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Tailoring a Three-Phase Microenvironment for High-Performance Oxygen Reduction Reaction in Proton Exchange Membrane Fuel Cells

  • Zipeng Zhao
  • , Md Delowar Hossain
  • , Chunchuan Xu
  • , Zijie Lu
  • , Yi Sheng Liu
  • , Shang Hsien Hsieh
  • , Ilkeun Lee
  • , Wenpei Gao
  • , Jun Yang
  • , Boris V. Merinov
  • , Wang Xue
  • , Zeyan Liu
  • , Jingxuan Zhou
  • , Zhengtang Luo
  • , Xiaoqing Pan
  • , Francisco Zaera
  • , Jinghua Guo
  • , Xiangfeng Duan
  • , William A. Goddard
  • , Yu Huang*
  • *此作品的通讯作者
  • University of California at Los Angeles
  • California Institute of Technology
  • Hong Kong University of Science and Technology
  • Ford Motor Company
  • United States Department of Energy
  • National Synchrotron Radiation Research Center Taiwan
  • University of California at Riverside
  • University of California at Irvine
  • University of California at Santa Cruz

科研成果: 期刊稿件文章同行评审

摘要

Despite tremendous progress in catalyst development for rate-limiting cathodic oxygen reduction reaction (ORR), reducing Pt usage while meeting performance requirements in practical proton exchange membrane fuel cells (PEMFCs) remains a challenge. The ORR in PEMFCs occurs at a catalyst–electrolyte–gas three-phase interface. A desirable interface should exhibit highly active and available catalytic sites, as well as allow efficient oxygen and proton feeding to the catalytic sites and timely removal of water to avoid interface flooding. Here, we report the design of a three-phase microenvironment in PEFMCs, showing that carbon surface chemistry can be tuned to modulate its interaction with the ionomers and create favorable transport paths for rapid delivery of both reactants and products. With such an elaborate interfacial design, for the first time we have demonstrated PEMFCs with all key ORR catalyst performance metrics, including mass activity, rated power, and durability, surpassing the US Department of Energy targets.

源语言英语
页(从-至)1774-1790
页数17
期刊Matter
3
5
DOI
出版状态已出版 - 4 11月 2020
已对外发布

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