We present a theoretical/computational framework for accurate calculation of hydration free energies of ionized molecular species. The method is based on a molecular theory, 3D-RISM, combined with a recently developed pressure correction (PC+). The 3D-RISM/PC+ model can provide ∼3 kcal/mol hydration free energy accuracy for a large variety of ionic compounds, provided that the Galvani potential of water is taken into account. The results are compared with direct atomistic simulations. Several methodological aspects of hydration free energy calculations for charged species are discussed
International audienceIon hydration phenomena are of great interest in the fields of physics, chemis...
International audienceIon hydration phenomena are of great interest in the fields of physics, chemis...
International audienceIon hydration phenomena are of great interest in the fields of physics, chemis...
We present a theoretical/computational framework for accurate calculation of hydration free energies...
We present a theoretical/computational framework for accurate calculation of hydration free energies...
We present a theoretical/computational framework for accurate calculation of hydration free energies...
We present a theoretical/computational framework for accurate calculation of hydration free energies...
We present a theoretical/computational framework for accurate calculation of hydration free energies...
We present an efficient method with adjustable parameters for calculating the hydration free energy ...
Computational free-energy correction strategies and the choice of experimental proton hydration free...
Abstract: Absolute free energies of hydration (¢Ghyd) for more than 500 neutral and charged compound...
We have performed Monte Carlo simulations of the tetramethylammonium ion, hydrated by 256 simple poi...
The thermodynamic integration technique to evaluate free energy differences by molecular dynamics si...
We present a new model for computing hydration free energies by 3D reference interaction site model ...
We report on the results of testing the reference interaction site model (RISM) for the estimation o...
International audienceIon hydration phenomena are of great interest in the fields of physics, chemis...
International audienceIon hydration phenomena are of great interest in the fields of physics, chemis...
International audienceIon hydration phenomena are of great interest in the fields of physics, chemis...
We present a theoretical/computational framework for accurate calculation of hydration free energies...
We present a theoretical/computational framework for accurate calculation of hydration free energies...
We present a theoretical/computational framework for accurate calculation of hydration free energies...
We present a theoretical/computational framework for accurate calculation of hydration free energies...
We present a theoretical/computational framework for accurate calculation of hydration free energies...
We present an efficient method with adjustable parameters for calculating the hydration free energy ...
Computational free-energy correction strategies and the choice of experimental proton hydration free...
Abstract: Absolute free energies of hydration (¢Ghyd) for more than 500 neutral and charged compound...
We have performed Monte Carlo simulations of the tetramethylammonium ion, hydrated by 256 simple poi...
The thermodynamic integration technique to evaluate free energy differences by molecular dynamics si...
We present a new model for computing hydration free energies by 3D reference interaction site model ...
We report on the results of testing the reference interaction site model (RISM) for the estimation o...
International audienceIon hydration phenomena are of great interest in the fields of physics, chemis...
International audienceIon hydration phenomena are of great interest in the fields of physics, chemis...
International audienceIon hydration phenomena are of great interest in the fields of physics, chemis...