Materials which possess high specific capacitance in device configuration with low cost are essential for viable application in supercapacitors. Herein, a flexible high-energy supercapacitor device was fabricated using porous activated high-surface-area carbon derived from aloe leaf (Aloe vera) as a precursor. The A. vera derived activated carbon showed mesoporous nature with high specific surface area of ∼1890 m<sup>2</sup>/g. A high specific capacitance of 410 and 306 F/g was achieved in three-electrode and symmetric two-electrode system configurations in aqueous electrolyte, respectively. The fabricated all-solid-state device showed a high specific capacitance of 244 F/g with an energy density of 8.6 Wh/kg. In an ionic liquid electrolyte...
Biomass materials are perceived as sustainable, carbon-rich precursors for the fabrication of carbon...
In this research study, we have presented a simple two-step synthesis path to producing a cost-effec...
International audienceA remarkable capacitance of 180 F·g−1 (at 5 mV·s−1) in solvent-free room-tempe...
In this study, a symmetric ionic-liquid based supercapacitor was assembled with porous carbon derive...
Carbon-ionic liquid (C-IL) supercapacitors (SCs) promise to provide high capacitance and high operat...
Supercapacitors are generally high-power devices, yet their energy is low in contrast to batteries. ...
Very high surface area activated carbons (AC) are synthesized from pine cone petals by a chemical ac...
Supercapacitor (SC) with organic electrolyte or ionic liquid (IL) electrolyte can generally store/re...
International audienceWe have developed high performance supercapacitor electrodes while demonstrati...
Highly porous submicron activated carbon fibers (ACFs) were robustly generated from low sulfonated a...
Carbon from biomass as an active material for supercapacitor electrodes has attracted much interest ...
Supercapacitors, also called ultracapacitors or electrochemical capacitors, store electrical charge ...
The supercapacitor technology is maturing to play an important role in the today’s hybrid electrical...
Hydrothermal carbonization followed by chemical activation is utilized to convert paper pulp mill sl...
Supercapacitors are promising energy storage devices compared to batteries due to their long cycle l...
Biomass materials are perceived as sustainable, carbon-rich precursors for the fabrication of carbon...
In this research study, we have presented a simple two-step synthesis path to producing a cost-effec...
International audienceA remarkable capacitance of 180 F·g−1 (at 5 mV·s−1) in solvent-free room-tempe...
In this study, a symmetric ionic-liquid based supercapacitor was assembled with porous carbon derive...
Carbon-ionic liquid (C-IL) supercapacitors (SCs) promise to provide high capacitance and high operat...
Supercapacitors are generally high-power devices, yet their energy is low in contrast to batteries. ...
Very high surface area activated carbons (AC) are synthesized from pine cone petals by a chemical ac...
Supercapacitor (SC) with organic electrolyte or ionic liquid (IL) electrolyte can generally store/re...
International audienceWe have developed high performance supercapacitor electrodes while demonstrati...
Highly porous submicron activated carbon fibers (ACFs) were robustly generated from low sulfonated a...
Carbon from biomass as an active material for supercapacitor electrodes has attracted much interest ...
Supercapacitors, also called ultracapacitors or electrochemical capacitors, store electrical charge ...
The supercapacitor technology is maturing to play an important role in the today’s hybrid electrical...
Hydrothermal carbonization followed by chemical activation is utilized to convert paper pulp mill sl...
Supercapacitors are promising energy storage devices compared to batteries due to their long cycle l...
Biomass materials are perceived as sustainable, carbon-rich precursors for the fabrication of carbon...
In this research study, we have presented a simple two-step synthesis path to producing a cost-effec...
International audienceA remarkable capacitance of 180 F·g−1 (at 5 mV·s−1) in solvent-free room-tempe...