Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
7851885 | Carbon | 2015 | 13 Pages |
Abstract
A simple one-step synthesis methodology for the fabrication of mesoporous carbons with an excellent performance as supercapacitor electrodes is presented. The procedure is based on the carbonization of non-alkali organic salts such as citrate salts of iron, zinc or calcium. The carbonized products contain numerous inorganic nanoparticles (i.e. Fe, ZnO or CaO) embedded within a carbonaceous matrix. These nanoparticles act as endotemplate, which when removed, leaves a mesoporous network. The resulting carbon samples have a large specific surface area up to â¼1600Â m2Â gâ1 and a porosity made up almost exclusively of mesopores. An appropriate heat-treatment of these materials with melamine allows the synthesis of N-doped carbons which have a high nitrogen content (â¼8-9Â wt.%), a large specific surface area and retain the mesoporous structure. The mesoporous carbon samples were employed as electrode materials in supercapacitors. They exhibit specific capacitances of 200-240Â FÂ gâ1 in 1Â M H2SO4 and 100-130Â FÂ gâ1 in EMImTFSI/AN. More importantly, the carbon samples possess a good capacitance retention in both electrolytes (>50% in H2SO4 and >80% in EMImTFSI/AN at 100Â AÂ gâ1) owing to their mesoporous structure which facilitates the penetration and transportation of ions.
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Authors
G.A. Ferrero, M. Sevilla, A.B. Fuertes,