The rapid and efficient exchange of ions between porous electrodes and aqueous solutions is important in many applications, such as electrical energy storage by supercapacitors, water desalination and purification by capacitive deionization, and capacitive extraction of renewable energy from a salinity difference. Here, we present a unified mean-field theory for capacitive charging and desalination by ideally polarizable porous electrodes (without Faradaic reactions or specific adsorption of ions) valid in the limit of thin double layers (compared to typical pore dimensions). We illustrate the theory for the case of a dilute, symmetric, binary electrolyte using the Gouy-Chapman-Stern (GCS) model of the double layer, for which simple formula...
We present a porous electrode theory for capacitive deionization with electrodes containing nanopart...
We present a porous electrode theory for capacitive deionization with electrodes containing nanopart...
In a combined experimental and theoretical study, we show that capacitive charging of porous electro...
The rapid and efficient exchange of ions between porous electrodes and aqueous solutions is importan...
ABSTRACT: Ion transport in porous conductive materials is of great importance in a variety of electr...
Energy storage in porous capacitor materials, capacitive deionization (CDI) for water desalination, ...
Ion transport in porous conductive materials is of great importance in a variety of electrochemical ...
ABSTRACT: A model of the electro-diffusion of ions in porous electrodes is applied to analyze the dy...
In capacitive deionization (CDI), water is desalinated by storing ions in electrical double layers (...
In capacitive deionization (CDI), water is desalinated by storing ions in electrical double layers (...
<p>In capacitive deionization (CDI), water is desalinated by storing ions in electrical double layer...
Capacitive deionization is a desalination technology to remove ions from aqueous solution in a cycli...
Capacitive deionization is a desalination technology to remove ions from aqueous solution in a cycli...
Capacitive deionization is a desalination technology to remove ions from aqueous solution in a cycli...
In capacitive deionization (CDI) water is desalinated by applying an electrical field between two po...
We present a porous electrode theory for capacitive deionization with electrodes containing nanopart...
We present a porous electrode theory for capacitive deionization with electrodes containing nanopart...
In a combined experimental and theoretical study, we show that capacitive charging of porous electro...
The rapid and efficient exchange of ions between porous electrodes and aqueous solutions is importan...
ABSTRACT: Ion transport in porous conductive materials is of great importance in a variety of electr...
Energy storage in porous capacitor materials, capacitive deionization (CDI) for water desalination, ...
Ion transport in porous conductive materials is of great importance in a variety of electrochemical ...
ABSTRACT: A model of the electro-diffusion of ions in porous electrodes is applied to analyze the dy...
In capacitive deionization (CDI), water is desalinated by storing ions in electrical double layers (...
In capacitive deionization (CDI), water is desalinated by storing ions in electrical double layers (...
<p>In capacitive deionization (CDI), water is desalinated by storing ions in electrical double layer...
Capacitive deionization is a desalination technology to remove ions from aqueous solution in a cycli...
Capacitive deionization is a desalination technology to remove ions from aqueous solution in a cycli...
Capacitive deionization is a desalination technology to remove ions from aqueous solution in a cycli...
In capacitive deionization (CDI) water is desalinated by applying an electrical field between two po...
We present a porous electrode theory for capacitive deionization with electrodes containing nanopart...
We present a porous electrode theory for capacitive deionization with electrodes containing nanopart...
In a combined experimental and theoretical study, we show that capacitive charging of porous electro...