The low-pressure transport of simple fluids in nanopores and in disordered nanoporous networks is analyzed, using a recent oscillator model theory from the author's laboratory, considering the trajectories of molecules moving in the potential energy field of the fluid-pore wall interaction. The scaling behavior of the single-pore theory is discussed, and it is shown that the Knudsen model provides an upper bound to the diffusivity scaled with the pore radius. The single-pore theory is shown to apply well to ordered materials and successfully interprets recent literature data on the variation of permeability with diffusant molecular size for a DDR zeolite membrane. A peak in permeability is seen at a pore-size-dependent molecular size becaus...
We present a theory for the transport of molecules adsorbed in slit and cylindrical nanopores at low...
Molecular transport in nanoconfined spaces plays a key role in many emerging technologies for gas se...
Molecular transport in confined spaces is of central importance to many traditional and emerging app...
The low-pressure transport of simple fluids in nanopores and in disordered nanoporous networks is an...
The low-pressure transport of simple fluids in nanopores and in disordered nanoporous networks is an...
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...
Fluid transport in narrow pores is central to the design and optimization of nanoporous materials in...
Molecular transport in confined spaces plays a fundamental role in well-established and emerging tec...
We present here a tractable theory of transport of simple fluids in cylindrical nanopores, which is ...
We present a new theory to estimate fluxes and effective transport conductances of binary mixtures t...
The Knudsen model of diffusion in small pores, originally verified in macropores, is widely applied ...
The regular nanoporous structure make zeolite membranes attractive candidates for separating molecul...
The Knudsen model of diffusion in small pores, originally verified in macropores, is widely applied ...
Molecular transport in confined spaces is of central importance to many traditional and emerging app...
We present a theory for the transport of molecules adsorbed in slit and cylindrical nanopores at low...
Molecular transport in nanoconfined spaces plays a key role in many emerging technologies for gas se...
Molecular transport in confined spaces is of central importance to many traditional and emerging app...
The low-pressure transport of simple fluids in nanopores and in disordered nanoporous networks is an...
The low-pressure transport of simple fluids in nanopores and in disordered nanoporous networks is an...
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...
Fluid transport in narrow pores is central to the design and optimization of nanoporous materials in...
Molecular transport in confined spaces plays a fundamental role in well-established and emerging tec...
We present here a tractable theory of transport of simple fluids in cylindrical nanopores, which is ...
We present a new theory to estimate fluxes and effective transport conductances of binary mixtures t...
The Knudsen model of diffusion in small pores, originally verified in macropores, is widely applied ...
The regular nanoporous structure make zeolite membranes attractive candidates for separating molecul...
The Knudsen model of diffusion in small pores, originally verified in macropores, is widely applied ...
Molecular transport in confined spaces is of central importance to many traditional and emerging app...
We present a theory for the transport of molecules adsorbed in slit and cylindrical nanopores at low...
Molecular transport in nanoconfined spaces plays a key role in many emerging technologies for gas se...
Molecular transport in confined spaces is of central importance to many traditional and emerging app...