The electrochemical performance of nitrogen-doped and non-doped superporous activated carbons as electrodes for supercapacitors was assessed in organic and ionic liquid-based electrolytes. The nitrogen functionalization was carried out through post-modification treatments at mild conditions to produce N-doped activated carbons that preserve the microporosity of the pristine carbon material. The electrodes based on these materials provide large capacitance values (up to 150–180 F/g) in both 1 M Pyr14TFSI/PC and 1 M Pyr14BF4/PC due to their tailored porous texture, given by their well-developed microporosity and low mesopore volume. The electrochemical double layer capacitors based on these materials displayed outstanding capacitance (37–40 F...
Nanoporous carbons with graphitic domains were synthesized from a polymer containing sulfur and nitr...
Supercapacitors are generally high-power devices, yet their energy is low in contrast to batteries. ...
This work shows the potential application of carbon materials prepared by three different ionic liqu...
Nitrogen functionalization of a highly microporous activated carbon (SBET > 3000 m2/g), to be used a...
Nitrogen functionalization (ca. 4 at. % NXPS) of a highly microporous activated carbon (SBET > 3000 ...
Supercapacitors combine efficient electrical energy storage and performance stability based on fast ...
The electrochemical behaviour of a superporous activated carbon (named as ANK3) with a tailored poro...
International audienceProtic ionic liquids (PILs) were implemented as electrolytes for supercapacito...
N-doped activated carbon fibers have been synthesized by using chemically polymerized aniline as sou...
This paper presents results about the electrochemical and cycling characterizations of a supercapaci...
Recently, “Water-in-salt” electrolyte has been reported to extend the working voltage of aqueous sup...
Due to ever-increasing global energy demands and dwindling resources, there is a growing need to dev...
Supercapacitor is the best potential candidate of the energy storage system due to the superior cha...
Electrochemical double layer capacitors (EDLCs) are a category of supercapacitors; devices that stor...
Electrochemical applications of carbon are wide and varied. They are used as electrodes for batterie...
Nanoporous carbons with graphitic domains were synthesized from a polymer containing sulfur and nitr...
Supercapacitors are generally high-power devices, yet their energy is low in contrast to batteries. ...
This work shows the potential application of carbon materials prepared by three different ionic liqu...
Nitrogen functionalization of a highly microporous activated carbon (SBET > 3000 m2/g), to be used a...
Nitrogen functionalization (ca. 4 at. % NXPS) of a highly microporous activated carbon (SBET > 3000 ...
Supercapacitors combine efficient electrical energy storage and performance stability based on fast ...
The electrochemical behaviour of a superporous activated carbon (named as ANK3) with a tailored poro...
International audienceProtic ionic liquids (PILs) were implemented as electrolytes for supercapacito...
N-doped activated carbon fibers have been synthesized by using chemically polymerized aniline as sou...
This paper presents results about the electrochemical and cycling characterizations of a supercapaci...
Recently, “Water-in-salt” electrolyte has been reported to extend the working voltage of aqueous sup...
Due to ever-increasing global energy demands and dwindling resources, there is a growing need to dev...
Supercapacitor is the best potential candidate of the energy storage system due to the superior cha...
Electrochemical double layer capacitors (EDLCs) are a category of supercapacitors; devices that stor...
Electrochemical applications of carbon are wide and varied. They are used as electrodes for batterie...
Nanoporous carbons with graphitic domains were synthesized from a polymer containing sulfur and nitr...
Supercapacitors are generally high-power devices, yet their energy is low in contrast to batteries. ...
This work shows the potential application of carbon materials prepared by three different ionic liqu...