Understanding fluid and interfacial properties in extended nanospace (10–1000 nm) is important for recent advances of nanofluidics. We studied properties of water confined in fused-silica nanochannels of 50–1500 nm sizes with two types of cross-section: (1) square channel of nanoscale width and depth, and (2) plate channel of microscale width and nanoscale depth. Viscosity and wetting property were simultaneously measured from capillary filling controlled by megapascal external pressure. The viscosity increased in extended nanospace, while the wetting property was almost constant. Especially, water in the square nanochannels had much higher viscosity than the plate channel, which can be explained considering loosely coupled water molecules ...
We investigate the hydrodynamic properties of a Lennard-Jones fluid confined to a nanochannel using ...
© 2007 American Physical Society. The electronic version of this article is the complete one and can...
Planar nanochannels fabricated by silicon based technology can provide an attractive configuration f...
Understanding and manipulating fluids at the nanoscale is a matter of growing scientific and technol...
Understanding the underlying physics of fluid behavior at nanoconfined geometries is essential to ad...
In this critical review we treat the phenomenon of capillarity in nanoscopic confinement, based on a...
Understanding and manipulating fluids at the nanoscale is a matter of growing scientific and technol...
Understanding and manipulating fluids at the nanoscale is a matter of growing scientific and technol...
The rate of water flow through hydrophobic nanocapillaries is greatly enhanced as compared to that e...
Liquid imbibition, the capillary-pressure-driven flow of a liquid into a gas, provides a mechanism f...
International audienceThis work revisits capillary filling dynamics in the regime of nanometric to s...
We experimentally explore pressure driven flow of water and n hexane across nanoporous silica Vycor...
We experimentally explore pressure driven flow of water and n hexane across nanoporous silica Vycor...
We experimentally explore pressure driven flow of water and n hexane across nanoporous silica Vycor...
International audienceIn the past few decades great effort has been devoted to the study of water co...
We investigate the hydrodynamic properties of a Lennard-Jones fluid confined to a nanochannel using ...
© 2007 American Physical Society. The electronic version of this article is the complete one and can...
Planar nanochannels fabricated by silicon based technology can provide an attractive configuration f...
Understanding and manipulating fluids at the nanoscale is a matter of growing scientific and technol...
Understanding the underlying physics of fluid behavior at nanoconfined geometries is essential to ad...
In this critical review we treat the phenomenon of capillarity in nanoscopic confinement, based on a...
Understanding and manipulating fluids at the nanoscale is a matter of growing scientific and technol...
Understanding and manipulating fluids at the nanoscale is a matter of growing scientific and technol...
The rate of water flow through hydrophobic nanocapillaries is greatly enhanced as compared to that e...
Liquid imbibition, the capillary-pressure-driven flow of a liquid into a gas, provides a mechanism f...
International audienceThis work revisits capillary filling dynamics in the regime of nanometric to s...
We experimentally explore pressure driven flow of water and n hexane across nanoporous silica Vycor...
We experimentally explore pressure driven flow of water and n hexane across nanoporous silica Vycor...
We experimentally explore pressure driven flow of water and n hexane across nanoporous silica Vycor...
International audienceIn the past few decades great effort has been devoted to the study of water co...
We investigate the hydrodynamic properties of a Lennard-Jones fluid confined to a nanochannel using ...
© 2007 American Physical Society. The electronic version of this article is the complete one and can...
Planar nanochannels fabricated by silicon based technology can provide an attractive configuration f...