International audienceA new polarizable force field for describing the solvation of the uranyl (UO22+) cation in solvent extraction phases has been developed for molecular dynamics simulations. The validity of the polarizable force field has been established by comparison with EXAFS and SWAXS experiments. This new force field allows for describing both the UO22+ hydration and solvation properties in good agreement with the experiments. In aqueous phases we demonstrated that the UO22+ force field has been improved from the previous one we developed. Indeed, the UO22+ structural and dynamics properties, i.e., the dynamics of the water molecules in the vicinity of the uranyl cation, calculated from molecular dynamics are in better agreement wi...
International audienceThe self-assembly of uranyl-peroxide nanocapsules in aqueous solution is uniqu...
International audienceThe self-assembly of uranyl-peroxide nanocapsules in aqueous solution is uniqu...
The structural and dynamical characteristics of uranyl ions in an aqueous acidic environment are of ...
International audienceA new polarizable force field for describing the solvation of the uranyl (UO$_...
International audienceA new polarizable force field for describing the solvation of the uranyl (UO$_...
International audienceA new polarizable force field for describing the solvation of the uranyl (UO$_...
Advances in computational algorithms and methodologies make it possible to use highly accurate quant...
First-principles and purely classical molecular dynamics (MD) simulations for complexes of the urany...
Advances in computational algorithms and methodologies make it possible to use highly accurate quant...
The coordination environment of uranyl in water has been studied using a combined quantum mechanical...
The coordination environment of uranyl in water has been studied using a combined quantum mechanical...
International audienceThe self-assembly of uranyl-peroxide nanocapsules in aqueous solution is uniqu...
We report a molecular dynamics study of biphasic systems involved in the liquid–liquid extraction of...
International audienceThe self-assembly of uranyl-peroxide nanocapsules in aqueous solution is uniqu...
International audienceThe self-assembly of uranyl-peroxide nanocapsules in aqueous solution is uniqu...
International audienceThe self-assembly of uranyl-peroxide nanocapsules in aqueous solution is uniqu...
International audienceThe self-assembly of uranyl-peroxide nanocapsules in aqueous solution is uniqu...
The structural and dynamical characteristics of uranyl ions in an aqueous acidic environment are of ...
International audienceA new polarizable force field for describing the solvation of the uranyl (UO$_...
International audienceA new polarizable force field for describing the solvation of the uranyl (UO$_...
International audienceA new polarizable force field for describing the solvation of the uranyl (UO$_...
Advances in computational algorithms and methodologies make it possible to use highly accurate quant...
First-principles and purely classical molecular dynamics (MD) simulations for complexes of the urany...
Advances in computational algorithms and methodologies make it possible to use highly accurate quant...
The coordination environment of uranyl in water has been studied using a combined quantum mechanical...
The coordination environment of uranyl in water has been studied using a combined quantum mechanical...
International audienceThe self-assembly of uranyl-peroxide nanocapsules in aqueous solution is uniqu...
We report a molecular dynamics study of biphasic systems involved in the liquid–liquid extraction of...
International audienceThe self-assembly of uranyl-peroxide nanocapsules in aqueous solution is uniqu...
International audienceThe self-assembly of uranyl-peroxide nanocapsules in aqueous solution is uniqu...
International audienceThe self-assembly of uranyl-peroxide nanocapsules in aqueous solution is uniqu...
International audienceThe self-assembly of uranyl-peroxide nanocapsules in aqueous solution is uniqu...
The structural and dynamical characteristics of uranyl ions in an aqueous acidic environment are of ...