We present a theory for the transport of molecules adsorbed in slit and cylindrical nanopores at low density, considering the axial momentum gain of molecules oscillating between diffuse wall reflections. Good agreement with molecular dynamics simulations is obtained over a wide range of pore sizes, including the regime of single-file diffusion where fluid-fluid interactions are shown to have a negligible effect on the collective transport coefficient. We show that dispersive fluid-wall interactions considerably attenuate transport compared to classical hard sphere theory
We present a novel theory of mixture transport in nanopores, which represents wall effects via a spe...
This article provides a review of the recent theory of transport in nanopores developed in the autho...
This article provides a review of the recent theory of transport in nanopores developed in the autho...
We present a theory for the transport of molecules adsorbed in slit and cylindrical nanopores at low...
We develop a novel theory to predict the density dependence of the diffusivity of simple fluids in a...
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 ...
A theory is discussed of single-component transport in nanopores, recently developed by Bhatia and c...
A theory is discussed of single-component transport in nanopores, recently developed by Bhatia and c...
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...
We study the transport of a subcritical Lennard-Jones fluid in a cylindrical nanopore, using a combi...
Molecular transport in confined spaces is of central importance to many traditional and emerging app...
Molecular transport in confined spaces is of central importance to many traditional and emerging app...
We present a novel theory of mixture transport in nanopores, which represents wall effects via a spe...
This article provides a review of the recent theory of transport in nanopores developed in the autho...
This article provides a review of the recent theory of transport in nanopores developed in the autho...
We present a theory for the transport of molecules adsorbed in slit and cylindrical nanopores at low...
We develop a novel theory to predict the density dependence of the diffusivity of simple fluids in a...
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 ...
A theory is discussed of single-component transport in nanopores, recently developed by Bhatia and c...
A theory is discussed of single-component transport in nanopores, recently developed by Bhatia and c...
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...
We study the transport of a subcritical Lennard-Jones fluid in a cylindrical nanopore, using a combi...
Molecular transport in confined spaces is of central importance to many traditional and emerging app...
Molecular transport in confined spaces is of central importance to many traditional and emerging app...
We present a novel theory of mixture transport in nanopores, which represents wall effects via a spe...
This article provides a review of the recent theory of transport in nanopores developed in the autho...
This article provides a review of the recent theory of transport in nanopores developed in the autho...