1Institute of Energy Resources, Hebei Academy of Science, Hebei Engineer Research Center for Water Saving in Industry, Shijiazhuang, Hebei Province, P.R. China
2Hebei University of Technology, Shijiazhuang, Hebei Province, P.R. China
*Corresponding author: Tel: +86 13703390640; E-mail: lzf63@sohu.com
Zhenfa Liu1
1Institute of Energy Resources, Hebei Academy of Science, Hebei Engineer Research Center for Water Saving in Industry, Shijiazhuang, Hebei Province, P.R. China
2Hebei University of Technology, Shijiazhuang, Hebei Province, P.R. China
*Corresponding author: Tel: +86 13703390640; E-mail: lzf63@sohu.com
Xuan Liu1
1Institute of Energy Resources, Hebei Academy of Science, Hebei Engineer Research Center for Water Saving in Industry, Shijiazhuang, Hebei Province, P.R. China
2Hebei University of Technology, Shijiazhuang, Hebei Province, P.R. China
*Corresponding author: Tel: +86 13703390640; E-mail: lzf63@sohu.com
Carbon aerogels have been prepared using calvital (C) as catalyst derived via a sol-gel process with resorcinol (R) and formaldehyde. It was dried at open air with low surface tension. Further pyrolysis of these materials produced carbon aerogels. Carbon aerogels was investigated by scanning electron microscopy and nitrogen adsorption measurements. Electrochemical impedance and cyclic valtammogram were used to study the electrochemical permance. The BET surface areas of the carbon aerogels are from 800 m2/g to 1000 m2/g. Electrochemical tests show that carbon aerogel used in the electrochemical systems expresed very good capacitive.
He1, R., Liu1, Z., & Liu1, X. (2013). Structure Characterization and Performance Test of Carbon Aerogel. Asian Journal of Chemistry, 25(18), 10092–10094. https://doi.org/10.14233/ajchem.2013.15163