International audienceThe hydration structure of two actinoid ions of different charge, Cm(III) and Th(IV), was investigated. Density Functional Theory, DFT-based molecular dynamics and the single sweep method were used to obtain free energy landscapes of ion–water coordination. Free energy curves as a function of the ion–water coordination number were obtained for both ions. The number of water molecules in the first coordination shell of Cm(III) varies between 8 and 10. For Th(IV), on the other hand, the 9-fold structure is stable and only the 10-fold structure seems to be accessible with a small but non-negligible free energy barrier. Finally, by combining molecular dynamics simulations with electronic structure calculations, we showed t...
International audienceTopicsAbstractIn this work, we have developed a polarizable classical interact...
International audienceTopicsAbstractIn this work, we have developed a polarizable classical interact...
International audienceTopicsAbstractIn this work, we have developed a polarizable classical interact...
International audienceThe hydration structure of two actinoid ions of different charge, Cm(III) and ...
International audienceThe hydration structure of two actinoid ions of different charge, Cm(III) and ...
International audienceThe hydration structure of two actinoid ions of different charge, Cm(III) and ...
The hydration of Th(IV) in ThCl4 and ThBr4 water solutions at different salt concentrations was stud...
The hydration of Th(IV) in ThCl4 and ThBr4 water solutions at different salt concentrations was stud...
International audienceThe hydration of Th(IV) in ThCl4 and ThBr4 water solutions at different salt c...
International audienceThe hydration of Th(IV) in ThCl4 and ThBr4 water solutions at different salt c...
International audienceThe hydration of Th(IV) in ThCl4 and ThBr4 water solutions at different salt c...
International audienceThe hydration of Th(IV) in ThCl4 and ThBr4 water solutions at different salt c...
International audienceThe hydration of Th(IV) in ThCl4 and ThBr4 water solutions at different salt c...
*S Supporting Information ABSTRACT: The hydration of Th(IV) in ThCl4 and ThBr4 water solutions at di...
International audienceTopicsAbstractIn this work, we have developed a polarizable classical interact...
International audienceTopicsAbstractIn this work, we have developed a polarizable classical interact...
International audienceTopicsAbstractIn this work, we have developed a polarizable classical interact...
International audienceTopicsAbstractIn this work, we have developed a polarizable classical interact...
International audienceThe hydration structure of two actinoid ions of different charge, Cm(III) and ...
International audienceThe hydration structure of two actinoid ions of different charge, Cm(III) and ...
International audienceThe hydration structure of two actinoid ions of different charge, Cm(III) and ...
The hydration of Th(IV) in ThCl4 and ThBr4 water solutions at different salt concentrations was stud...
The hydration of Th(IV) in ThCl4 and ThBr4 water solutions at different salt concentrations was stud...
International audienceThe hydration of Th(IV) in ThCl4 and ThBr4 water solutions at different salt c...
International audienceThe hydration of Th(IV) in ThCl4 and ThBr4 water solutions at different salt c...
International audienceThe hydration of Th(IV) in ThCl4 and ThBr4 water solutions at different salt c...
International audienceThe hydration of Th(IV) in ThCl4 and ThBr4 water solutions at different salt c...
International audienceThe hydration of Th(IV) in ThCl4 and ThBr4 water solutions at different salt c...
*S Supporting Information ABSTRACT: The hydration of Th(IV) in ThCl4 and ThBr4 water solutions at di...
International audienceTopicsAbstractIn this work, we have developed a polarizable classical interact...
International audienceTopicsAbstractIn this work, we have developed a polarizable classical interact...
International audienceTopicsAbstractIn this work, we have developed a polarizable classical interact...
International audienceTopicsAbstractIn this work, we have developed a polarizable classical interact...