Electroconductive carbon felt (CF) material, having a permeable structure and significant electroconductive surface, is widely used for electrodes in numerous electrochemical applications such as redox flow batteries, fuel cells, electrochemical desalination apparatus, etc. The internal structure of CF is composed of different lengths of carbon filaments bonded together. This structure creates a large number of stochastically oriented and stochastically linked channels that have different lengths and cross sections. Therefore, the CF hydraulic permeability is similar to that of porous media and is determined by the internal empty volume and arrangement of carbon fibers. Its electroconductivity is ensured by the conductivity of the carbon fi...
Carbon felt (CF) is an inexpensive carbon-based material that is highly conductive and features extr...
The limitations of two-dimensional electrodes can be overcome by using three-dimensional materials h...
Excellent chemical inertness, good conductivity and high overpotentials for water electrolysis make ...
Electroconductive carbon felt (CF) material, having a permeable structure and significant electrocon...
The aim of this paper is the characterization of a carbon felt (Le Carbone Lorraine, RVC 4002) to b...
The objective of the present work is to study the variation of the electrode distribution potential ...
The electrochemical properties of isotropic and anisotropic carbon fibers were studied using the two...
In a flow battery setup, carbon felt materials are compressed to obtain higher performance from the ...
The active material in the electrolyte of redox flow batteries needs to be transported without hindr...
Abstract Redox flow batteries (RFBs) are an emerging electrochemical technology suita...
Redox flow batteries (RFBs) are an emerging electrochemical technology suitable for energy-intensive...
Electrochemical capacitative behavior of carbon aerogels and commercial carbon fiber cloths was stud...
Cooling circulating water drainage from Jun Zheng Plant has been disposed with a kind of electrode m...
The purpose of this paper is to develop a theoretical derivation on aligning discontinuous carbon fi...
International audienceElectrochemical behaviors of individual carbon fibers coming from carbon felts...
Carbon felt (CF) is an inexpensive carbon-based material that is highly conductive and features extr...
The limitations of two-dimensional electrodes can be overcome by using three-dimensional materials h...
Excellent chemical inertness, good conductivity and high overpotentials for water electrolysis make ...
Electroconductive carbon felt (CF) material, having a permeable structure and significant electrocon...
The aim of this paper is the characterization of a carbon felt (Le Carbone Lorraine, RVC 4002) to b...
The objective of the present work is to study the variation of the electrode distribution potential ...
The electrochemical properties of isotropic and anisotropic carbon fibers were studied using the two...
In a flow battery setup, carbon felt materials are compressed to obtain higher performance from the ...
The active material in the electrolyte of redox flow batteries needs to be transported without hindr...
Abstract Redox flow batteries (RFBs) are an emerging electrochemical technology suita...
Redox flow batteries (RFBs) are an emerging electrochemical technology suitable for energy-intensive...
Electrochemical capacitative behavior of carbon aerogels and commercial carbon fiber cloths was stud...
Cooling circulating water drainage from Jun Zheng Plant has been disposed with a kind of electrode m...
The purpose of this paper is to develop a theoretical derivation on aligning discontinuous carbon fi...
International audienceElectrochemical behaviors of individual carbon fibers coming from carbon felts...
Carbon felt (CF) is an inexpensive carbon-based material that is highly conductive and features extr...
The limitations of two-dimensional electrodes can be overcome by using three-dimensional materials h...
Excellent chemical inertness, good conductivity and high overpotentials for water electrolysis make ...