Fluids confined in a nanoscale space behave differently than in the bulk due to strong interactions between fluid molecules and solid atoms. Here, we observed water confined inside "open" hydrophilized carbon nanotubes (CNT), with diameter of tens of nanometers, using transmission electron microscopy (TEM). A 1-7 nm water film adhering to most of the inner wall surface was observed and remained stable in the high vacuum (order of 10(-5) Pa) of the TEM. The superstability of this film was attributed to a combination of curvature, nanoroughness, and confinement resulting in a lower vapor pressure for water and hence inhibiting its vaporization. Occasional, suspended ultrathin water film with thickness of 3-20 nm were found and remained stable...
Fluids behave differently inside nanoscale pores than they do in bulk solution. When confined inside...
Water continually generates vast research interest due to its many unusual properties, not least of ...
Water displays anomalous fast diffusion in narrow carbon nanotubes (CNTs), a behavior that has been ...
Fluids confined in a nanoscale space behave differently than in the bulk due to strong interactions ...
Water confined to nanopores such as carbon nanotubes (CNTs) exhibits different states, enabling the ...
The spontaneous filling of hydrophobic carbon nanotubes (CNTs) by water observed both experimentally...
Molecular dynamics simulations of liquid water at ambient conditions, adsorbed at the external walls...
Water transport inside carbon nanotubes (CNTs) shows a wealth of unique nanofluidic phenomena, which...
Water dynamics in nanochannels are altered by confinement, particularly in small carbon nanotubes (C...
The transport behavior of water molecules inside a model carbon nanotube is investigated by using no...
The behavior of fluids at the nanoscale is currently of interest, as nanotechnology promises tools f...
Phase behavior of quasi-one-dimensional water confined inside a carbon nanotube is studied in the th...
Water, because of its anomalous properties, can exhibit complex behavior under strong confinement. A...
Water confined at the nanoscale has been the focus of numerous experimental and theoretical investig...
We use molecular dynamics simulations to study the diffusion of water inside deformed carbon nanotub...
Fluids behave differently inside nanoscale pores than they do in bulk solution. When confined inside...
Water continually generates vast research interest due to its many unusual properties, not least of ...
Water displays anomalous fast diffusion in narrow carbon nanotubes (CNTs), a behavior that has been ...
Fluids confined in a nanoscale space behave differently than in the bulk due to strong interactions ...
Water confined to nanopores such as carbon nanotubes (CNTs) exhibits different states, enabling the ...
The spontaneous filling of hydrophobic carbon nanotubes (CNTs) by water observed both experimentally...
Molecular dynamics simulations of liquid water at ambient conditions, adsorbed at the external walls...
Water transport inside carbon nanotubes (CNTs) shows a wealth of unique nanofluidic phenomena, which...
Water dynamics in nanochannels are altered by confinement, particularly in small carbon nanotubes (C...
The transport behavior of water molecules inside a model carbon nanotube is investigated by using no...
The behavior of fluids at the nanoscale is currently of interest, as nanotechnology promises tools f...
Phase behavior of quasi-one-dimensional water confined inside a carbon nanotube is studied in the th...
Water, because of its anomalous properties, can exhibit complex behavior under strong confinement. A...
Water confined at the nanoscale has been the focus of numerous experimental and theoretical investig...
We use molecular dynamics simulations to study the diffusion of water inside deformed carbon nanotub...
Fluids behave differently inside nanoscale pores than they do in bulk solution. When confined inside...
Water continually generates vast research interest due to its many unusual properties, not least of ...
Water displays anomalous fast diffusion in narrow carbon nanotubes (CNTs), a behavior that has been ...