The spontaneous filling of hydrophobic carbon nanotubes (CNTs) by water observed both experimentally and from simulations is counterintuitive because confinement is generally expected to decrease both entropy and bonding, and remains largely unexplained. Here we report the entropy, enthalpy, and free energy extracted from molecular dynamics simulations of water confined in CNTs from 0.8 to 2.7-nm diameters. We find for all sizes that water inside the CNTs is more stable than in the bulk, but the nature of the favorable confinement of water changes dramatically with CNT diameter. Thus we find (i) an entropy (both rotational and translational) stabilized, vapor-like phase of water for small CNTs (0.8–1.0 nm), (ii) an enthalpy stabilized, ice-...
Confinement and transport of fluids through nanopores is a subject of great interest. It has been ob...
The results of enthalpy of immersion in water for finite single-walled carbon nanotubes are reported...
Confinement in nanoscaled porous materials changes properties of water significantly. We perform mol...
We used molecular dynamics simulations to investigate the thermodynamics of filling of a (6,6) open ...
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...
Experiments and computer simulations demonstrate that water spontaneously fills the hydrophobic cavi...
Effective Lennard-Jones models for the water–carbon interaction are derived from existing high-level...
Spontaneous entry of water molecules inside single-wall carbon nanotubes (SWCNTs) has been confirmed...
Effective Lennard--Jones models for the water-carbon interaction are derived from existing high-leve...
AbstractA systematic investigation of water filling of carbon nanotubes is presented. By means of a ...
The equilibrium density of fluids under nanoconfinement can differ substantially from their bulk den...
This thesis deals with several aspects of the structure and dynamics of water molecules confined in ...
Water dynamics in nanochannels are altered by confinement, particularly in small carbon nanotubes (C...
Confinement and transport of fluids through nanopores is a subject of great interest. It has been ob...
The results of enthalpy of immersion in water for finite single-walled carbon nanotubes are reported...
Confinement in nanoscaled porous materials changes properties of water significantly. We perform mol...
We used molecular dynamics simulations to investigate the thermodynamics of filling of a (6,6) open ...
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...
Experiments and computer simulations demonstrate that water spontaneously fills the hydrophobic cavi...
Effective Lennard-Jones models for the water–carbon interaction are derived from existing high-level...
Spontaneous entry of water molecules inside single-wall carbon nanotubes (SWCNTs) has been confirmed...
Effective Lennard--Jones models for the water-carbon interaction are derived from existing high-leve...
AbstractA systematic investigation of water filling of carbon nanotubes is presented. By means of a ...
The equilibrium density of fluids under nanoconfinement can differ substantially from their bulk den...
This thesis deals with several aspects of the structure and dynamics of water molecules confined in ...
Water dynamics in nanochannels are altered by confinement, particularly in small carbon nanotubes (C...
Confinement and transport of fluids through nanopores is a subject of great interest. It has been ob...
The results of enthalpy of immersion in water for finite single-walled carbon nanotubes are reported...
Confinement in nanoscaled porous materials changes properties of water significantly. We perform mol...