The β decay of 241Pu to 241Am results in a significant ingrowth of Am during the interim storage of PuO2. Consequently, the safe storage of the large stockpiles of separated Pu requires an understanding of how this ingrowth affects the chemistry of PuO2. This work combines density functional theory (DFT) defect energies and empirical potential calculations of vibrational entropies to create a point defect model to predict how the defect chemistry of PuO2 evolves due to the incorporation of Am. The model predicts that Am occupies Pu sites in (Pu,Am)O2±x in either the +III or +IV oxidation state. High temperatures, low oxygen-to-metal (O/M) ratios, or low Am concentrations favor Am in the +III oxidation state. Am (+III) exists in (Pu,Am)O2±x ...
International audienceOne way of increasing significantly the efficiency in designing and qualifying...
Fundamental understanding of the behaviour of nuclear fuel has been of great importance. Enhancing t...
International audienceThermally or radiation induced transport properties impact practically all eng...
The management of large stockpiles of Pu, separated from spent nuclear fuel or nuclear weapons progr...
The chemical corrosion aging of plutonium is a very important topic. It is easy to be corroded and p...
Control of the defect chemistry in UO2±x is important for manipulating nuclear fuel properties and f...
The high alpha-activity of plutonium dioxide (PuO ) results in significant ingrowth of radiogenic he...
International audienceNonstoichiometric uranium dioxide experiences a shrinkage of its lattice const...
The physical properties of uranium dioxide vary greatly with stoichiometry. Oxidation towards hypers...
Plutonium is considered to provide more than one third of the reactor’s energy output. Pu-239 is mos...
International audienceWe combine density functional theory (DFT) formation energies and empirical po...
Uranium, a common element that can be found across the world, can be used in nuclear reactors as UO2...
At the atomic scale, uranium-plutonium mixed oxides (U,Pu)O_2 are characterized by cationic chemical...
The electronic and geometric structures of bulk PuO2 and its (110) surface have been studied using ...
International audienceOne way of increasing significantly the efficiency in designing and qualifying...
Fundamental understanding of the behaviour of nuclear fuel has been of great importance. Enhancing t...
International audienceThermally or radiation induced transport properties impact practically all eng...
The management of large stockpiles of Pu, separated from spent nuclear fuel or nuclear weapons progr...
The chemical corrosion aging of plutonium is a very important topic. It is easy to be corroded and p...
Control of the defect chemistry in UO2±x is important for manipulating nuclear fuel properties and f...
The high alpha-activity of plutonium dioxide (PuO ) results in significant ingrowth of radiogenic he...
International audienceNonstoichiometric uranium dioxide experiences a shrinkage of its lattice const...
The physical properties of uranium dioxide vary greatly with stoichiometry. Oxidation towards hypers...
Plutonium is considered to provide more than one third of the reactor’s energy output. Pu-239 is mos...
International audienceWe combine density functional theory (DFT) formation energies and empirical po...
Uranium, a common element that can be found across the world, can be used in nuclear reactors as UO2...
At the atomic scale, uranium-plutonium mixed oxides (U,Pu)O_2 are characterized by cationic chemical...
The electronic and geometric structures of bulk PuO2 and its (110) surface have been studied using ...
International audienceOne way of increasing significantly the efficiency in designing and qualifying...
Fundamental understanding of the behaviour of nuclear fuel has been of great importance. Enhancing t...
International audienceThermally or radiation induced transport properties impact practically all eng...