4.8 Article

Effects of multiple heteroatom species and topographic defects on electrocatalytic and capacitive performances of graphene

期刊

JOURNAL OF POWER SOURCES
卷 366, 期 -, 页码 143-150

出版社

ELSEVIER SCIENCE BV
DOI: 10.1016/j.jpowsour.2017.09.016

关键词

Heteroatom species; Topographic defects; Graphene; Synergistic effect; Electrocatalysis; Supercapacitor

资金

  1. National Natural Science Foundation of China [51272106, 21103092]
  2. Research Fund for the Doctoral Program of Higher Education of China (RFDP) [20123219110015]
  3. The Fundamental Research Funds for the Central Universities [30920130121001, 30920130111003]
  4. Young Scientists Fund of the National Natural Science Foundation of China [51702162]
  5. Qing Lan Project
  6. Priority Academic Program Development of Jiangsu Higher Education Institutions (PAPD, China)
  7. [NCET-12-0629]

向作者/读者索取更多资源

N-doped graphene has been widely researched as metal-free electrocatalyst and electrode material of energy storage devices but the effect of heteroatom species and topographic defects on these applications was rarely reported. We successfully prepared dual (N, S) or ternary heteroatoms (N, S, P)-doped graphene by simple hydrothermal and then carbonization treatment. Compared to singly N doping, multiple heteroatom species dopant is beneficial to positively move onset potential, approach four electron catalytic pathway in oxygen reduction reaction (ORR) due to the synergistic effect. The emerging topographic defects induced by removing heteroatoms and oxygen at high temperature also act as efficient active sites for positively shifting onset potential. Meanwhile, the porous ternary heteroatoms-doped graphene possesses a good capacitive performance such as high gravimetric capacitance (196.4 Fr-1 at 1 Ag-1), high retained rate (92.7%), 98% retention over 2000 recycling. The excellent capacitive properties derive from large specific surface area (943.5 m(2) g(-1)), mesoporous structure, particularly the important role of abundant dopants of multiple heteroatom species. Therefore, we demonstrated the effect of heteroatom species and topographic defects on electrocatalyzing ORR and capacitive performance. (C) 2017 Published by Elsevier B.V.

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