4.7 Article

Fe, N dual doped graphitic carbon derived from straw as efficient electrochemical catalysts for oxygen reduction reaction and Zn-air batteries

Journal

JOURNAL OF ELECTROANALYTICAL CHEMISTRY
Volume 865, Issue -, Pages -

Publisher

ELSEVIER SCIENCE SA
DOI: 10.1016/j.jelechem.2020.114133

Keywords

Fe, N codoping; Graphitic carbon; Oxygen reduction reaction; Zn-air battery

Funding

  1. Fund of Natural Science Foundation of Guangdong Province of China [2018A030310002]
  2. Youth Innovative Talents Project in Colleges and Universities in Guangdong [2017KQNCX189]
  3. Natural Science Program of Huizhou [2019X0704015, 2017X0202012]
  4. Indigenous Innovation's Capability Development Program of Huizhou University [hzu201904, hzu201902]
  5. Program for Innovative Research Team of Huizhou University

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In this paper, we present a facile and one-step way for synthesizing Fe, N dual doped highly porous graphitic biomass carbon (FeNC) by using K2FeO4 to fulfill the activated process and catalytic graphitization of straws. The FeNC demonstrates hierarchically porous structure with large surface area of 1034 m(2) g(-1), Fe, N dual doping with certain amount of Fe-N-x, and graphitic structure. With these favorable features, the electrocatalytic activity for oxygen reduction reaction (ORR) reveals that the FeNC exhibits positively onset potential with highly comparable limiting current densitywhen comparing with the sample using conventional KOH activated agent. In additional, the assembled Zn-air battery using FeNC as air-cathode catalyst delivers a maximal power density of 128.4 mW cm(-2). Considering the abundance of straws on the earth and the low-cost and green prepared process, the present FeNC materials are highly promising in application in ORR catalysts for Zn-air battery and other energy-related fields. (C) 2020 Elsevier B.V. All rights reserved.

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