The properties of water confined inside nanotubes are of considerable scientific and technological interest. We use molecular dynamics to investigate the structure and average orientation of water flowing within a carbon nanotube. We find that water exhibits biaxial paranematic liquid crystal ordering both within the nanotube and close to its ends. This preferred molecular ordering is enhanced when an axial electric field is applied, affecting the water flow rate through the nanotube. A spatially patterned electric field can minimize nanotube entrance effects and significantly increase the flow rate
Water continually generates vast research interest due to its many unusual properties, not least of ...
AbstractThe dynamics of fluid flow through nanochannels is different from those in macroscopic syste...
Water continually generates vast research interest due to its many unusual properties, not least of ...
The properties of water confined inside nanotubes are of considerable scientific and technological i...
The properties of water confined inside nanotubes are of considerable scientific and technological i...
The properties of water confined inside nanotubes are of considerable scientific and technological i...
The properties of water confined inside nanotubes are of considerable scientific and technological i...
Water confined within nanoscale geometries under external field has many interesting properties whic...
Water confined within nanoscale geometries under external field has many interesting properties whic...
Recent studies have shown the possibility of water transport across carbon nanotubes, even in the ca...
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...
We study water flow through carbon nanotubes using continuum theory and molecular dynamics simulatio...
Water confined in carbon nanotubes (CNTs) under the influence of an electric field exhibits behavior...
We conduct molecular dynamics simulations to study the effect of the curvature induced static dipole...
Water continually generates vast research interest due to its many unusual properties, not least of ...
AbstractThe dynamics of fluid flow through nanochannels is different from those in macroscopic syste...
Water continually generates vast research interest due to its many unusual properties, not least of ...
The properties of water confined inside nanotubes are of considerable scientific and technological i...
The properties of water confined inside nanotubes are of considerable scientific and technological i...
The properties of water confined inside nanotubes are of considerable scientific and technological i...
The properties of water confined inside nanotubes are of considerable scientific and technological i...
Water confined within nanoscale geometries under external field has many interesting properties whic...
Water confined within nanoscale geometries under external field has many interesting properties whic...
Recent studies have shown the possibility of water transport across carbon nanotubes, even in the ca...
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...
We study water flow through carbon nanotubes using continuum theory and molecular dynamics simulatio...
Water confined in carbon nanotubes (CNTs) under the influence of an electric field exhibits behavior...
We conduct molecular dynamics simulations to study the effect of the curvature induced static dipole...
Water continually generates vast research interest due to its many unusual properties, not least of ...
AbstractThe dynamics of fluid flow through nanochannels is different from those in macroscopic syste...
Water continually generates vast research interest due to its many unusual properties, not least of ...