Rational Design and Synthesis of Low-Temperature Fuel Cell Electrocatalysts

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  • 1 State Key Laboratory of Physical Chemistry of Solid Surfaces, Department of Chemistry, College of Chemistry and Chemical Engineering, Xiamen University, Xiamen 361005, China;
    2 College of Materials Science and Engineering, Huaqiao University, Xiamen, Fujian, China

Received date: 2017-11-28

  Revised date: 2018-02-08

  Online published: 2018-03-19

Supported by

This study was financially supported by the National Key Research and Development Program of China (2017YFA0206500) and the National Science Foundation of China (21621091, 21373175, 91645121, 21573183, and 21703184).

Abstract

Recent progresses in proton exchange membrane fuel cell electrocatalysts are reviewed in this article in terms of cathodic and anodic reactions with a focus on rational design. These designs are based around gaining active sites using model surface studies and include high-index faceted Pt and Pt-alloy nanocrystals for anodic electrooxidation reactions as well as Pt-based alloy/core-shell structures and carbon-based non-precious metal catalysts for cathodic oxygen reduction reactions (ORR). High-index nanocrystals, alloy nanoparticles, and support efects are highlighted for anodic catalysts, and current developments in ORR electrocatalysts with novel structures and diferent compositions are emphasized for cathodic catalysts. Active site structures, catalytic performances, and stability in fuel cells are also reviewed for carbon-based non-precious metal catalysts. In addition, further developmental perspectives and the current status of advanced fuel cell electrocatalysts are provided.

Full-text: https://link.springer.com/article/10.1007/s41918-018-0004-1

Cite this article

Na Tian, Bang-An Lu, Xiao-Dong Yang, Rui Huang, Yan-Xia Jiang, Zhi-You Zhou, Shi-Gang Sun . Rational Design and Synthesis of Low-Temperature Fuel Cell Electrocatalysts[J]. Electrochemical Energy Reviews, 2018 , 1(1) : 54 -83 . DOI: 10.1007/s41918-018-0004-1

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