The motivation of this study is to elucidate how the condensation and desorption pressures in water sorption isotherms depend on the contact angle. This question is investigated for cylindrical pores of 2.8 nm diameter by means of molecular dynamics simulations in the grand canonical ensemble, in combination with the mW coarse-grained model for water. The contact angle is characterized for different sets of water–surface interactions. First, we show that desorption in open-ended pores with moderate or low water affinity, with contact angles greater or equal than 24°, is a nonactivated process in which pressure is accurately described by the Kelvin equation. Then, we explore the influence of hydrophobicity on the capillary condensation and o...
International audienceWe study the slow dynamics of water evaporation out of hydro-phobic cavities b...
Water adsorption in carbon micropores is of great practical interest because of its significant impa...
This paper presents a comprehensive computer simulation study of the microscopic mechanisms of adsor...
The motivation of this study is to elucidate how the condensation and desorption pressures in water ...
The liquid-vapor transition in cylindrical pores is studied as a function of pore size and hydrophil...
Molecular dynamics simulations of water in cylindrical hydrophilic pores with diameters of 1.5 and 3...
Molecular dynamics simulations of water in cylindrical hydrophilic pores with diameters of 1.5 and 3...
a b s t r a c t The sorption–desorption hysteresis observed in many nanoporous solids, at vapor pres...
International audienceMany nanoporous solids (e.g. activated carbons, zeolites, MOFs) can exhibit no...
The sorption–desorption hysteresis observed in many nanoporous solids, at vapor pressures low enough...
International audienceWe study the slow dynamics of water evaporation out of hydro-phobic cavities b...
The ability to predict multiphase fluid transport in nanoporous rocks such as shales is critical for...
The ability to predict multiphase fluid transport in nanoporous rocks such as shales is critical for...
Motivated by the puzzle of sorption hysteresis in Portland cement concrete or cement paste, we devel...
Abstract: Motivated by the puzzle of sorption hysteresis in Portland cement concrete or cement paste...
International audienceWe study the slow dynamics of water evaporation out of hydro-phobic cavities b...
Water adsorption in carbon micropores is of great practical interest because of its significant impa...
This paper presents a comprehensive computer simulation study of the microscopic mechanisms of adsor...
The motivation of this study is to elucidate how the condensation and desorption pressures in water ...
The liquid-vapor transition in cylindrical pores is studied as a function of pore size and hydrophil...
Molecular dynamics simulations of water in cylindrical hydrophilic pores with diameters of 1.5 and 3...
Molecular dynamics simulations of water in cylindrical hydrophilic pores with diameters of 1.5 and 3...
a b s t r a c t The sorption–desorption hysteresis observed in many nanoporous solids, at vapor pres...
International audienceMany nanoporous solids (e.g. activated carbons, zeolites, MOFs) can exhibit no...
The sorption–desorption hysteresis observed in many nanoporous solids, at vapor pressures low enough...
International audienceWe study the slow dynamics of water evaporation out of hydro-phobic cavities b...
The ability to predict multiphase fluid transport in nanoporous rocks such as shales is critical for...
The ability to predict multiphase fluid transport in nanoporous rocks such as shales is critical for...
Motivated by the puzzle of sorption hysteresis in Portland cement concrete or cement paste, we devel...
Abstract: Motivated by the puzzle of sorption hysteresis in Portland cement concrete or cement paste...
International audienceWe study the slow dynamics of water evaporation out of hydro-phobic cavities b...
Water adsorption in carbon micropores is of great practical interest because of its significant impa...
This paper presents a comprehensive computer simulation study of the microscopic mechanisms of adsor...