Excess volumes and excess compressibilities for hard spheres in water were computed by pressure derivatives of the excess chemical potential, which is equivalent to the work of cavity formation. This is relevant to the application of continuum solvation methods at various pressures. The excess chemical potential was modeled within phenomenological expressions for curved surfaces plus a pressure-volume term, for which two approaches were adopted, differing for the radius of the spherical volume. This implies a different dependence on pressure of parameters. In all cases, in the surface term, for the pressure derivative of parameters of the curvature function, use was made of the previously proposed expressions for the first two moments obtai...
A comprehensive, semi-quantitative model for the thermodynamics of hydrophobic solvation is presente...
The motivation of this study is to elucidate how the condensation and desorption pressures in water ...
Understanding hydrophobic interactions requires a molecular-level picture of how water molecules adj...
NPT simulation results on excess volumes computed by the direct method are presented for spherical c...
This work deals with the formation of a spherical cavity in water along the isotherm at 298 K. A str...
For hard spheres with a radius up to 10 A in TIP4P water under ambient conditions, the author studie...
Thermodynamic quantities related to the solvation of hydrophobic solutes in water can be approximate...
The process of inserting cavities in water is studied with the aim of a better description of some o...
A theoretical approach is developed to quantify hydrophobic hydration and interactions on a molecula...
Simulations of water near extended hydrophobic spherical solutes have revealed the presence of a reg...
textTemperature, pressure, and length scale dependence of the solvation of simple solvophobic solute...
Understanding water and aqueous solutions of biomolecules at high hydrostatic pressure is important ...
The free energy of the hydrophobic hydration and the strength of the solvent-mediated attraction bet...
International audienceMicroscopic volume fluctuations in liquids are a reflection of their structure...
The excess chemical potential $\mu^\mathrm{ex}(\sigma,\eta)$ of a test hard spherical particle of di...
A comprehensive, semi-quantitative model for the thermodynamics of hydrophobic solvation is presente...
The motivation of this study is to elucidate how the condensation and desorption pressures in water ...
Understanding hydrophobic interactions requires a molecular-level picture of how water molecules adj...
NPT simulation results on excess volumes computed by the direct method are presented for spherical c...
This work deals with the formation of a spherical cavity in water along the isotherm at 298 K. A str...
For hard spheres with a radius up to 10 A in TIP4P water under ambient conditions, the author studie...
Thermodynamic quantities related to the solvation of hydrophobic solutes in water can be approximate...
The process of inserting cavities in water is studied with the aim of a better description of some o...
A theoretical approach is developed to quantify hydrophobic hydration and interactions on a molecula...
Simulations of water near extended hydrophobic spherical solutes have revealed the presence of a reg...
textTemperature, pressure, and length scale dependence of the solvation of simple solvophobic solute...
Understanding water and aqueous solutions of biomolecules at high hydrostatic pressure is important ...
The free energy of the hydrophobic hydration and the strength of the solvent-mediated attraction bet...
International audienceMicroscopic volume fluctuations in liquids are a reflection of their structure...
The excess chemical potential $\mu^\mathrm{ex}(\sigma,\eta)$ of a test hard spherical particle of di...
A comprehensive, semi-quantitative model for the thermodynamics of hydrophobic solvation is presente...
The motivation of this study is to elucidate how the condensation and desorption pressures in water ...
Understanding hydrophobic interactions requires a molecular-level picture of how water molecules adj...