Cathode Design for Proton Exchange Membrane Fuel Cells in Automotive Applications

Author:

Wang Haojie,Wang Ruiqing,Sui Sheng,Sun Tai,Yan Yichang,Du ShangfengORCID

Abstract

AbstractAn advanced cathode design can improve the power performance and durability of proton exchange membrane fuel cells (PEMFCs), thus reducing the stack cost of fuel cell vehicles (FCVs). Recent studies on highly active Pt alloy catalysts, short-side-chain polyfluorinated sulfonic acid (PFSA) ionomer and 3D-ordered electrodes have imparted PEMFCs with boosted power density. To achieve the compacted stack target of 6 kW/L or above for the wide commercialization of FCVs, developing available cathodes for high-power-density operation is critical for the PEMFC. However, current developments still remain extremely challenging with respect to highly active and stable catalysts in practical operation, controlled distribution of ionomer on the catalyst surface for reducing catalyst poisoning and oxygen penetration losses and 3D (three-dimensional)-ordered catalyst layers with low Knudsen diffusion losses of oxygen molecular. This review paper focuses on impacts of the cathode development on automotive fuel cell systems and concludes design directions to provide the greatest benefit.

Funder

Engineering and Physical Sciences Research Council

National Natural Science Foundation of China

Guangdong Academy of Sciences

Publisher

Springer Science and Business Media LLC

Subject

Automotive Engineering

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