We study water flow through carbon nanotubes using continuum theory and molecular dynamics simulations. The large slip length in carbon nanotubes greatly enhances the pumping and electrokinetic energy conversion efficiency. In the absence of mobile charges, however, the electro-osmotic flow vanishes. Uncharged nanotubes filled with pure water can therefore not be used as electric field-driven pumps, contrary to some recently ventured ideas. This is in agreement with results from a generalized hydrodynamic theory that includes the angular momentum of rotating dipolar molecules. The electro-osmotic flow observed in simulations of such carbon nanotubes is caused by an imprudent implementation of the Lennard-Jones cutoff. We also discuss the in...
This article compares both new and commonly used boundary conditions for generating pressure-driven ...
This article compares both new and commonly used boundary conditions for generating pressure-driven ...
The advent of carbon nanotube (CNT) synthesis has created exciting new oppor- tunities in fluid dyna...
We study water flow through carbon nanotubes using continuum theory and molecular dynamics simulatio...
We study water flow through carbon nanotubes using continuum theory and molecular dynamics simulatio...
Pressure-driven water flow through carbon nanotubes (CNTs) with diameters ranging from 1.66 to 4.99 ...
Water continually generates vast research interest due to its many unusual properties, not least of ...
Water continually generates vast research interest due to its many unusual properties, not least of ...
This article compares both new and commonly used boundary conditions for generating pressure-driven ...
This article compares both new and commonly used boundary conditions for generating pressure-driven ...
This article compares both new and commonly used boundary conditions for generating pressure-driven ...
In this dissertation, we investigate water and ion transport through carbon nanotubes using molecul...
AbstractThe dynamics of fluid flow through nanochannels is different from those in macroscopic syste...
The purpose of this paper is threefold. First, we review the existing literature on flow rates of wa...
The properties of water confined inside nanotubes are of considerable scientific and technological i...
This article compares both new and commonly used boundary conditions for generating pressure-driven ...
This article compares both new and commonly used boundary conditions for generating pressure-driven ...
The advent of carbon nanotube (CNT) synthesis has created exciting new oppor- tunities in fluid dyna...
We study water flow through carbon nanotubes using continuum theory and molecular dynamics simulatio...
We study water flow through carbon nanotubes using continuum theory and molecular dynamics simulatio...
Pressure-driven water flow through carbon nanotubes (CNTs) with diameters ranging from 1.66 to 4.99 ...
Water continually generates vast research interest due to its many unusual properties, not least of ...
Water continually generates vast research interest due to its many unusual properties, not least of ...
This article compares both new and commonly used boundary conditions for generating pressure-driven ...
This article compares both new and commonly used boundary conditions for generating pressure-driven ...
This article compares both new and commonly used boundary conditions for generating pressure-driven ...
In this dissertation, we investigate water and ion transport through carbon nanotubes using molecul...
AbstractThe dynamics of fluid flow through nanochannels is different from those in macroscopic syste...
The purpose of this paper is threefold. First, we review the existing literature on flow rates of wa...
The properties of water confined inside nanotubes are of considerable scientific and technological i...
This article compares both new and commonly used boundary conditions for generating pressure-driven ...
This article compares both new and commonly used boundary conditions for generating pressure-driven ...
The advent of carbon nanotube (CNT) synthesis has created exciting new oppor- tunities in fluid dyna...