Motivated by electrowetting-based flow control in nano-systems, water transport in graphene nano-channels is investigated as a function of the applied electric field. Molecular dynamics simulations are performed for deionized water confined in graphene nano-channels subjected to opposing surface charges, creating an electric field across the channel. Water molecules respond to the electric field by reorientation of their dipoles. Oxygen and hydrogen atoms in water face the anode and cathode, respectively, and hydrogen atoms get closer to the cathode compared to the oxygen atoms near the anode. These effects create asymmetric density distributions that increase with the applied electric field. Force-driven water flows under electric fields e...
Advances in fabrication, measurement and characterization have led to intense research in the area o...
Advances in fabrication, measurement and characterization have led to intense research in the area o...
Enhanced mass transport in carbon-based nanoscale conduits (e.g. carbon nanotubes, graphene nanochan...
Deionized water flow through positively charged graphene nano-channels is investigated using molecul...
Understanding and controlling water or ion transport in nanochannels plays an important role in furt...
Understanding and controlling water or ion transport in nanochannels plays an important role in furt...
We study the electrokinetic transport behavior of water molecules and ions in hydrophobic graphene n...
We show by using molecular dynamics simulations that a water overlayer on charged graphene experienc...
Equilibrium molecular dynamics simulations are used to investigate the effect of phase transitions o...
Using molecular simulations of nano-sized aqueous droplets on a model graphite surface we demonstrat...
The properties of water confined inside nanotubes are of considerable scientific and technological i...
There are more than three billion people across the globe that struggle to obtain clean drinkable wa...
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...
Advances in fabrication, measurement and characterization have led to intense research in the area o...
Advances in fabrication, measurement and characterization have led to intense research in the area o...
Enhanced mass transport in carbon-based nanoscale conduits (e.g. carbon nanotubes, graphene nanochan...
Deionized water flow through positively charged graphene nano-channels is investigated using molecul...
Understanding and controlling water or ion transport in nanochannels plays an important role in furt...
Understanding and controlling water or ion transport in nanochannels plays an important role in furt...
We study the electrokinetic transport behavior of water molecules and ions in hydrophobic graphene n...
We show by using molecular dynamics simulations that a water overlayer on charged graphene experienc...
Equilibrium molecular dynamics simulations are used to investigate the effect of phase transitions o...
Using molecular simulations of nano-sized aqueous droplets on a model graphite surface we demonstrat...
The properties of water confined inside nanotubes are of considerable scientific and technological i...
There are more than three billion people across the globe that struggle to obtain clean drinkable wa...
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...
Advances in fabrication, measurement and characterization have led to intense research in the area o...
Advances in fabrication, measurement and characterization have led to intense research in the area o...
Enhanced mass transport in carbon-based nanoscale conduits (e.g. carbon nanotubes, graphene nanochan...