4.8 Article

Theoretical insights on the reaction pathways for oxygen reduction reaction on phosphorus doped graphene

期刊

CARBON
卷 105, 期 -, 页码 214-223

出版社

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.carbon.2016.04.033

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资金

  1. National Natural Science Foundation of China [21261013, 21503210, 21521092]
  2. program for Young Talents of Science and Technology in Universities of Inner Mongolia Autonomous Region [NJYT-15-B16]
  3. Natural Science Foundation of Inner Mongolia Autonomous Region [2015MS0120, 2011BS0104]
  4. Key Science Research Project of Inner Mongolia University of Technology [ZD201517, ZD201117]
  5. Jilin Province Youth Fund [20130522141JH]
  6. Jilin Province Natural Science Foundation [20150101012JC]

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The reaction mechanisms for oxygen reduction reaction (ORR) on phosphorus doped divacancy graphene (P-G(DV)) are investigated by using the density functional theory method. Our results showed that all of the possible ORR elementary reactions could take place within a small region around the P atom and its adjacent four carbon atoms. The hydrogenation of O-2 molecule which forms OOH and hydrogenation of OOH which forms H2O + O have negligible energy barrier. This reaction pathway is also the kinetically most favorable. The rate-determining step is the final step in the pathway, i.e., the hydrogenation of OH into H2O with an energy barrier of 0.85 eV. Therefore, ORR mechanism on P-G(DV) would be a four electron process. The free energy diagram of the ORR predicted that for the most favorable pathway, the working potential is 0.27 V. Consequently, our theoretical study suggests that P doped graphene with intrinsic carbon defects could possess good catalytic activity for ORR. (C) 2016 Elsevier Ltd. All rights reserved.

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