Experiments and computer simulations demonstrate that water spontaneously fills the hydrophobic cavity of a carbon nanotube. To gain a quantitative thermodynamic understanding of this phenomenon, we use the recently developed two phase thermodynamics method to compute translational and rotational entropies of confined water molecules inside single-walled carbon nanotubes and show that the increase in energy of a water molecule inside the nanotube is compensated by the gain in its rotational entropy. The confined water is in equilibrium with the bulk water and the Helmholtz free energy per water molecule of confined water is the same as that in the bulk within the accuracy of the simulation results. A comparison of translational and rotation...
Liquids in narrowly confined spaces have properties that are very different from those of the bulk. ...
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...
Experiments and computer simulations demonstrate that water spontaneously fills the hydrophobic cavi...
Experiments and computer simulations demonstrate that water spontaneously fills the hydrophobic cavi...
Experiments and computer simulations demonstrate that water spontaneously fills the hydrophobic cavi...
Spontaneous entry of water molecules inside single-wall carbon nanotubes (SWCNTs) has been confirmed...
We used molecular dynamics simulations to investigate the thermodynamics of filling of a (6,6) open ...
The spontaneous filling of hydrophobic carbon nanotubes (CNTs) by water observed both experimentally...
The results of enthalpy of immersion in water for finite single-walled carbon nanotubes are reported...
The results of enthalpy of immersion in water for finite single-walled carbon nanotubes arereported....
Various structural, dynamic and thermodynamic properties of water molecules confined in single-wall ...
Various structural, dynamic and thermodynamic properties of water molecules confined in single-wall ...
This thesis deals with several aspects of the structure and dynamics of water molecules confined in ...
The effect of nanoconfinement on the self-dissociation of water constitutes an open problem whose el...
Liquids in narrowly confined spaces have properties that are very different from those of the bulk. ...
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...
Experiments and computer simulations demonstrate that water spontaneously fills the hydrophobic cavi...
Experiments and computer simulations demonstrate that water spontaneously fills the hydrophobic cavi...
Experiments and computer simulations demonstrate that water spontaneously fills the hydrophobic cavi...
Spontaneous entry of water molecules inside single-wall carbon nanotubes (SWCNTs) has been confirmed...
We used molecular dynamics simulations to investigate the thermodynamics of filling of a (6,6) open ...
The spontaneous filling of hydrophobic carbon nanotubes (CNTs) by water observed both experimentally...
The results of enthalpy of immersion in water for finite single-walled carbon nanotubes are reported...
The results of enthalpy of immersion in water for finite single-walled carbon nanotubes arereported....
Various structural, dynamic and thermodynamic properties of water molecules confined in single-wall ...
Various structural, dynamic and thermodynamic properties of water molecules confined in single-wall ...
This thesis deals with several aspects of the structure and dynamics of water molecules confined in ...
The effect of nanoconfinement on the self-dissociation of water constitutes an open problem whose el...
Liquids in narrowly confined spaces have properties that are very different from those of the bulk. ...
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...