By sufficiently heating a solid, a sessile drop can be prevented from contacting the surface by floating on its own vapour. While certain aspects of the dynamics of this so-called Leidenfrost effect are understood, it is still unclear why a minimum temperature (the Leidenfrost temperature TL) is required before the effect manifests itself, what properties affect this temperature, and what physical principles govern it. Here we investigate the dependence of the Leidenfrost temperature on the ambient conditions: first, by increasing (decreasing) the ambient pressure, we find an increase (decrease) in TL. We propose a rescaling of the temperature which allows us to collapse the curves for various organic liquids and water onto a single master ...
Volatile drops deposited on a hot solid can levitate on a cushion of their own vapor, without contac...
A specific experimental set-up has been installed in a large centrifuge facility in order to study d...
The Leidenfrost effect is studied for drops on a superheated yet non-volatile liquid pool, and contr...
By sufficiently heating a solid, a sessile drop can be prevented from contacting the surface by floa...
The Leidenfrost effect is a phenomenon in which a liquid, poured onto a surface significantly hotter...
International audienceThe Leidenfrost effect is a phenomenon in which a liquid, poured onto a surfac...
In the Leidenfrost effect, a liquid drop stands above a very hot substrate and levitates over a bed ...
We show that a volatile liquid drop placed at the surface of a nonvolatile liquid pool warmer than t...
International audienceSuperhydrophobicity (observed at room temperature) and Leidenfrost phenomenon ...
When a liquid drop is placed on a highly superheated surface, it can be levitated by its own vapour....
It is well known that a liquid drop released over a very hot surface generally does not contact the ...
Temperature control is omnipresent in today’s life: from keeping your fridge cold, maintaining a roo...
Droplets can be levitated by their own vapour when placed onto a superheated plate (the Leidenfrost ...
We theoretically investigate the behavior of Leidenfrost drops on a flat substrate submitted to a ho...
We study experimentally the Leidenfrost phenomena of liquid droplets levitating above the surface of...
Volatile drops deposited on a hot solid can levitate on a cushion of their own vapor, without contac...
A specific experimental set-up has been installed in a large centrifuge facility in order to study d...
The Leidenfrost effect is studied for drops on a superheated yet non-volatile liquid pool, and contr...
By sufficiently heating a solid, a sessile drop can be prevented from contacting the surface by floa...
The Leidenfrost effect is a phenomenon in which a liquid, poured onto a surface significantly hotter...
International audienceThe Leidenfrost effect is a phenomenon in which a liquid, poured onto a surfac...
In the Leidenfrost effect, a liquid drop stands above a very hot substrate and levitates over a bed ...
We show that a volatile liquid drop placed at the surface of a nonvolatile liquid pool warmer than t...
International audienceSuperhydrophobicity (observed at room temperature) and Leidenfrost phenomenon ...
When a liquid drop is placed on a highly superheated surface, it can be levitated by its own vapour....
It is well known that a liquid drop released over a very hot surface generally does not contact the ...
Temperature control is omnipresent in today’s life: from keeping your fridge cold, maintaining a roo...
Droplets can be levitated by their own vapour when placed onto a superheated plate (the Leidenfrost ...
We theoretically investigate the behavior of Leidenfrost drops on a flat substrate submitted to a ho...
We study experimentally the Leidenfrost phenomena of liquid droplets levitating above the surface of...
Volatile drops deposited on a hot solid can levitate on a cushion of their own vapor, without contac...
A specific experimental set-up has been installed in a large centrifuge facility in order to study d...
The Leidenfrost effect is studied for drops on a superheated yet non-volatile liquid pool, and contr...