Identification of the optimal doping position of hetero-atoms in chalcogen-doped Fe–N–C catalysts for oxygen reduction reaction

  • Weihao Liu
  • , Huanhuan He
  • , Qingtao Liu
  • , Xin Wan*
  • , Jianglan Shui*
  • *Corresponding author for this work

Research output: Contribution to journalArticlepeer-review

Abstract

The excellent oxygen reduction reaction (ORR) activity of Fe–N–C catalysts in acidic media makes them potential for low-cost proton exchange membrane fuel cells. In recent years, it has been shown that heteroatoms (B, O, S, P, Cl, F, etc.) can be used as electron-withdrawing groups to modulate the planar structure and electron distribution of the Fe–Nx active sites to achieve simultaneous improvement of catalytic activity and stability. However, the optimal location of the heteroatoms remains unclear. Here, taking chalcogen heteroatoms (S and Se) as an example, we control the doping positions and investigate their effect on the ORR performance of the Fe–N–C catalysts. The first coordination shell of the iron single atom is identified as the optimal doping position. The optimized catalysts Fe–N3S1/NC and Fe–N3Se1/NC demonstrate improved activity and stability in both half cells and fuel cells. This work provides insights into the enhancement mechanism of heteroatom doping in single-atom catalysts.

Original languageEnglish
Pages (from-to)99-108
Number of pages10
JournalParticuology
Volume89
DOIs
StatePublished - Jun 2024

Keywords

  • Doping position
  • Enhancement mechanism
  • Fe–N–C catalysts
  • Hetero-atom doping
  • Oxygen reduction reaction

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