The possibility of enhancing the frequency performance of electrochemical capacitors by tailoring the nanostructure of the carbon electrode to increase electrolyte permeability is demonstrated. Highly porous, vertically oriented carbon electrodes which are in direct electrical contact with the metallic current collector are produced via MPECVD growth on metal foils. The resulting structure has a capacitance and frequency performance between that of an electrolytic capacitor and an electrochemical capacitor. Fully packaged devices are produced on Ni and Cu current collectors and performance compared to state-of-the-art electrochemical capacitors and electrolytic capacitors. The extension of capacitive behavior to the AC regime (~100 Hz) open...
Carbon nanostructures are promising materials for electrochemical energy storage but their frequenc...
It is not an exaggeration to say that successful development of any renewable energy source (e.g., w...
Carbon nanostructures are promising materials for electrochemical energy storage but their frequenc...
The possibility of enhancing the frequency performance of electrochemical capacitors by tailoring th...
With the continuous development of science and technology and the improvement of people’s living sta...
Here we demonstrate the fine tuning of the supercapacitive performance of nanoporous carbon electrod...
International audienceElectrochemical capacitors, also called supercapacitors, store energy using ei...
Supercapacitors are energy storage devices emerging as one of the promising energy storage devices i...
Electrochemical capacitors, also called supercapacitors, store energy using either ion adsorption (e...
Electrochemical capacitors are being increasingly introduced in energy storage devices, for example,...
Electrochemical capacitors, also called supercapacitors, store energy using either ion adsorption (e...
Electrochemical capacitors, also called supercapacitors, store energy using either ion adsorption (e...
Electrochemical capacitors, also called supercapacitors, store energy using either ion adsorption (e...
Electrochemical capacitors, also called supercapacitors, store energy using either ion adsorption (e...
Electrochemical capacitors, also called supercapacitors, store energy using either ion adsorption (e...
Carbon nanostructures are promising materials for electrochemical energy storage but their frequenc...
It is not an exaggeration to say that successful development of any renewable energy source (e.g., w...
Carbon nanostructures are promising materials for electrochemical energy storage but their frequenc...
The possibility of enhancing the frequency performance of electrochemical capacitors by tailoring th...
With the continuous development of science and technology and the improvement of people’s living sta...
Here we demonstrate the fine tuning of the supercapacitive performance of nanoporous carbon electrod...
International audienceElectrochemical capacitors, also called supercapacitors, store energy using ei...
Supercapacitors are energy storage devices emerging as one of the promising energy storage devices i...
Electrochemical capacitors, also called supercapacitors, store energy using either ion adsorption (e...
Electrochemical capacitors are being increasingly introduced in energy storage devices, for example,...
Electrochemical capacitors, also called supercapacitors, store energy using either ion adsorption (e...
Electrochemical capacitors, also called supercapacitors, store energy using either ion adsorption (e...
Electrochemical capacitors, also called supercapacitors, store energy using either ion adsorption (e...
Electrochemical capacitors, also called supercapacitors, store energy using either ion adsorption (e...
Electrochemical capacitors, also called supercapacitors, store energy using either ion adsorption (e...
Carbon nanostructures are promising materials for electrochemical energy storage but their frequenc...
It is not an exaggeration to say that successful development of any renewable energy source (e.g., w...
Carbon nanostructures are promising materials for electrochemical energy storage but their frequenc...