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Nanocarbon/oxide composite catalysts for bifunctional oxygen reduction and evolution in reversible alkaline fuel cells: A mini review

  • Mengjie Chen
  • , Lei Wang
  • , Haipeng Yang
  • , Shuai Zhao
  • , Hui Xu
  • , Gang Wu
  • SUNY Buffalo
  • Shenzhen University
  • Giner, Incorporated and Giner Electrochemical Systems, LLC

Research output: Contribution to journalArticlepeer-review

147 Scopus citations

Abstract

A reversible fuel cell (RFC), which integrates a fuel cell with an electrolyzer, is similar to a rechargeable battery. This technology lies on high-performance bifunctional catalysts for the oxygen reduction reaction (ORR) in the fuel cell mode and the oxygen evolution reaction (OER) in the electrolyzer mode. Current catalysts are platinum group metals (PGM) such as Pt and Ir, which are expensive and scarce. Therefore, it is highly desirable to develop PGM-free catalysts for large-scale application of RFCs. In this mini review, we discussed the most promising nanocarbon/oxide composite catalysts for ORR/OER bifunctional catalysis in alkaline media, which is mainly based on our recent progress. Starting with the effectiveness of selected oxides and nanocarbons in terms of their activity and stability, we outlined synthetic methods and the resulting structures and morphologies of catalysts to provide a correlation between synthesis, structure, and property. A special emphasis is put on understanding of the possible synergistic effect between oxide and nanocarbon for enhanced performance. Finally, a few nanocomposite catalysts are discussed as typical examples to elucidate the rules of designing highly active and durable bifunctional catalysts for RFC applications.

Original languageEnglish
Pages (from-to)277-290
Number of pages14
JournalJournal of Power Sources
Volume375
DOIs
StatePublished - Jan 31 2018

Keywords

  • Bifunctional catalysts
  • Electrolyzers
  • Nanocomposites
  • Oxygen evolution
  • Oxygen reduction
  • Reversible alkaline fuel cells

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