By performing density functional theory (DFT) +U calculations, we systematically study the electronic, mechanical, tensile, and thermodynamic properties of AmO2. It is found that the chemical bonding character in AmO2 is similar to that in PuO2, with smaller charge transfer and stronger covalent interactions. between americium and oxygen atoms. The stress-strain relationship of AmO2 is examined along the three low-index directions, showing that the [1 0 0] and [1 1 1] directions are the strongest and weakest tensile directions, respectively, but the theoretical tensile strengths of AmO2 are smaller than those of PuO2. The phonon dispersion curves of AmO2 are calculated and the heat capacities as well as lattice expansion curve are subsequen...
X-ray Diffraction and X-ray Absorption Spectroscopy have shown that a material composed of two (Pu,A...
International audienceUranium–americium oxides U$_{1−y}$Am$_y$O$_{2±x}$ are currently investigated a...
We present a study of the structural, phase transition, electronic, elastic and thermodynamic proper...
International audienceWe report an investigation of the ground state properties of americium dioxide...
International audienceWe report an investigation of the ground-state properties of americium dioxide...
The electronic structure and the chemical state in Am binary oxides and Am-doped UO2 were studied by...
The electronic, structural, mechanical, lattice dynamics and the electronic transport properties of ...
International audienceAmericium is a chemical element produced by neutron capture in nuclear reactor...
International audienceIn this paper, we determine for the fjrst time the electronic, structural and ...
We have systematically studied the electronic and mechanical properties of the ordered binary PuxU1-...
The actinide oxides play a vital role in the nuclear fuel cycle. For systems where current experimen...
The β decay of 241Pu to 241Am results in a significant ingrowth of Am during the interim storage of ...
International audiencePartitioning and transmutation of Minor Actinides (MA) are currently studied t...
First-principle investigations are presented based on density functional approach to calculate the e...
Actinide materials are systems rich in interesting physics, while playing an important role in envir...
X-ray Diffraction and X-ray Absorption Spectroscopy have shown that a material composed of two (Pu,A...
International audienceUranium–americium oxides U$_{1−y}$Am$_y$O$_{2±x}$ are currently investigated a...
We present a study of the structural, phase transition, electronic, elastic and thermodynamic proper...
International audienceWe report an investigation of the ground state properties of americium dioxide...
International audienceWe report an investigation of the ground-state properties of americium dioxide...
The electronic structure and the chemical state in Am binary oxides and Am-doped UO2 were studied by...
The electronic, structural, mechanical, lattice dynamics and the electronic transport properties of ...
International audienceAmericium is a chemical element produced by neutron capture in nuclear reactor...
International audienceIn this paper, we determine for the fjrst time the electronic, structural and ...
We have systematically studied the electronic and mechanical properties of the ordered binary PuxU1-...
The actinide oxides play a vital role in the nuclear fuel cycle. For systems where current experimen...
The β decay of 241Pu to 241Am results in a significant ingrowth of Am during the interim storage of ...
International audiencePartitioning and transmutation of Minor Actinides (MA) are currently studied t...
First-principle investigations are presented based on density functional approach to calculate the e...
Actinide materials are systems rich in interesting physics, while playing an important role in envir...
X-ray Diffraction and X-ray Absorption Spectroscopy have shown that a material composed of two (Pu,A...
International audienceUranium–americium oxides U$_{1−y}$Am$_y$O$_{2±x}$ are currently investigated a...
We present a study of the structural, phase transition, electronic, elastic and thermodynamic proper...