Long-Range Electron Transfer over Graphene-Based Catalyst for High-Performing Oxygen Reduction Reactions: Importance of Size, N-doping, and Metallic Impurities

  • Choi, Chang Hyuck
  • Lim, Hyung-Kyu
  • Chung, Min Wook
  • Park, Jong Cheol
  • Shin, Hyeyoung
  • 외 2명
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초록

N-doped carbon materials are considered as next-generation oxygen reduction reaction (ORR) catalysts for fuel cells due to their prolonged stability and low cost. However, the underlying mechanism of these catalysts has been only insufficiently identified, preventing the rational design of high-performing catalysts. Here, we show that the first electron is transferred into O-2 molecules at the outer Helmholtz plane (ET-OHP) over a long range. This is in sharp contrast to the conventional belief that O-2 adsorption must precede the ET step and thus that the active site must possess as good an O-2 binding character as that which occurs on metallic catalysts. Based on the ET-OHP mechanism, the location of the electrode potential dominantly characterizes the ORR activity. Accordingly, we demonstrate that the electrode potential can be elevated by reducing the graphene size and/or including metal impurities, thereby enhancing the ORR activity, which can be transferred into single-cell operations with superior stability.

키워드

PEM FUEL-CELLSNITROGEN-DOPED GRAPHENECATHODE CATALYSTSCARBONELECTROCATALYSTSIRONPOLYANILINEMECHANISMPLATINUMSITES
제목
Long-Range Electron Transfer over Graphene-Based Catalyst for High-Performing Oxygen Reduction Reactions: Importance of Size, N-doping, and Metallic Impurities
저자
Choi, Chang HyuckLim, Hyung-KyuChung, Min WookPark, Jong CheolShin, HyeyoungKim, HyungjunWoo, Seong Ihl
DOI
10.1021/ja5033474
발행일
2014-06-25
유형
Article
저널명
Journal of the American Chemical Society
136
25
페이지
9070 ~ 9077