Confinement of matter on the nanometre scale can induce phase transitions not seen in bulk systems. In the case of water, so-called drying transitions occur on this scale as a result of strong hydrogen-bonding between water molecules, which can cause the liquid to recede from nonpolar surfaces to form a vapour layer separating the bulk phase from the surface. Here we report molecular dynamics simulations showing spontaneous and continuous filling of a nonpolar carbon nanotube with a one-dimensionally ordered chain of water molecules. Although the molecules forming the chain are in chemical and thermal equilibrium with the surrounding bath, we observe pulse-like transmission of water through the nanotube. These transmission bursts result fro...
The authors have used atomistic molecular dynamics (MD) simulations to study the structure and dynam...
Using a purpose built molecular dynamics (MD) code. we simulate a range of infinite and finite lengt...
We have performed atomistic molecular dynamics (MD) simulations of water molecules inside narrow, op...
Water dynamics in nanochannels are altered by confinement, particularly in small carbon nanotubes (C...
The kinetics of water filling and emptying the interior channel of carbon nanotubes is studied by mo...
Confinement and transport of fluids through nanopores is a subject of great interest. It has been ob...
The authors have used atomistic molecular dynamics (MD) simulations to study the structure and dynam...
Carbon nanotubes can serve as simple nonpolar water channels. Here we report computer simulations ex...
We conduct molecular dynamics simulations to study the effect of the curvature induced static dipole...
ABSTRACT: Grotthuss shuttling of an excess proton charge defect through hydrogen bonded water networ...
Water confined into the interior channels of narrow carbon nanotubes or transmembrane proteins forms...
Controlling water transport via an empty cavity can achieve unexpected properties for various applic...
We have performed atomistic molecular dynamics (MD) simulations of water molecules inside narrow, op...
We have performed atomistic molecular dynamics (MD) simulations of water molecules inside narrow, op...
Water confined into the interior channels of narrow carbon nanotubes or transmembrane proteins forms...
The authors have used atomistic molecular dynamics (MD) simulations to study the structure and dynam...
Using a purpose built molecular dynamics (MD) code. we simulate a range of infinite and finite lengt...
We have performed atomistic molecular dynamics (MD) simulations of water molecules inside narrow, op...
Water dynamics in nanochannels are altered by confinement, particularly in small carbon nanotubes (C...
The kinetics of water filling and emptying the interior channel of carbon nanotubes is studied by mo...
Confinement and transport of fluids through nanopores is a subject of great interest. It has been ob...
The authors have used atomistic molecular dynamics (MD) simulations to study the structure and dynam...
Carbon nanotubes can serve as simple nonpolar water channels. Here we report computer simulations ex...
We conduct molecular dynamics simulations to study the effect of the curvature induced static dipole...
ABSTRACT: Grotthuss shuttling of an excess proton charge defect through hydrogen bonded water networ...
Water confined into the interior channels of narrow carbon nanotubes or transmembrane proteins forms...
Controlling water transport via an empty cavity can achieve unexpected properties for various applic...
We have performed atomistic molecular dynamics (MD) simulations of water molecules inside narrow, op...
We have performed atomistic molecular dynamics (MD) simulations of water molecules inside narrow, op...
Water confined into the interior channels of narrow carbon nanotubes or transmembrane proteins forms...
The authors have used atomistic molecular dynamics (MD) simulations to study the structure and dynam...
Using a purpose built molecular dynamics (MD) code. we simulate a range of infinite and finite lengt...
We have performed atomistic molecular dynamics (MD) simulations of water molecules inside narrow, op...