Continuous carbide-derived carbon films with high volumetric capacitance

Monolithic porous carbon film has a great potential for integrated supercapacitors due to no polymer binder, reduced macropore volume, and good adhesion between current collector and active material. It is demonstrated that continuous carbide-derived carbon (CDC) films can be synthesized on various...

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Veröffentlicht in:Energy & environmental science 2011-01, Vol.4 (1), p.135-138
Hauptverfasser: Heon, Min, Lofland, Samuel, Applegate, James, Nolte, Robert, Cortes, Emma, Hettinger, Jeffrey D, Taberna, Pierre-Louis, Simon, Patrice, Huang, Peihua, Brunet, Magali, Gogotsi, Yury
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Sprache:eng
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Zusammenfassung:Monolithic porous carbon film has a great potential for integrated supercapacitors due to no polymer binder, reduced macropore volume, and good adhesion between current collector and active material. It is demonstrated that continuous carbide-derived carbon (CDC) films can be synthesized on various substrates by dry etching. CDC films show high volumetric capacitance of ∼180 F cm −3 in 1.5 M TEABF 4 /acetonitrile electrolyte. Continuous carbide-derived carbon film electrodes were synthesized and showed excellent volumetric capacitance of 180 F cm −3 , about three times higher than that of conventional supercapacitor electrodes in organic electrolytes.
ISSN:1754-5692
1754-5706
DOI:10.1039/c0ee00404a