We present molecular dynamics simulations in the micro-canonical ensemble of a Lennard-Jones model of nitrogen confined in realistic models for saccharose-based carbons developed in our previous work. We calculate the velocity autocorrelation function and mean-squared displacement, and the self-diffusivities from the latter. We observe that the self-diffusivity increases with temperature and exhibits a maximum with loading or adsorbate density. To the best of our knowledge, a maximum in self-diffusivities has not been observed in molecular dynamics simulations of fluids confined in slit pores
A hybrid molecular dynamics simulation/pore network model (MD/PNM) approach is developed for predict...
We present here a tractable theory of transport of simple fluids in cylindrical nanopores, which is ...
International audienceIn this paper, the density, hydrogen bonding and self-diffusivity of water con...
The unusual dynamics of water under confinement is important to a number of conventional and emergin...
Gas diffusion in nanoporous carbon includes distinct diffusion modes: surface diffusion on the pore ...
The boundary-driven molecular modeling strategy to evaluate mass transport coefficients of fluids in...
We examine the transport of methane in microporous carbon by performing equilibrium and nonequilibri...
The influence of loading on the self-diffusion in an isolated single walled carbon nanotube is studi...
The unusual dynamics of water under confinement is important to a number of conventional and emergin...
With the discovery of carbon nanotubes, we have a realistic cylindrical nanopore that can potentiall...
The recent frictional model of the transport of fluid mixtures in nanopores developed in this labora...
“Liquids confined in nanoscopic geometries are presently of great interest but not well understood. ...
We study the self-diffusion of simple gases inside single-walled carbon nanotubes at the zero-loadin...
International audienceLarge-scale molecular dynamics simulations are used to investigate the structu...
The mobility of fluids adsorbed in nanoporous materials with one-dimensional porous networks can be ...
A hybrid molecular dynamics simulation/pore network model (MD/PNM) approach is developed for predict...
We present here a tractable theory of transport of simple fluids in cylindrical nanopores, which is ...
International audienceIn this paper, the density, hydrogen bonding and self-diffusivity of water con...
The unusual dynamics of water under confinement is important to a number of conventional and emergin...
Gas diffusion in nanoporous carbon includes distinct diffusion modes: surface diffusion on the pore ...
The boundary-driven molecular modeling strategy to evaluate mass transport coefficients of fluids in...
We examine the transport of methane in microporous carbon by performing equilibrium and nonequilibri...
The influence of loading on the self-diffusion in an isolated single walled carbon nanotube is studi...
The unusual dynamics of water under confinement is important to a number of conventional and emergin...
With the discovery of carbon nanotubes, we have a realistic cylindrical nanopore that can potentiall...
The recent frictional model of the transport of fluid mixtures in nanopores developed in this labora...
“Liquids confined in nanoscopic geometries are presently of great interest but not well understood. ...
We study the self-diffusion of simple gases inside single-walled carbon nanotubes at the zero-loadin...
International audienceLarge-scale molecular dynamics simulations are used to investigate the structu...
The mobility of fluids adsorbed in nanoporous materials with one-dimensional porous networks can be ...
A hybrid molecular dynamics simulation/pore network model (MD/PNM) approach is developed for predict...
We present here a tractable theory of transport of simple fluids in cylindrical nanopores, which is ...
International audienceIn this paper, the density, hydrogen bonding and self-diffusivity of water con...