In the nanoscale regime, flow behaviors for liquids show qualitative deviations from bulk expectations. In this work, we reveal by molecular dynamics simulations that plug flow down to nanoscale induces molecular friction that leads to a new flow structure due to the molecular clogging of the encaged liquid. This plug-like nanoscale liquid flow shows several features differ from the macroscopic plug flow and Poiseuille flow: It leads to enhanced liquid/solid friction, producing a friction of several order of magnitude larger than that of Couette flow; the friction enhancement is sensitively dependent of the liquid column length and the wettability of the solid substrates; it leads to the local compaction of liquid molecules that may induce ...
Using molecular dynamics (MD), we investigate the importance of liquid–vapor interface topography in...
Defects are inevitably present in nanofluidic systems, yet the role they play in nanofluidic transpo...
With the recent important development of microfluidicsystems, miniaturization of flow devices has be...
International audienceNonequilibrium molecular dynamics (NEMD) simulations have been performed to de...
Molecular dynamics (MD) simulation is a powerful tool to investigate the nanoscale fluid flow. In th...
We investigate liquid flows in various nanochannels and present the effect of all physical parameter...
A two-dimensional molecular dynamics model of the liquid flow inside rough nanochannels is developed...
Nanoscale fluid flow systems involve both microscopic and macroscopic parameters, which may couple w...
Nanofluidic applications are currently being investigated in use for water treatment systems as a po...
When liquid molecules are confined in a narrow gap between smooth surfaces, their dynamic properties...
The studies of fluid flows have been lately transferred to a significant extend at the micro- and th...
Within the scope of this thesis, a theoretical study of liquid flow in graphitic nanopores was perfo...
Liquids play an important role in adhesion and sliding friction. They behave as lubricants in human ...
Liquid transport in nanochannels have been attracting great interests, especially for last two decad...
In this work, we investigate the validity of the Navier-Stokes (NS) equations for nanoscale liquid f...
Using molecular dynamics (MD), we investigate the importance of liquid–vapor interface topography in...
Defects are inevitably present in nanofluidic systems, yet the role they play in nanofluidic transpo...
With the recent important development of microfluidicsystems, miniaturization of flow devices has be...
International audienceNonequilibrium molecular dynamics (NEMD) simulations have been performed to de...
Molecular dynamics (MD) simulation is a powerful tool to investigate the nanoscale fluid flow. In th...
We investigate liquid flows in various nanochannels and present the effect of all physical parameter...
A two-dimensional molecular dynamics model of the liquid flow inside rough nanochannels is developed...
Nanoscale fluid flow systems involve both microscopic and macroscopic parameters, which may couple w...
Nanofluidic applications are currently being investigated in use for water treatment systems as a po...
When liquid molecules are confined in a narrow gap between smooth surfaces, their dynamic properties...
The studies of fluid flows have been lately transferred to a significant extend at the micro- and th...
Within the scope of this thesis, a theoretical study of liquid flow in graphitic nanopores was perfo...
Liquids play an important role in adhesion and sliding friction. They behave as lubricants in human ...
Liquid transport in nanochannels have been attracting great interests, especially for last two decad...
In this work, we investigate the validity of the Navier-Stokes (NS) equations for nanoscale liquid f...
Using molecular dynamics (MD), we investigate the importance of liquid–vapor interface topography in...
Defects are inevitably present in nanofluidic systems, yet the role they play in nanofluidic transpo...
With the recent important development of microfluidicsystems, miniaturization of flow devices has be...