We have described for the first time the thermodynamic state of a highly confined single-phase and single-component fluid in a slit pore using Hill’s thermodynamics of small systems. Hill’s theory has been named nanothermodynamics. We started by constructing an ensemble of slit pores for controlled temperature, volume, surface area, and chemical potential. We have presented the integral and differential properties according to Hill, and used them to define the disjoining pressure on the new basis. We identified all thermodynamic pressures by their mechanical counterparts in a consistent manner, and have given evidence that the identification holds true using molecular simulations. We computed the entropy and energy densities, and found in a...
Nanothermodynamics extends standard thermodynamics to facilitate finite-size effects on the scale of...
We have explored the phase behavior of a set of water-like models in slit pores of nanoscopic dimens...
In a system containing nanoporous materials and liquids, the well-known thermo-capillary effect can ...
We describe the thermodynamic state of a single-phase fluid confined to a porous medium with Hill’s ...
We describe the thermodynamic state of a single-phase fluid confined to a porous medium with Hill’s ...
We describe the thermodynamic state of a single-phase fluid confined to a porous medium with Hill’s ...
It is known that thermodynamic properties of a system change upon confinement. To know how, is impor...
The thermodynamic and transport properties of fluids confined to porous media are in this thesis inv...
In this special issue article, we bring together our recent research on wetting in confinement, in p...
We define the pressure of a porous medium in terms of the grand potential, and compute its value in ...
We define the pressure of a porous medium in terms of the grand potential and compute its value in a...
In studying phase behavior of confined fluids, a lattice gas model 1 is widely used. It has been suc...
We derive an analytical expression of the second virial coefficient of d-dimensional hard sphere flu...
Nanoconfinement can drastically change the behavior of liquids, puzzling us with counterintuitive pr...
Confined fluids in nano-mineral pores show notably different thermodynamic behavior compared with th...
Nanothermodynamics extends standard thermodynamics to facilitate finite-size effects on the scale of...
We have explored the phase behavior of a set of water-like models in slit pores of nanoscopic dimens...
In a system containing nanoporous materials and liquids, the well-known thermo-capillary effect can ...
We describe the thermodynamic state of a single-phase fluid confined to a porous medium with Hill’s ...
We describe the thermodynamic state of a single-phase fluid confined to a porous medium with Hill’s ...
We describe the thermodynamic state of a single-phase fluid confined to a porous medium with Hill’s ...
It is known that thermodynamic properties of a system change upon confinement. To know how, is impor...
The thermodynamic and transport properties of fluids confined to porous media are in this thesis inv...
In this special issue article, we bring together our recent research on wetting in confinement, in p...
We define the pressure of a porous medium in terms of the grand potential, and compute its value in ...
We define the pressure of a porous medium in terms of the grand potential and compute its value in a...
In studying phase behavior of confined fluids, a lattice gas model 1 is widely used. It has been suc...
We derive an analytical expression of the second virial coefficient of d-dimensional hard sphere flu...
Nanoconfinement can drastically change the behavior of liquids, puzzling us with counterintuitive pr...
Confined fluids in nano-mineral pores show notably different thermodynamic behavior compared with th...
Nanothermodynamics extends standard thermodynamics to facilitate finite-size effects on the scale of...
We have explored the phase behavior of a set of water-like models in slit pores of nanoscopic dimens...
In a system containing nanoporous materials and liquids, the well-known thermo-capillary effect can ...