Fluid transport through carbon nanotubes have shown remarkable flow properties, with measured flow rates orders of magnitude larger than the expected from standard continuum flow theories. Related studies have indicated that the observed high flow rates were driven by the extreme smoothness of the cylindrical nanotubes used in the experiments. In this work, we consider several types of nanochannels far from the cylindrical geometries. Using a combination of simulation techniques, such as molecular dynamics and the lattice Boltzmann method, we study the flow behavior under tortuous and rough channels, which are of fundamental relevance either for optimizing carbon nanotubes for nanofiltering applications, as well as for characterizing nanopo...
The transport behavior of water molecules inside a model carbon nanotube is investigated by using no...
Molecular dynamics simulations of rigid, defect-free single-walled carbon nanotubes have previously ...
We report gas and water flow measurements through microfabricated membranes in which aligned carbon ...
Fluid transport through carbon nanotubes have shown remarkable flow properties, with measured flow r...
We perform a detailed study of methane flow through nanoporous kerogen. Using molecular dynamics and...
Using non-equilibrium molecular dynamics simulations, we investigate the effect of wall roughness on...
The well defined shape and size of carbon nanotubes (CNTs) makes them attractive candidates for theo...
Understanding and characterizing the transport of shale gas (methane) through the nanopores of kerog...
Extremely high aspect ratios, molecularly smooth hydrophobic graphitic walls, and nanoscale inner di...
We examine here the relative importance of different contributions to transport of light gases in si...
Fast mass transport was identified for gas through nanoscale pores, especially those fabricated from...
Extremely high aspect ratios, molecularly smooth hydrophobic graphitic walls, and nanoscale inner di...
Extraordinarily fast transport of water in carbon nanotubes (CNTs) in recent experiments has been ge...
We investigate the transport diffusion of methane at 300 K in a series of short (10, 10) carbon nano...
Molecular dynamics simulations of rigid, defect-free single-walled carbon nanotubes have previously ...
The transport behavior of water molecules inside a model carbon nanotube is investigated by using no...
Molecular dynamics simulations of rigid, defect-free single-walled carbon nanotubes have previously ...
We report gas and water flow measurements through microfabricated membranes in which aligned carbon ...
Fluid transport through carbon nanotubes have shown remarkable flow properties, with measured flow r...
We perform a detailed study of methane flow through nanoporous kerogen. Using molecular dynamics and...
Using non-equilibrium molecular dynamics simulations, we investigate the effect of wall roughness on...
The well defined shape and size of carbon nanotubes (CNTs) makes them attractive candidates for theo...
Understanding and characterizing the transport of shale gas (methane) through the nanopores of kerog...
Extremely high aspect ratios, molecularly smooth hydrophobic graphitic walls, and nanoscale inner di...
We examine here the relative importance of different contributions to transport of light gases in si...
Fast mass transport was identified for gas through nanoscale pores, especially those fabricated from...
Extremely high aspect ratios, molecularly smooth hydrophobic graphitic walls, and nanoscale inner di...
Extraordinarily fast transport of water in carbon nanotubes (CNTs) in recent experiments has been ge...
We investigate the transport diffusion of methane at 300 K in a series of short (10, 10) carbon nano...
Molecular dynamics simulations of rigid, defect-free single-walled carbon nanotubes have previously ...
The transport behavior of water molecules inside a model carbon nanotube is investigated by using no...
Molecular dynamics simulations of rigid, defect-free single-walled carbon nanotubes have previously ...
We report gas and water flow measurements through microfabricated membranes in which aligned carbon ...