International audienceThermo-osmotic and related thermo-phoretic phenomena can be found in many situations from biology to colloid science, but the underlying molecular mechanisms remain largely unexplored. Using molecular dynamics simulations, we measured the thermo-osmosis coefficient by both mechano-caloric and thermo-osmotic routes, for different solid-liquid interfacial energies. The simulations reveal in particular the crucial role of nanoscale interfacial hydrodynamics. For non-wetting surfaces , thermo-osmotic transport is largely amplified by hydrodynamic slip at the interface. For wetting surfaces, the position of the hydrodynamic shear plane plays a key role in determining the amplitude and sign of the thermo-osmosis coefficient....
The application of a temperature gradient along a fluid-solid interface generates stresses in the fl...
International audienceWe study how solute-solid surface interaction at nanoscale influences the dire...
We report on the first microscale observation of the velocity field imposed by a nonuniform heat con...
Nanofluidics, the study of fluid transport at nanometer scales, appears as a promising field to tack...
Thermo-osmotic slip – the flow induced by a thermal gradient along a surface – is a well-known pheno...
International audienceThermo-osmotic flows – flows generated in micro and nanofluidic systems by the...
The main subject of this thesis is to examine thermo-osmotic flows, which occur on interfaces of non-...
International audienceOsmotic transport in nanoconfined aqueous electrolytes provides alternative ve...
Nano-scale fluid flow is unlike transport on the macro-scale. Pressure gradients typically dominate ...
The classical paradigm for osmotic transport has long related the induced-flow direction to the solu...
Thermal gradients lead to macroscopic fluid motion if a confining surface is present along the gradi...
Colloids, polymer-nanocomposites or polymers and liquids in contact with extended surfaces are examp...
Experimental and numerical investigations indicate that surface effects govern the transport phenome...
Especially at the nanometer scale interfaces play an important role. The effect of the wettability o...
Thermal gradients lead to macroscopic fluid motion if a confining surface is present along the gradi...
The application of a temperature gradient along a fluid-solid interface generates stresses in the fl...
International audienceWe study how solute-solid surface interaction at nanoscale influences the dire...
We report on the first microscale observation of the velocity field imposed by a nonuniform heat con...
Nanofluidics, the study of fluid transport at nanometer scales, appears as a promising field to tack...
Thermo-osmotic slip – the flow induced by a thermal gradient along a surface – is a well-known pheno...
International audienceThermo-osmotic flows – flows generated in micro and nanofluidic systems by the...
The main subject of this thesis is to examine thermo-osmotic flows, which occur on interfaces of non-...
International audienceOsmotic transport in nanoconfined aqueous electrolytes provides alternative ve...
Nano-scale fluid flow is unlike transport on the macro-scale. Pressure gradients typically dominate ...
The classical paradigm for osmotic transport has long related the induced-flow direction to the solu...
Thermal gradients lead to macroscopic fluid motion if a confining surface is present along the gradi...
Colloids, polymer-nanocomposites or polymers and liquids in contact with extended surfaces are examp...
Experimental and numerical investigations indicate that surface effects govern the transport phenome...
Especially at the nanometer scale interfaces play an important role. The effect of the wettability o...
Thermal gradients lead to macroscopic fluid motion if a confining surface is present along the gradi...
The application of a temperature gradient along a fluid-solid interface generates stresses in the fl...
International audienceWe study how solute-solid surface interaction at nanoscale influences the dire...
We report on the first microscale observation of the velocity field imposed by a nonuniform heat con...