Highly crystalline UO2 nanoparticles (NPs) with sizes of 2–3 nm were produced by fast chemical deposition of uranium(IV) under reducing conditions at pH 8–11. The particles were then characterized by microscopy and spectroscopy techniques including high-resolution transmission electron microscopy (HRTEM), X-ray diffraction (XRD), high-energy resolution fluorescence detection (HERFD) X-ray absorption spectroscopy at the U M4 edge and extended X-ray absorption fine structure (EXAFS) spectroscopy at the U L3 edge. The results of this investigation show that despite U(IV) being the dominant oxidation state of the freshly prepared UO2 NPs, they oxidize to U4O9 with time and under the X-ray beam, indicating the high reactivity of U(IV) under thes...
[[abstract]]Uranium oxides have attracted much attention not only in the context of nuclear energy g...
Uranium oxides have attracted much attention not only in the context of nuclear energy generation bu...
Globally the most used nuclear fuel material is uranium(IV) oxide (UO2) and it is produced by powder...
International audiencePlutonium oxide nanoparticles constitute a hot topic in modern actinide scienc...
International audienceActinide research at the nanoscale is gaining fundamental interest due to envi...
The undeniable importance of nanoparticles has led to vast efforts, in many fields of science, to u...
The nanostructure and phase evolution in low-temperature oxidized (40–250 °C), fine UO2 powders (<20...
We report the structural properties of ultra-small ThO2 and UO2 nanoparticles (NPs), which were synt...
International audienceNanomaterials have attracted considerable interest in recent interdisciplinary...
Bioremediation has been proposed and extensively researched as an in situ immobilization strategy f...
The aim of this study is to synthesize PuO2 nanoparticles (NPs) at low pH values and characterize th...
Biological reduction of uranium(VI) in contaminated groundwater can provide in situ immobilization o...
Nanostructured actinide materials have gained the attention of the nuclear community after the disco...
We report here the first synthesis of mixed oxide U1-xPuxO2(þy) nanoparticles. The obtained nanopowd...
The chemical stability of biogenic U(IV) oxide, a product of environmental bioremediation, is a sem...
[[abstract]]Uranium oxides have attracted much attention not only in the context of nuclear energy g...
Uranium oxides have attracted much attention not only in the context of nuclear energy generation bu...
Globally the most used nuclear fuel material is uranium(IV) oxide (UO2) and it is produced by powder...
International audiencePlutonium oxide nanoparticles constitute a hot topic in modern actinide scienc...
International audienceActinide research at the nanoscale is gaining fundamental interest due to envi...
The undeniable importance of nanoparticles has led to vast efforts, in many fields of science, to u...
The nanostructure and phase evolution in low-temperature oxidized (40–250 °C), fine UO2 powders (<20...
We report the structural properties of ultra-small ThO2 and UO2 nanoparticles (NPs), which were synt...
International audienceNanomaterials have attracted considerable interest in recent interdisciplinary...
Bioremediation has been proposed and extensively researched as an in situ immobilization strategy f...
The aim of this study is to synthesize PuO2 nanoparticles (NPs) at low pH values and characterize th...
Biological reduction of uranium(VI) in contaminated groundwater can provide in situ immobilization o...
Nanostructured actinide materials have gained the attention of the nuclear community after the disco...
We report here the first synthesis of mixed oxide U1-xPuxO2(þy) nanoparticles. The obtained nanopowd...
The chemical stability of biogenic U(IV) oxide, a product of environmental bioremediation, is a sem...
[[abstract]]Uranium oxides have attracted much attention not only in the context of nuclear energy g...
Uranium oxides have attracted much attention not only in the context of nuclear energy generation bu...
Globally the most used nuclear fuel material is uranium(IV) oxide (UO2) and it is produced by powder...