International audienceOsmosis describes the flow of water across semipermeable membranes powered by the chemical free energy extracted from salinity gradients. While osmosis can be expressed in simple terms via the van 't Hoff ideal gas formula for the osmotic pressure, it is a complex phenomenon taking its roots in the subtle interactions occurring at the scale of the membrane nanopores. Here we use new opportunities offered by nanofluidic systems to create an osmotic diode exhibiting asymmetric water flow under reversal of osmotic driving. We show that a surface charge asymmetry built on a nanochannel surface leads to nonlinear couplings between water flow and the ion dynamics, which are capable of water flow rectification. This phenomeno...
We show that an electric field parallel to an electrically neutral surface can generate flow of elec...
Selectivity towards positive and negative ions in nanopores is often associated with electroosmotic ...
Nanofluidics marks the emergence of promising new technologies for the production of blue energies. ...
International audienceOsmosis across membranes is intrinsically associated with the concept of semip...
Asymmetrically shaped nanopores have been shown to rectify the ionic current flowing through pores i...
Nanofluidic osmotic power, which converts a difference in salinity between brine and fresh water int...
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...
Development of nanotechnology had led to novel and advanced methods in various fields of science and...
Understanding the fluid structure and behavior in nanoscale confinements is of major importance in a...
Diffusioosmotic flows of electrolyte solutions in slit nanochannels with homogeneous surface charges...
Diffusioosmotic flows of electrolyte solutions in slit nanochannels with homogeneous surface charges...
Understanding the fluid structure and behavior in nanoscale confinements is of major impor-tance in ...
Single nanopores have attracted much scientific interest because of their versatile applications. Th...
Specific molecular interactions underlie unexpected and useful phenomena in nanofluidic systems, but...
We show that an electric field parallel to an electrically neutral surface can generate flow of elec...
Selectivity towards positive and negative ions in nanopores is often associated with electroosmotic ...
Nanofluidics marks the emergence of promising new technologies for the production of blue energies. ...
International audienceOsmosis across membranes is intrinsically associated with the concept of semip...
Asymmetrically shaped nanopores have been shown to rectify the ionic current flowing through pores i...
Nanofluidic osmotic power, which converts a difference in salinity between brine and fresh water int...
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...
Development of nanotechnology had led to novel and advanced methods in various fields of science and...
Understanding the fluid structure and behavior in nanoscale confinements is of major importance in a...
Diffusioosmotic flows of electrolyte solutions in slit nanochannels with homogeneous surface charges...
Diffusioosmotic flows of electrolyte solutions in slit nanochannels with homogeneous surface charges...
Understanding the fluid structure and behavior in nanoscale confinements is of major impor-tance in ...
Single nanopores have attracted much scientific interest because of their versatile applications. Th...
Specific molecular interactions underlie unexpected and useful phenomena in nanofluidic systems, but...
We show that an electric field parallel to an electrically neutral surface can generate flow of elec...
Selectivity towards positive and negative ions in nanopores is often associated with electroosmotic ...
Nanofluidics marks the emergence of promising new technologies for the production of blue energies. ...