The capillary filling speed of wetting liquids of varying viscosity and surface tension in hydrophilic nanochannels with an elastic capping layer has been analyzed. The channels, with a height just below 80 nm, are suspended by a thin flexible membrane that easily deforms due to the negative pressure which develops behind the moving meniscus. In the elastocapillary filling of the channels, two opposite effects compete: the decreased cross channel sections increase the flow resistance, while the Laplace pressure that acts as the driving force becomes more negative due to the increased meniscus curvature. Although the meniscus position shows a square root of time behavior as described by the Washburn relation, the net result of the induced be...
International audienceThis work revisits capillary filling dynamics in the regime of nanometric to s...
HypothesisLiquid can move by capillary action through interconnected porous materials, as in fabric ...
The recent advances in fabrication of nanoscale structures allow in-depth investigation of transport...
The capillary filling speed of wetting liquids of varying viscosity and surface tension in hydrophil...
We have found evidence that water plugs in hydrophilic nanochannels can be at significant negative p...
The capillary filling speed of water in nanochannels with a rectangular cross section and a height o...
We have found evidence that water plugs in hydrophilic nanochannels can be at significant negative p...
While capillary filling in channels of micrometers scale is experimentally verified to obey Washburn...
We investigated the capillary filling kinetics of deionized water in nanochannels with heights of 50...
In this paper we analyze the characteristic shape of the liquid meniscus at the fluid air interface ...
International audienceThis work revisits capillary filling dynamics in the regime of nanometric to s...
In this critical review we treat the phenomenon of capillarity in nanoscopic confinement, based on a...
International audienceControl and understanding of flows inside fabricated nanochannels is rich in p...
International audienceControl and understanding of flows inside fabricated nanochannels is rich in p...
We have found evidence that water plugs in hydrophilic nanochannels can be at significant negative p...
International audienceThis work revisits capillary filling dynamics in the regime of nanometric to s...
HypothesisLiquid can move by capillary action through interconnected porous materials, as in fabric ...
The recent advances in fabrication of nanoscale structures allow in-depth investigation of transport...
The capillary filling speed of wetting liquids of varying viscosity and surface tension in hydrophil...
We have found evidence that water plugs in hydrophilic nanochannels can be at significant negative p...
The capillary filling speed of water in nanochannels with a rectangular cross section and a height o...
We have found evidence that water plugs in hydrophilic nanochannels can be at significant negative p...
While capillary filling in channels of micrometers scale is experimentally verified to obey Washburn...
We investigated the capillary filling kinetics of deionized water in nanochannels with heights of 50...
In this paper we analyze the characteristic shape of the liquid meniscus at the fluid air interface ...
International audienceThis work revisits capillary filling dynamics in the regime of nanometric to s...
In this critical review we treat the phenomenon of capillarity in nanoscopic confinement, based on a...
International audienceControl and understanding of flows inside fabricated nanochannels is rich in p...
International audienceControl and understanding of flows inside fabricated nanochannels is rich in p...
We have found evidence that water plugs in hydrophilic nanochannels can be at significant negative p...
International audienceThis work revisits capillary filling dynamics in the regime of nanometric to s...
HypothesisLiquid can move by capillary action through interconnected porous materials, as in fabric ...
The recent advances in fabrication of nanoscale structures allow in-depth investigation of transport...