The electrochemical behaviour of a superporous activated carbon (named as ANK3) with a tailored porosity (high apparent specific surface area and a high volume of micropores with an average pore size of around 1.4 nm) is analysed in different non-aqueous electrolytes. ANK3 shows very high capacitance (higher than 160 F g−1) values in solvent-free electrolytes at different temperatures (20, 40 and 60 °C) as well as in 1 M Et4N BF4/PC, 1 M PYR14 BF4/PC and 1 M PYR14 TFSI/PC. The tailored porosity of the ANK3, makes possible to obtain very high capacitance values, making this superporous activated carbon a promising candidate to be used as electrode for electrochemical capacitors using both organic and ionic liquid electrolytes. It is also con...
International audienceLightweight, low-cost supercapacitors with the capability of rapidly storing a...
International audienceWe have developed high performance supercapacitor electrodes while demonstrati...
International audienceSoft-and salt-templating methods have been combined to obtain highly microporo...
This paper presents results about the electrochemical and cycling characterizations of a supercapaci...
International audienceProtic ionic liquids (PILs) were implemented as electrolytes for supercapacito...
International audienceA remarkable capacitance of 180 F·g−1 (at 5 mV·s−1) in solvent-free room-tempe...
The electrochemical performance of nitrogen-doped and non-doped superporous activated carbons as ele...
Variation of specific capacitance versus current density is studied for microporous carbons. Althoug...
The use of ionic liquid (IL) electrolytes promises to improve the energy density of electrochemical ...
The role played by carbon porosity and electrolyte chemistry in the development of double-layer supe...
In this study, porous activated carbons (AC) were synthesized by an environmentally friendly techniq...
This work shows the potential application of carbon materials prepared by three different ionic liqu...
Supercapacitors are generally high-power devices, yet their energy is low in contrast to batteries. ...
Porous activated carbon is an important electrode material for devices such as supercapacitors, batt...
International audienceLightweight, low-cost supercapacitors with the capability of rapidly storing a...
International audienceWe have developed high performance supercapacitor electrodes while demonstrati...
International audienceSoft-and salt-templating methods have been combined to obtain highly microporo...
This paper presents results about the electrochemical and cycling characterizations of a supercapaci...
International audienceProtic ionic liquids (PILs) were implemented as electrolytes for supercapacito...
International audienceA remarkable capacitance of 180 F·g−1 (at 5 mV·s−1) in solvent-free room-tempe...
The electrochemical performance of nitrogen-doped and non-doped superporous activated carbons as ele...
Variation of specific capacitance versus current density is studied for microporous carbons. Althoug...
The use of ionic liquid (IL) electrolytes promises to improve the energy density of electrochemical ...
The role played by carbon porosity and electrolyte chemistry in the development of double-layer supe...
In this study, porous activated carbons (AC) were synthesized by an environmentally friendly techniq...
This work shows the potential application of carbon materials prepared by three different ionic liqu...
Supercapacitors are generally high-power devices, yet their energy is low in contrast to batteries. ...
Porous activated carbon is an important electrode material for devices such as supercapacitors, batt...
International audienceLightweight, low-cost supercapacitors with the capability of rapidly storing a...
International audienceWe have developed high performance supercapacitor electrodes while demonstrati...
International audienceSoft-and salt-templating methods have been combined to obtain highly microporo...