Synthesis of a very high specific surface area active carbon and its electrical double-layer capacitor properties in organic electrolytes

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Abstract

A new porous activated carbon (AC) material with very high specific surface area (3193 m2 g−1) was prepared by the carbonization of a colloidal silica-templated melamine–formaldehyde (MF) polymer composite followed by KOH-activation. Several electrical double-layer capacitor (EDLC) cells were fabricated using this AC as the electrode material. A number of organic solvent-based electrolyte formulations were examined to optimize the EDLC performance. Both high specific discharge capacitance of 130.5 F g−1 and energy density 47.9 Wh kg−1 were achieved for the initial cycling. The long-term cycling performance was also measured.

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Yue, Z., Dunya, H., Ashuri, M., Kucuk, K., Aryal, S., Antonov, S., … Mandal, B. K. (2020). Synthesis of a very high specific surface area active carbon and its electrical double-layer capacitor properties in organic electrolytes. ChemEngineering, 4(3), 1–15. https://doi.org/10.3390/chemengineering4030043

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