An energy saving Leidenfrost levitation method is introduced to transport micro-droplets with virtually frictionless contact between the liquid and solid substrate. By micro-engineering the heating units, selective areas of the whole substrate can be electro-thermally activated. A droplet can be levitated as a result of the Leidenfrost effect, and further transported when the substrate is tilted slightly. The selective electro-heating produces a uniform temperature distribution on the heating units within 1 s, in response to a triggering voltage. Alongside these experimental observations, finite element simulations are conducted to understand the temperature profile of the selective heated substrate, and also generate phase diagrams to veri...
The mobility of Leidenfrost drop has been exploited for the manipulation of drop motions. In the cla...
Evaporation of liquid microdroplets that fall on a solid surface with the temperature of below the L...
It is well known that a liquid drop released over a very hot surface generally does not contact the ...
An energy saving Leidenfrost levitation method is introduced to transport micro-droplets with virtua...
The Leidenfrost effect allows droplets to be transported on a virtually frictionless layer of vapor ...
Systems and methods are described for propelling a liquid droplet in a Leidenforst state. A microflu...
In this work, an “Energy Barrier” was created to control the motion of Leidenfrost droplets. This ba...
The transport of small amounts of liquids on solid surfaces is fundamental for microfluidics applica...
In the Leidenfrost effect, a liquid drop stands above a very hot substrate and levitates over a bed ...
We theoretically investigate the behavior of Leidenfrost drops on a flat substrate submitted to a ho...
The transport of small amounts of liquids on solid surfaces is fundamental for microfluidics applica...
International audienceWe experimentally investigate the effect of an electric field applied between ...
The technological revolution has driven the need for faster microprocessors. In order to fabricate f...
Liquid delivery systems are important in microfluidic applications. In this paper, we report a high-...
As discovered by Leidenfrost, liquids released over very hot solids levitate on a thin cushion of th...
The mobility of Leidenfrost drop has been exploited for the manipulation of drop motions. In the cla...
Evaporation of liquid microdroplets that fall on a solid surface with the temperature of below the L...
It is well known that a liquid drop released over a very hot surface generally does not contact the ...
An energy saving Leidenfrost levitation method is introduced to transport micro-droplets with virtua...
The Leidenfrost effect allows droplets to be transported on a virtually frictionless layer of vapor ...
Systems and methods are described for propelling a liquid droplet in a Leidenforst state. A microflu...
In this work, an “Energy Barrier” was created to control the motion of Leidenfrost droplets. This ba...
The transport of small amounts of liquids on solid surfaces is fundamental for microfluidics applica...
In the Leidenfrost effect, a liquid drop stands above a very hot substrate and levitates over a bed ...
We theoretically investigate the behavior of Leidenfrost drops on a flat substrate submitted to a ho...
The transport of small amounts of liquids on solid surfaces is fundamental for microfluidics applica...
International audienceWe experimentally investigate the effect of an electric field applied between ...
The technological revolution has driven the need for faster microprocessors. In order to fabricate f...
Liquid delivery systems are important in microfluidic applications. In this paper, we report a high-...
As discovered by Leidenfrost, liquids released over very hot solids levitate on a thin cushion of th...
The mobility of Leidenfrost drop has been exploited for the manipulation of drop motions. In the cla...
Evaporation of liquid microdroplets that fall on a solid surface with the temperature of below the L...
It is well known that a liquid drop released over a very hot surface generally does not contact the ...