The classical model of capillary equilibrium in cylindrical pores is modified here by the introduction of molecular concepts and the solid fluid interaction potential. The new approach accurately predicts capillary coexistence and criticality, with results quantitatively matching those from density functional theory for nitrogen adsorption, while also predicting condensation pressures in agreement with reported experimental findings for MCM-41. The larger critical pore size for nitrogen adsorption in these materials, however, suggests a modification of the potential function parameters, evaluated here from data for hydroxylated silica
MCM-41 periodic mesoporous silicates with a high degree of structural ordering are synthesized and u...
The chemical potential of adsorbed film inside cylindrical mesopores is dependent on the attractive ...
The chemical potential of adsorbed film inside cylindrical mesopores is dependent on the attractive ...
The classical model of capillary equilibrium in cylindrical pores is modified here by the introducti...
The classical model of surface layering followed by capillary condensation during adsorption in meso...
The classical model of surface layering followed by capillary condensation during adsorption in meso...
This paper presents a thermodynamic analysis of capillary condensation phenomena in cylindrical pore...
In a previous work, we proposed an improvement of the Derjaguin-Broekhoff-de Boer (DBdB) theory for...
In this work, we propose an improvement of the classical Derjaguin-Broekhoff-de Boer (DBdB) theory f...
The nature of adsorption of simple fluids confined in model pores is investigated by means of a dens...
In a previous work, we proposed an improvement of the Derjaguin-Broekhoff- de Boer (DBdB) theory for...
In this work, we propose an improvement of the classical Derjaguin−Broekhoff−de Boer (DBdB) theory f...
International audienceA simple phenomenological model that describes capillary condensation and evap...
Capillary hysteresis in cylindrical nanopores has been studied using MCM-41 as the prime example of ...
We present results of application of the density functional theory (DFT) to adsorption and desorptio...
MCM-41 periodic mesoporous silicates with a high degree of structural ordering are synthesized and u...
The chemical potential of adsorbed film inside cylindrical mesopores is dependent on the attractive ...
The chemical potential of adsorbed film inside cylindrical mesopores is dependent on the attractive ...
The classical model of capillary equilibrium in cylindrical pores is modified here by the introducti...
The classical model of surface layering followed by capillary condensation during adsorption in meso...
The classical model of surface layering followed by capillary condensation during adsorption in meso...
This paper presents a thermodynamic analysis of capillary condensation phenomena in cylindrical pore...
In a previous work, we proposed an improvement of the Derjaguin-Broekhoff-de Boer (DBdB) theory for...
In this work, we propose an improvement of the classical Derjaguin-Broekhoff-de Boer (DBdB) theory f...
The nature of adsorption of simple fluids confined in model pores is investigated by means of a dens...
In a previous work, we proposed an improvement of the Derjaguin-Broekhoff- de Boer (DBdB) theory for...
In this work, we propose an improvement of the classical Derjaguin−Broekhoff−de Boer (DBdB) theory f...
International audienceA simple phenomenological model that describes capillary condensation and evap...
Capillary hysteresis in cylindrical nanopores has been studied using MCM-41 as the prime example of ...
We present results of application of the density functional theory (DFT) to adsorption and desorptio...
MCM-41 periodic mesoporous silicates with a high degree of structural ordering are synthesized and u...
The chemical potential of adsorbed film inside cylindrical mesopores is dependent on the attractive ...
The chemical potential of adsorbed film inside cylindrical mesopores is dependent on the attractive ...