in low-temperature oxidized (40–250 °C), fine UO2 powders (<200 nm) have been investigated by X-ray diffraction (XRD) and high-resolution transmission electron microscopy (HR-TEM). The extent of oxidation was also measured via in situ thermogravimetric analysis. The oxidation of fine powders was found to proceed differently as compared to oxidation of coarse-grained UO2. No discrete surface oxide layer was observed and no U3O8 was formed, despite the high degree of oxidation (up to O/U = 2.45). Instead, nanosized (5–15 nm) amorphous nuclei (interpreted as amorphous UO3), unmodulated and modulated U4O9, and a continuous range of U3O7–z phases with varying tetragonal distortion (c/a > 1) were observed. Ox...
International audienceCracking and spalling are known to occur during the oxidation of UO2. However,...
Oxalate precipitation is a powerful technique for actinide oxide preparation at either laboratory or...
The kinetic and crystalline evolutions of UO2 during its oxidation into U3O8 at 250 degrees C in air...
The nanostructure and phase evolution in low-temperature oxidized (40–250 °C), fine UO2 powders ( 1)...
Globally the most used nuclear fuel material is uranium(IV) oxide (UO2) and it is produced by powder...
The thermochemical behavior of low-temperature oxidation in fine UO<sub>2</sub> powders has been inv...
The thermochemical behavior of low-temperature oxidation in fine UO2 powders has been investigated b...
Highly crystalline UO2 nanoparticles (NPs) with sizes of 2–3 nm were produced by fast chemical depos...
International audienceThe oxidation of uranium dioxide has been studied for more than 50 years. It w...
International audienceThe physicochemical properties of uranium are being studied in many applicatio...
International audienceA R&D program is developed at the ALTO facility to provide new beams of exotic...
International audienceCracking and spalling are known to occur during the oxidation of UO2. However,...
Oxalate precipitation is a powerful technique for actinide oxide preparation at either laboratory or...
The kinetic and crystalline evolutions of UO2 during its oxidation into U3O8 at 250 degrees C in air...
The nanostructure and phase evolution in low-temperature oxidized (40–250 °C), fine UO2 powders ( 1)...
Globally the most used nuclear fuel material is uranium(IV) oxide (UO2) and it is produced by powder...
The thermochemical behavior of low-temperature oxidation in fine UO<sub>2</sub> powders has been inv...
The thermochemical behavior of low-temperature oxidation in fine UO2 powders has been investigated b...
Highly crystalline UO2 nanoparticles (NPs) with sizes of 2–3 nm were produced by fast chemical depos...
International audienceThe oxidation of uranium dioxide has been studied for more than 50 years. It w...
International audienceThe physicochemical properties of uranium are being studied in many applicatio...
International audienceA R&D program is developed at the ALTO facility to provide new beams of exotic...
International audienceCracking and spalling are known to occur during the oxidation of UO2. However,...
Oxalate precipitation is a powerful technique for actinide oxide preparation at either laboratory or...
The kinetic and crystalline evolutions of UO2 during its oxidation into U3O8 at 250 degrees C in air...