International audienceThe self-assembly of uranyl-peroxide nanocapsules in aqueous solution is unique in uranium chemistry and has potential applications in the fabrication and reprocessing of actinide-based materials. We present the first study of these species in aqueous solution by means of classical molecular dynamics simulations. To this end, we parametrized a uranyl-peroxide force field from interaction energies computed with second order Møller–Plesset perturbation theory and fit to a Born–Huggins–Mayer potential. Bonded parameters were fit from density functional theory calculations. The solvent and counterion structures surrounding four different systems ([(UVIO2)]2+, [(UVIO2)2(μ2-O2)]2+, [(UVIO2)5(μ2-O2)5], and [(UVIO2)20(μ2-O2)30...
The coordination environment of uranyl in water has been studied using a combined quantum mechanical...
The inclusion of NH4+ as counterions in Car-Parrinello molecular dynamics (CPMD) simulations of anio...
International audienceA new polarizable force field for describing the solvation of the uranyl (UO22...
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 self-assembly of uranyl-peroxide nanocapsules in aqueous solution is unique in uranium chemistry...
The self-assembly of uranyl-peroxide nanocapsules in aqueous solution is unique in uranium chemistry...
The self-assembly of uranyl-peroxide nanocapsules in aqueous solution is unique in uranium chemistry...
A wide range of uranyl-peroxide nanocapsules have been synthesized using very simp...
Uranyl-peroxide nanocapsules are a unique family of self-assembled actinide species. Uranyl ions rap...
Static ab initio and density-functional computations, as well as Car–Parrinello molecular dynamics s...
N.S. thanks the UJF and the CNRS for financial support and the CECIC (project: liqsim) for computer ...
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...
The inclusion of NH4+ as counterions in Car-Parrinello molecular dynamics (CPMD) simulations of anio...
International audienceA new polarizable force field for describing the solvation of the uranyl (UO22...
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 self-assembly of uranyl-peroxide nanocapsules in aqueous solution is unique in uranium chemistry...
The self-assembly of uranyl-peroxide nanocapsules in aqueous solution is unique in uranium chemistry...
The self-assembly of uranyl-peroxide nanocapsules in aqueous solution is unique in uranium chemistry...
A wide range of uranyl-peroxide nanocapsules have been synthesized using very simp...
Uranyl-peroxide nanocapsules are a unique family of self-assembled actinide species. Uranyl ions rap...
Static ab initio and density-functional computations, as well as Car–Parrinello molecular dynamics s...
N.S. thanks the UJF and the CNRS for financial support and the CECIC (project: liqsim) for computer ...
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...
The inclusion of NH4+ as counterions in Car-Parrinello molecular dynamics (CPMD) simulations of anio...
International audienceA new polarizable force field for describing the solvation of the uranyl (UO22...