This work proposes a new methodology to build interaction potentials between a highly charged metal cation and water molecules. These potentials, which can be used in classical computer simu- lations, have been fitted to reproduce quantum mechanical interaction energies (MP2 and BP86) for a wide range of [M(H2O)n]m+(H2O)l clusters (n going from 6 to 10 and l from 0 to 18). A flexible and polarizable water shell model (Mobile Charge Density of Harmonic Oscillator) has been coupled to the cation-water potential. The simultaneous consideration of poly-hydrated clusters and the polarizability of the interacting particles allows the inclusion of the most important many-body effects in the new polarizable potential. Applications have been centere...
Hydration of anions, particularly halide ions, presents a particularly challenging problem where due...
In this work we present a new proposal to model intermolecular interactions and use it for water mol...
We present a model potential for studying Mq+(H2O)n=1,9 clusters where M stands for either Na+, Cs+,...
A strategy to build interaction potentials for describing ionic hydration of highly charged monoatom...
The development of first-principles halide-water interaction potentials for fluoride and iodide anio...
This work presents the development of first-principles bromide ion–water interaction potentials usin...
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...
Classical Molecular Dynamics (MD) simulations have been performed to describe structural and dynamic...
Water is ubiquitous in nature. The arrangement and behavior of water molecules aroundsolutes, rangin...
Ion–water interactions play a central role in determining the properties of aqueous systems in a wid...
Water is ubiquitous in nature. The arrangement and behavior of water molecules aroundsolutes, rangin...
Hydration of anions, particularly halide ions, presents a particularly challenging problem where due...
Hydration of anions, particularly halide ions, presents a particularly challenging problem where due...
In this work we present a new proposal to model intermolecular interactions and use it for water mol...
We present a model potential for studying Mq+(H2O)n=1,9 clusters where M stands for either Na+, Cs+,...
A strategy to build interaction potentials for describing ionic hydration of highly charged monoatom...
The development of first-principles halide-water interaction potentials for fluoride and iodide anio...
This work presents the development of first-principles bromide ion–water interaction potentials usin...
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...
Classical Molecular Dynamics (MD) simulations have been performed to describe structural and dynamic...
Water is ubiquitous in nature. The arrangement and behavior of water molecules aroundsolutes, rangin...
Ion–water interactions play a central role in determining the properties of aqueous systems in a wid...
Water is ubiquitous in nature. The arrangement and behavior of water molecules aroundsolutes, rangin...
Hydration of anions, particularly halide ions, presents a particularly challenging problem where due...
Hydration of anions, particularly halide ions, presents a particularly challenging problem where due...
In this work we present a new proposal to model intermolecular interactions and use it for water mol...
We present a model potential for studying Mq+(H2O)n=1,9 clusters where M stands for either Na+, Cs+,...