When a charged membrane separates two salt solutions of different concentrations, a potential difference appears due to interfacial Donnan equilibrium and the diffusion junction. Here, we report a new mechanism for the generation of a membrane potential in polarizable conductive membranes via an induced surface charge. It results from an electric field generated by the diffusion of ions with different mobilities. For uncharged membranes, this effect strongly enhances the diffusion potential and makes it highly sensitive to the ion mobilities ratio, electrolyte concentration, and pore size. Theoretical predictions on the basis of the space-charge model extended to polarizable nanopores fully agree with experimental measurements in KCl and Na...
Microfluidic devices utilize ion concentration polarization (ICP) phenomena for a variety of applica...
High-performance osmotic energy conversion requires both large ionic throughput and high ionic selec...
This work reports a comprehensive theoretical study of the transport-rectification properties of cyl...
We report a new mechanism for the generation of membrane potential in polarizable nanoporous membran...
The diffusion of binary aqueous electrolytes through nanopores with dielectric as well as conductive...
The impact of potential applied to the conductive surface of nanoporous membrane on the membrane pot...
Ultrathin membranes with nanoporous conduits show promise for ionic separations and desalination app...
11 figures, 11 pagesLiquid transport through nanopore is central into many applications, from water ...
In this work, we develop an extended uniform potential (UP) model for a membrane nanopore by includi...
Selectivity toward positive and negative ions in nanopores is often associated with electroosmotic f...
The pressure–driven electrolyte transport through nanofiltration membrane pores with specified wall ...
[[abstract]]Nanopores functionalized with synthetic or biological polyelectrolyte (PE) brushes have ...
The pressure-driven electrolyte transport through nanofiltration membrane pores with constant surfac...
In charged nanopores, ionic diffusion current reflects the ionic selectivity and ionic permeability ...
Microfluidic devices utilize ion concentration polarization (ICP) phenomena for a variety of applica...
Microfluidic devices utilize ion concentration polarization (ICP) phenomena for a variety of applica...
High-performance osmotic energy conversion requires both large ionic throughput and high ionic selec...
This work reports a comprehensive theoretical study of the transport-rectification properties of cyl...
We report a new mechanism for the generation of membrane potential in polarizable nanoporous membran...
The diffusion of binary aqueous electrolytes through nanopores with dielectric as well as conductive...
The impact of potential applied to the conductive surface of nanoporous membrane on the membrane pot...
Ultrathin membranes with nanoporous conduits show promise for ionic separations and desalination app...
11 figures, 11 pagesLiquid transport through nanopore is central into many applications, from water ...
In this work, we develop an extended uniform potential (UP) model for a membrane nanopore by includi...
Selectivity toward positive and negative ions in nanopores is often associated with electroosmotic f...
The pressure–driven electrolyte transport through nanofiltration membrane pores with specified wall ...
[[abstract]]Nanopores functionalized with synthetic or biological polyelectrolyte (PE) brushes have ...
The pressure-driven electrolyte transport through nanofiltration membrane pores with constant surfac...
In charged nanopores, ionic diffusion current reflects the ionic selectivity and ionic permeability ...
Microfluidic devices utilize ion concentration polarization (ICP) phenomena for a variety of applica...
Microfluidic devices utilize ion concentration polarization (ICP) phenomena for a variety of applica...
High-performance osmotic energy conversion requires both large ionic throughput and high ionic selec...
This work reports a comprehensive theoretical study of the transport-rectification properties of cyl...