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Role of Vacancy Defects and Nitrogen Dopants for the Reduction of Oxygen on Graphene

  • Weizhe Zhang
  • , Bas van Dijk
  • , Longfei Wu
  • , Clément Maheu
  • , Viorica Tudor
  • , Jan Philipp Hofmann
  • , Lin Jiang (Corresponding author)
  • , Dennis Hetterscheid (Corresponding author)
  • , Grégory F. Schneider (Corresponding author)

    Research output: Contribution to journalArticleAcademicpeer-review

    137 Downloads (Pure)

    Abstract

    Disentangling the roles of nitrogen dopants and vacancy defects (VG) in metal-free carbon catalysts for the oxygen reduction reaction (ORR) ideally requires studying both the dopants and defects separately. Here, we systematically introduced nitrogen dopants and VGs via plasma treatment into the basal plane of monolayer graphene as a model carbon catalyst to investigate their specific roles in ORR catalysis. An increased defect density including dopants is positively associated with boosted ORR activity. Nitrogen dopants are responsible for an improved current via a 2e- pathway generating hydroperoxide, while VGs result in enhanced kinetics and water production. We therefore infer that VGs in graphene are responsible for the improved ORR kinetics, while nitrogen dopants majorly influence the selectivity of ORR reaction products. The nitrogen dopants without VGs lead to a higher overpotential compared with the pristine graphene. Instead of the attribution of the ORR active site to only nitrogen species in carbon materials, the improved ORR activity in nitrogen-doped carbon materials should be attributed to the active sites constituted of VGs, oxygen dopants, and nitrogen dopants. Through this work, we provide important insights into the intertwined roles of nitrogen and VGs as well as oxygen dopants in nitrogen-doped metal-free catalysts for a more efficient ORR.

    Original languageEnglish
    Pages (from-to)11065-11075
    Number of pages11
    JournalACS Catalysis
    Volume14
    Issue number14
    DOIs
    Publication statusPublished - 19 Jul 2024

    Funding

    FundersFunder number
    Seventh Framework ProgrammeFP/2007-2013
    European Union's Horizon 2020 - Research and Innovation Framework Programme335879
    Nederlandse Organisatie voor Wetenschappelijk OnderzoekVIDI 723.013.007

      Keywords

      • carbon catalyst
      • graphene
      • nitrogen-doped graphite
      • oxygen reduction reaction
      • vacancy defect

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