International audienceThermo-osmotic flows – flows generated in micro and nanofluidic systems by thermal gradients – could provide an alternative approach to harvest waste heat. However, such use would require massive thermo-osmotic flows, which are up to now only predicted for special and expensive materials. Thus, there is an urgent need to design affordable nanofluidic systems displaying large thermo-osmotic coefficients. In this paper, we propose a general model for thermo-osmosis of aqueous electrolytes in charged nanofluidic channels, taking into account hydrodynamic slip, together with the different solvent and solute contributions to the thermo-osmotic response. We apply this model to a wide range of systems by studying the effects ...
Nanofluidics marks the emergence of promising new technologies for the production of blue energies. ...
Biological mechanisms offer significant improvement in the efficiency of next generation energv syst...
We report on the first microscale observation of the velocity field imposed by a nonuniform heat con...
International audienceThermo-osmotic and related thermo-phoretic phenomena can be found in many situ...
We show that an electric field parallel to an electrically neutral surface can generate flow of elec...
International audienceOsmosis describes the flow of water across semipermeable membranes powered by ...
Electro-osmotic flow (EOF) is widely used in microfluidic systems. Here, we report an analysis of th...
The main subject of this thesis is to examine thermo-osmotic flows, which occur on interfaces of non-...
Nanofluidic osmotic power, which converts a difference in salinity between brine and fresh water int...
International audienceOsmosis across membranes is intrinsically associated with the concept of semip...
Nanofluidics, the study of fluid transport at nanometer scales, appears as a promising field to tack...
We demonstrate, using molecular-dynamics computer simulations, the strong influence of surface wetta...
52 pages, 4 figuresOur Society is in high need of alternatives to fossil fuels. Nanoporous systems f...
International audienceWe study how solute-solid surface interaction at nanoscale influences the dire...
The classical paradigm for osmotic transport has long related the induced-flow direction to the solu...
Nanofluidics marks the emergence of promising new technologies for the production of blue energies. ...
Biological mechanisms offer significant improvement in the efficiency of next generation energv syst...
We report on the first microscale observation of the velocity field imposed by a nonuniform heat con...
International audienceThermo-osmotic and related thermo-phoretic phenomena can be found in many situ...
We show that an electric field parallel to an electrically neutral surface can generate flow of elec...
International audienceOsmosis describes the flow of water across semipermeable membranes powered by ...
Electro-osmotic flow (EOF) is widely used in microfluidic systems. Here, we report an analysis of th...
The main subject of this thesis is to examine thermo-osmotic flows, which occur on interfaces of non-...
Nanofluidic osmotic power, which converts a difference in salinity between brine and fresh water int...
International audienceOsmosis across membranes is intrinsically associated with the concept of semip...
Nanofluidics, the study of fluid transport at nanometer scales, appears as a promising field to tack...
We demonstrate, using molecular-dynamics computer simulations, the strong influence of surface wetta...
52 pages, 4 figuresOur Society is in high need of alternatives to fossil fuels. Nanoporous systems f...
International audienceWe study how solute-solid surface interaction at nanoscale influences the dire...
The classical paradigm for osmotic transport has long related the induced-flow direction to the solu...
Nanofluidics marks the emergence of promising new technologies for the production of blue energies. ...
Biological mechanisms offer significant improvement in the efficiency of next generation energv syst...
We report on the first microscale observation of the velocity field imposed by a nonuniform heat con...