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Mesoporous bowl-like carbon support for boosting oxygen transport of fuel cell cathode

  • Mingjia Lu
  • , Jinhui Liang
  • , Binwen Zeng
  • , Wei Li
  • , Yunqi Li
  • , Qinqxin Wang
  • , Yuhuai Li
  • , Hong Chen
  • , Jianzheng Li
  • , Yangyang Chen
  • , Lecheng Liang
  • , Li Du
  • , Yan Xiang*
  • , Shijun Liao
  • , Zhiming Cui
  • *Corresponding author for this work
  • South China University of Technology
  • GAC Automotive Research and Development Center
  • Beihang University

Research output: Contribution to journalArticlepeer-review

Abstract

The development of advanced support is conducive to promoting the practical application of fuel cells but remains an enormous challenge in terms of stabilizing catalyst particles and enabling improved accessibility to O2. Beyond solid carbon black and conventional porous carbon, we demonstrate a new type of mesoporous bowl-like carbon support with a high specific surface area of over 1200 m2 g–1 and ~ 4 nm pore. Both rotating disk electrode and membrane electrode assembly (MEA) tests show that BC-supported Pt3Co (Pt3Co/BC) catalyst greatly outperforms hollow porous carbon spheres and solid carbon spheres supported Pt3Co catalysts. The Pt3Co/BC catalysts exhibited remarkable performance as cathode catalyst in MEA, achieving a comparable open-circuit voltage of approximately 0.95 V under H2-air condition and a current density of 1.3 A cm–2 at 0.6 V with a loading of only 0.2 mgPt cm–2. Diffusion simulations and physical characterizations demonstrate that the high porosity and highly accessible pore structure of BC support facilitate the uniform distribution of catalyst particles and enhance the mass transport of O2, thereby resulting in a significant improvement in catalytic activity and durability. This work provides new insights into the influence of support shape on mass transport of reactants and electrochemical performances of the catalyst in MEA.

Original languageEnglish
Pages (from-to)254-265
Number of pages12
JournalChinese Journal of Catalysis
Volume72
DOIs
StatePublished - May 2025

Keywords

  • Bowl-like carbon
  • Fuel cell
  • Mass transport
  • Oxygen reduction reaction
  • Support

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