A theory is discussed of single-component transport in nanopores, recently developed by Bhatia and coworkers. The theory considers the oscillatory motion of molecules between diffuse wall collisions, arising from the fluid-wall interaction, along with superimposed viscous flow due to fluid-fluid interaction. The theory is tested against molecular dynamics simulations for hydrogen, methane, and carbon tetrafluoride flow in cylindrical nanopores in silica. Although exact at low densities, the theory performs well even at high densities, with the density dependency of the transport coefficient arising from viscous effects. Such viscous effects are reduced at high densities because of the large increase in viscosity, which explains the maximum ...
We present a theory for the transport of molecules adsorbed in slit and cylindrical nanopores at low...
We study the transport of a subcritical Lennard-Jones fluid in a cylindrical nanopore, using a combi...
The recent frictional model of the transport of fluid mixtures in nanopores developed in this labora...
A theory is discussed of single-component transport in nanopores, recently developed by Bhatia and c...
We present here a tractable theory of transport of simple fluids in cylindrical nanopores, which is ...
We present a tractable theory of transport of simple fluids in cylindrical nanopores, considering tr...
We present here a tractable theory of transport of simple fluids in cylindrical nanopores, which is ...
We present here a novel theory of mixture transport in nanopores, which considers the fluid-wall mom...
We develop a novel theory to predict the density dependence of the diffusivity of simple fluids in a...
We present a theory for the transport of molecules adsorbed in slit and cylindrical nanopores at low...
Molecular transport in nanopores plays a central role in many emerging nanotechnologies for gas sepa...
Molecular transport in nanopores plays a central role in many emerging nanotechnologies for gas sepa...
Simulation of the transport of methane in cylindrical silica mesopores have been performed using equ...
We study the transport of a subcritical Lennard-Jones fluid in a cylindrical nanopore, using a combi...
We study the transport of a subcritical Lennard-Jones fluid in a cylindrical nanopore, using a combi...
We present a theory for the transport of molecules adsorbed in slit and cylindrical nanopores at low...
We study the transport of a subcritical Lennard-Jones fluid in a cylindrical nanopore, using a combi...
The recent frictional model of the transport of fluid mixtures in nanopores developed in this labora...
A theory is discussed of single-component transport in nanopores, recently developed by Bhatia and c...
We present here a tractable theory of transport of simple fluids in cylindrical nanopores, which is ...
We present a tractable theory of transport of simple fluids in cylindrical nanopores, considering tr...
We present here a tractable theory of transport of simple fluids in cylindrical nanopores, which is ...
We present here a novel theory of mixture transport in nanopores, which considers the fluid-wall mom...
We develop a novel theory to predict the density dependence of the diffusivity of simple fluids in a...
We present a theory for the transport of molecules adsorbed in slit and cylindrical nanopores at low...
Molecular transport in nanopores plays a central role in many emerging nanotechnologies for gas sepa...
Molecular transport in nanopores plays a central role in many emerging nanotechnologies for gas sepa...
Simulation of the transport of methane in cylindrical silica mesopores have been performed using equ...
We study the transport of a subcritical Lennard-Jones fluid in a cylindrical nanopore, using a combi...
We study the transport of a subcritical Lennard-Jones fluid in a cylindrical nanopore, using a combi...
We present a theory for the transport of molecules adsorbed in slit and cylindrical nanopores at low...
We study the transport of a subcritical Lennard-Jones fluid in a cylindrical nanopore, using a combi...
The recent frictional model of the transport of fluid mixtures in nanopores developed in this labora...