Nitrogen and sulfur co-doped ordered mesoporous carbon with enhanced electrochemical capacitance performance

Deyi Zhang(Lanzhou University of Technology), Hao Yuan(Lanzhou University of Technology), Liwen Zheng(Lanzhou University of Technology), Ying Ma(Lanzhou University of Technology), Huixia Feng(Lanzhou University of Technology), Heming Luo(Lanzhou University of Technology)
Journal of Materials Chemistry A
January 1, 2013
Cited by 203

Abstract

Doping ordered mesoporous carbon with electron-donating nitrogen and sulfur heteroatoms is a promising strategy to enhance its electrochemical performance. Here we demonstrate the successful fabrication of nitrogen and sulfur co-doped ordered mesoporous carbon (NSOMC) materials with high specific surface areas (978–1021 m2 g−1), large pore volumes (1.10–1.20 cm3 g−1), highly-ordered pore structures and controlled dopant contents (10.0–4.8 at.% for nitrogen and 1.7–2.6 at.% for sulfur) using the oligomer of pyrrole as the precursor and sulphuric acid as the catalyst and sulfur source. NSOMC materials exhibit enhanced electrochemical double-layer capacitance (EDLC) performances due to their improved surface activity and conductivity compared with pure carbon CMK-3. The fabrication of nitrogen and sulfur co-doped ordered mesoporous carbon with enhanced electrochemical capacitance performance provides a viable route to promote its applications in electronic devices.


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