Synthesis of Three Dimensional Porous Carbon Materials Using g-C 3 N 4 as Template for Supercapacitors

  • Qu Y
  • Tang Z
  • Duan L
  • et al.
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Abstract

Great efforts have been dedicated to fabricating electrode materials of supercapacitors especially for carbon-based system. To achieve satisfied device performance, the fabrication of electrodes generally involved complicated procedure, poisonous agents, and expensive materials. Herein, we develop a facile and economical method to prepare carbon-based electrode materials. The nitrogen-rich g-C3N4 is used as template and N source, and glucose is used as C source to prepare N-doped 3D porous carbon materials by hydrothermal treatment followed by calcinations. The structure and N content could be adjusted by hydrothermal temperature. The specific surface area of 954 m2 g−1 and 11% N content is achieved, thus providing the excellent carrier storage ability and electrocatalytic activity. The supercapacitors fabricated from present 3D carbon networks achieve a specific capacitance of 90F/g, and shows excellent cycling stability. Present method is free of involving complicating procedure and poisonous reagents for fabrication of 3D carbon structures.

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APA

Qu, Y., Tang, Z., Duan, L., Li, X., Zhang, X., & Lü, W. (2019). Synthesis of Three Dimensional Porous Carbon Materials Using g-C 3 N 4 as Template for Supercapacitors. Journal of The Electrochemical Society, 166(15), A3564–A3569. https://doi.org/10.1149/2.0171915jes

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