TY - JOUR
T1 - Solvothermal Fabrication of Nitrogen-Doped Carbon Nanoparticles as Efficient Catalyst for Oxygen Reduction in KOH Electrolyte
AU - Ma, Yun
AU - Lu, Zhenzhen
AU - Shan, Guangchun
AU - Chen, Yue
N1 - Publisher Copyright:
© 2017 Wiley-VCH Verlag GmbH & Co. KGaA, Weinheim
PY - 2017/7/3
Y1 - 2017/7/3
N2 - In this study, CCl4, metallic K and melamine were adopted as precursors to prepare nitrogen-doped carbon nanoparticles via a facile solvothermal method, where the CCl4 served as carbon source, K as strong reduction agent, and melamine as N source. The specific surface area of the synthesized carbon nanoparticles is 184.1 m2 g-1 with about 3.7 at.% N doping content. In addition, the electrochemical measurements indicate that the difference of half-wave potential of carbon nanoparticles is only 46 mV relative to commercial 20 %Pt/C and a 4e transfer dominates the oxygen reduction reaction process. The high activity for oxygen reduction could be ascribed to the successful N doping, especially the pyridinic N and graphinic N, and the hierarchical porosity structure containing mesorpores and macropores, which are favorable for the O2 dissociation and electron/ion transport during the reaction.
AB - In this study, CCl4, metallic K and melamine were adopted as precursors to prepare nitrogen-doped carbon nanoparticles via a facile solvothermal method, where the CCl4 served as carbon source, K as strong reduction agent, and melamine as N source. The specific surface area of the synthesized carbon nanoparticles is 184.1 m2 g-1 with about 3.7 at.% N doping content. In addition, the electrochemical measurements indicate that the difference of half-wave potential of carbon nanoparticles is only 46 mV relative to commercial 20 %Pt/C and a 4e transfer dominates the oxygen reduction reaction process. The high activity for oxygen reduction could be ascribed to the successful N doping, especially the pyridinic N and graphinic N, and the hierarchical porosity structure containing mesorpores and macropores, which are favorable for the O2 dissociation and electron/ion transport during the reaction.
KW - Nitrogen-doped carbon nanoparticles
KW - facile solvothermal method
KW - hierarchical pore structure
UR - https://www.scopus.com/pages/publications/85041708640
U2 - 10.1002/slct.201700771
DO - 10.1002/slct.201700771
M3 - 文章
AN - SCOPUS:85041708640
SN - 2365-6549
VL - 2
SP - 5390
EP - 5393
JO - ChemistrySelect
JF - ChemistrySelect
IS - 19
ER -