© 2019 American Physical Society. In a circular channel passing overlimiting current (faster than diffusion), transient vortices of bulk electroconvection are observed in a salt-depleted region within the horizontal plane. The spatiotemporal evolution of the salt concentration is directly visualized, revealing the propagation of a deionization shock wave driven by bulk electroconvection up to millimeter scales. This mechanism leads to quantitatively similar dynamics as for deionization shocks in charged porous media, which are driven instead by surface conduction and electro-osmotic flow at micron to nanometer scales. The remarkable generality of deionization shocks under overlimiting current could be used to manipulate ion transport in com...
We revisit the classical problem of diffusion-limited ion transport to a membrane (or electrode) by ...
We present a study of the interplay among electric charging rate, capacitance, salt removal, and mas...
ABSTRACT: Ion transport in porous conductive materials is of great importance in a variety of electr...
Salt transport in bulk electrolytes is limited by diffusion and advection, but in microstructures wi...
Most electrochemical processes, such as electrodialysis, are limited by diffusion, but in porous med...
Shock electrodialysis (shock ED), an emerging electrokinetic process for water purification, leverag...
Rising global demand for potable water is driving innovation in water treatment methods. Shock elect...
Rising global demand for potable water is driving innovation in water treatment methods. Shock elect...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Chemical Engineering, 2016.This...
Cell-cycling performance in capacitive deionization (CDI) can suffer from various charge-efficiency ...
The rapidly increasing world population will dramatically expand the future global freshwater requir...
Direct evidence is provided for the transition from surface conduction (SC) to electro-osmotic flow ...
In capacitive deionization (CDI), water is desalinated by storing ions in electrical double layers (...
The development of energy and infrastructure efficient water purification systems is among the most ...
In water desalination by electrodialysis, the current density i cannot exceed specific constraints,...
We revisit the classical problem of diffusion-limited ion transport to a membrane (or electrode) by ...
We present a study of the interplay among electric charging rate, capacitance, salt removal, and mas...
ABSTRACT: Ion transport in porous conductive materials is of great importance in a variety of electr...
Salt transport in bulk electrolytes is limited by diffusion and advection, but in microstructures wi...
Most electrochemical processes, such as electrodialysis, are limited by diffusion, but in porous med...
Shock electrodialysis (shock ED), an emerging electrokinetic process for water purification, leverag...
Rising global demand for potable water is driving innovation in water treatment methods. Shock elect...
Rising global demand for potable water is driving innovation in water treatment methods. Shock elect...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Chemical Engineering, 2016.This...
Cell-cycling performance in capacitive deionization (CDI) can suffer from various charge-efficiency ...
The rapidly increasing world population will dramatically expand the future global freshwater requir...
Direct evidence is provided for the transition from surface conduction (SC) to electro-osmotic flow ...
In capacitive deionization (CDI), water is desalinated by storing ions in electrical double layers (...
The development of energy and infrastructure efficient water purification systems is among the most ...
In water desalination by electrodialysis, the current density i cannot exceed specific constraints,...
We revisit the classical problem of diffusion-limited ion transport to a membrane (or electrode) by ...
We present a study of the interplay among electric charging rate, capacitance, salt removal, and mas...
ABSTRACT: Ion transport in porous conductive materials is of great importance in a variety of electr...