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Article Dans Une Revue Adsorption - Journal of the International Adsorption Society Année : 2008

Molecular simulation of adsorption and intrusion in nanopores

Résumé

This paper reports Monte Carlo simulations of the adsorption (wetting fluid) or intrusion (non-wetting fluid) in cylindrical silica nanopores. All the pores are opened at both ends towards an external bulk reservoir, so that they mimic real materials for which the confined fluid is always in contact with the external phase. This realistic model allows us to discuss the nature of the filling and emptying mechanisms that are observed in the experiments. The adsorption corresponds to the metastable nucleation of the liquid phase, starting from a partially filled pore (a molecular thick film adsorbed at the pore surface). On the other hand, the desorption occurs through the displacement at equilibrium of a gas/liquid hemispherical interface (concave meniscus) along the pore axis. The intrusion of the non-wetting fluid proceeds through the invasion in the pore of the liquid/gas interface (convex meniscus), while the extrusion consists of the nucleation of the gas phase within the pore. In the case of adsorption, our simulation data are used to discuss the validity of the modified Kelvin equation (which is corrected both for the film adsorbed at the pore surface and for the curvature effect on the gas/liquid surface tension).

Dates et versions

hal-00277306 , version 1 (06-05-2008)

Identifiants

Citer

Benoit Coasne, Anne Galarneau, Francesco Di Renzo, Roland J. M. Pellenq. Molecular simulation of adsorption and intrusion in nanopores. Adsorption - Journal of the International Adsorption Society, 2008, 14, pp.215-221. ⟨10.1007/s10450-008-9104-2⟩. ⟨hal-00277306⟩
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