Confinement in nanoscaled porous materials changes properties of water significantly. We perform molecular dynamics simulations of water in a model of a nanobrush made of carbon nanotubes. Water crystallizes into a novel structure called dtc in the nanobrush when (6,6) nanotubes are located in a triangular arrangement, and there is a space that can accommodate two layers of water molecules between the tubes. The mechanism of the solidification is analogous to formation of gas hydrates: hydrophobic molecules promote crystallization when their arrangement matches ordered structures of water. This is supported by a statistical mechanical calculation, which bears resemblance to the theory on the clathrate hydrate stability
The spontaneous filling of hydrophobic carbon nanotubes (CNTs) by water observed both experimentally...
We report six phases of high-density nano-ice predicted to form within carbon nanotubes (CNTs) at hi...
We report six phases of high-density nano-ice predicted to form within carbon nanotubes (CNTs) at hi...
Confinement in nanoscaled porous materials changes properties of water significantly. We perform mol...
Confinement in nanoscaled porous materials changes properties of water significantly. We perform mol...
Stable crystalline structures of confined water can be different from bulk ice. In Paper I [T. Yagas...
Following their discovery, carbon nanotubes have attracted interest not only for their unusual elect...
It is well recognized that ice-like water can be formed in carbon nanotubes (CNTs). Here, we perform...
The results of enthalpy of immersion in water for finite single-walled carbon nanotubes arereported....
The results of enthalpy of immersion in water for finite single-walled carbon nanotubes are reported...
Following their discovery, carbon nanotubes have attracted interest not only for their unusual elect...
A very recent experimental paper importantly and unexpectedly showed that water in carbon nanotubes ...
A composite ice nanotube inside a carbon nanotube has been explored by molecular dynamics and grandc...
A composite ice nanotube inside a carbon nanotube has been explored by molecular dynamics and grandc...
We report six phases of high-density nano-ice predicted to form within carbon nanotubes (CNTs) at hi...
The spontaneous filling of hydrophobic carbon nanotubes (CNTs) by water observed both experimentally...
We report six phases of high-density nano-ice predicted to form within carbon nanotubes (CNTs) at hi...
We report six phases of high-density nano-ice predicted to form within carbon nanotubes (CNTs) at hi...
Confinement in nanoscaled porous materials changes properties of water significantly. We perform mol...
Confinement in nanoscaled porous materials changes properties of water significantly. We perform mol...
Stable crystalline structures of confined water can be different from bulk ice. In Paper I [T. Yagas...
Following their discovery, carbon nanotubes have attracted interest not only for their unusual elect...
It is well recognized that ice-like water can be formed in carbon nanotubes (CNTs). Here, we perform...
The results of enthalpy of immersion in water for finite single-walled carbon nanotubes arereported....
The results of enthalpy of immersion in water for finite single-walled carbon nanotubes are reported...
Following their discovery, carbon nanotubes have attracted interest not only for their unusual elect...
A very recent experimental paper importantly and unexpectedly showed that water in carbon nanotubes ...
A composite ice nanotube inside a carbon nanotube has been explored by molecular dynamics and grandc...
A composite ice nanotube inside a carbon nanotube has been explored by molecular dynamics and grandc...
We report six phases of high-density nano-ice predicted to form within carbon nanotubes (CNTs) at hi...
The spontaneous filling of hydrophobic carbon nanotubes (CNTs) by water observed both experimentally...
We report six phases of high-density nano-ice predicted to form within carbon nanotubes (CNTs) at hi...
We report six phases of high-density nano-ice predicted to form within carbon nanotubes (CNTs) at hi...