We investigate the hydrodynamic properties of a Lennard-Jones fluid confined to a nanochannel using molecular dynamics simulations. For channels of different widths and hydrophilic-hydrophobic surface wetting properties, profiles of the fluid density, stress, and viscosity across the channel are obtained and analysed. In particular, we propose a linear relationship between the density and viscosity in confined and strongly inhomogeneous nanofluidic flows. The range of validity of this relationship is explored in the context of coarse grained models such as dynamic density functional-theory
“Liquids confined in nanoscopic geometries are presently of great interest but not well understood. ...
“Liquids confined in nanoscopic geometries are presently of great interest but not well understood. ...
In this thesis, we use nonequilibrium molecular dynamics (NEMD) methods to investigate the structura...
We investigate the hydrodynamic properties of a Lennard-Jones fluid confined to a nanochannel using ...
We investigate the hydrodynamic properties of a Lennard-Jones fluid confined to a nanochannel using ...
We investigate the hydrodynamic properties of a Lennard-Jones fluid confined to a nanochannel using ...
During the past few decades molecular dynamics has been a widely applied tool to simulate fluid conf...
Strongly confined fluids exhibit inhomogeneous properties due to atomistic structuring in close prox...
Strongly confined fluids exhibit inhomogeneous properties due to atomistic structuring in close prox...
A key problem in the prediction of the flow properties of highly confined (nano-scale) fluids is tha...
Strongly confined fluids exhibit inhomogeneous properties due to atomistic structuring in close prox...
Strongly confined fluids exhibit inhomogeneous properties due to atomistic structuring in close prox...
Liquid transport in nanochannels have been attracting great interests, especially for last two decad...
Highly confined fluid or particle flows typically show strongly non-Newtonian behavior. In this stud...
The nonequilibrium molecular dynamics (NEMD) is employed to study the gravity-driven nanochannel flo...
“Liquids confined in nanoscopic geometries are presently of great interest but not well understood. ...
“Liquids confined in nanoscopic geometries are presently of great interest but not well understood. ...
In this thesis, we use nonequilibrium molecular dynamics (NEMD) methods to investigate the structura...
We investigate the hydrodynamic properties of a Lennard-Jones fluid confined to a nanochannel using ...
We investigate the hydrodynamic properties of a Lennard-Jones fluid confined to a nanochannel using ...
We investigate the hydrodynamic properties of a Lennard-Jones fluid confined to a nanochannel using ...
During the past few decades molecular dynamics has been a widely applied tool to simulate fluid conf...
Strongly confined fluids exhibit inhomogeneous properties due to atomistic structuring in close prox...
Strongly confined fluids exhibit inhomogeneous properties due to atomistic structuring in close prox...
A key problem in the prediction of the flow properties of highly confined (nano-scale) fluids is tha...
Strongly confined fluids exhibit inhomogeneous properties due to atomistic structuring in close prox...
Strongly confined fluids exhibit inhomogeneous properties due to atomistic structuring in close prox...
Liquid transport in nanochannels have been attracting great interests, especially for last two decad...
Highly confined fluid or particle flows typically show strongly non-Newtonian behavior. In this stud...
The nonequilibrium molecular dynamics (NEMD) is employed to study the gravity-driven nanochannel flo...
“Liquids confined in nanoscopic geometries are presently of great interest but not well understood. ...
“Liquids confined in nanoscopic geometries are presently of great interest but not well understood. ...
In this thesis, we use nonequilibrium molecular dynamics (NEMD) methods to investigate the structura...