Various structural, dynamic and thermodynamic properties of water molecules confined in single-wall carbon nanotubes (CNTs) are investigated using both polarizable and non-polarizable water models. The inclusion of polarizability quantitatively affects the nature of hydrogen bonding, which governs many properties of confined water molecules. Polarizable water leads to tighter hydrogen bonding and makes the distance between neighboring water molecules shorter than that for non-polarizable water. Stronger hydrogen bonding also decreases the rotational entropy and makes the diffusion constant smaller than in TIP3P and TIP3PM water models. The reorientational dynamics of the water molecules is governed by a jump mechanism, the barrier for the j...
Water dynamics in nanochannels are altered by confinement, particularly in small carbon nanotubes (C...
Water transport through short single-walled (6, 6) carbon nanotubes (CNTs) was investigated with ab ...
We have performed atomistic molecular dynamics (MD) simulations of water molecules inside narrow, op...
Various structural, dynamic and thermodynamic properties of water molecules confined in single-wall ...
Understanding the properties of strongly confined water is important for a variety of applications s...
We used molecular dynamics (MD) simulations to study the reorientational dynamics of water molecules...
We used molecular dynamics (MD) simulations to study the reorientational dynamics of water molecules...
We used molecular dynamics (MD) simulations to study the reorientational dynamics of water molecules...
We used molecular dynamics (MD) simulations to study the reorientational dynamics of water molecules...
The present work deals with molecular dynamics simulations of water confined in single-walled carbon...
The results of enthalpy of immersion in water for finite single-walled carbon nanotubes arereported....
International audienceIn this paper, the density, hydrogen bonding and self-diffusivity of water con...
The results of enthalpy of immersion in water for finite single-walled carbon nanotubes are reported...
Experiments and computer simulations demonstrate that water spontaneously fills the hydrophobic cavi...
Experiments and computer simulations demonstrate that water spontaneously fills the hydrophobic cavi...
Water dynamics in nanochannels are altered by confinement, particularly in small carbon nanotubes (C...
Water transport through short single-walled (6, 6) carbon nanotubes (CNTs) was investigated with ab ...
We have performed atomistic molecular dynamics (MD) simulations of water molecules inside narrow, op...
Various structural, dynamic and thermodynamic properties of water molecules confined in single-wall ...
Understanding the properties of strongly confined water is important for a variety of applications s...
We used molecular dynamics (MD) simulations to study the reorientational dynamics of water molecules...
We used molecular dynamics (MD) simulations to study the reorientational dynamics of water molecules...
We used molecular dynamics (MD) simulations to study the reorientational dynamics of water molecules...
We used molecular dynamics (MD) simulations to study the reorientational dynamics of water molecules...
The present work deals with molecular dynamics simulations of water confined in single-walled carbon...
The results of enthalpy of immersion in water for finite single-walled carbon nanotubes arereported....
International audienceIn this paper, the density, hydrogen bonding and self-diffusivity of water con...
The results of enthalpy of immersion in water for finite single-walled carbon nanotubes are reported...
Experiments and computer simulations demonstrate that water spontaneously fills the hydrophobic cavi...
Experiments and computer simulations demonstrate that water spontaneously fills the hydrophobic cavi...
Water dynamics in nanochannels are altered by confinement, particularly in small carbon nanotubes (C...
Water transport through short single-walled (6, 6) carbon nanotubes (CNTs) was investigated with ab ...
We have performed atomistic molecular dynamics (MD) simulations of water molecules inside narrow, op...