The resistance of the cathode oxygen reduction reaction in polymer electrolyte fuel cells must be reduced for improving the performance. Therefore, it is important to thoroughly understand the relationship between the heterogeneous structures and the cell performance. However, it is difficult to obtain such an understanding using experimental approaches and typical uniform porous simulations. In this study, numerical analysis was used to simulate a three-dimensional catalyst layer (CL) with carbon black (CB) aggregate structures and ionomer coating models, and a cathode reaction and mass transport simulation model incorporating the heterogeneous structure was developed. Moreover, the relationship between the electrode structure and the cell performance, including the reaction distribution and output performance, was examined. The current density distribution depended on the CB structure and ionomer adhesion shape. From the viewpoint of enhancing both the Pt utilization and the mass transport performance, an adequate heterogeneous pore structure in the CL is necessary. These results were used to determine the optimal material properties for the high performance cell.(c) 2022 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
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Hanyang Univ, WCU Dept Energy Engn, Seoul 133791, South KoreaHanyang Univ, WCU Dept Energy Engn, Seoul 133791, South Korea
Hwang, Doo Sung
Park, Chi Hoon
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Hanyang Univ, WCU Dept Energy Engn, Seoul 133791, South KoreaHanyang Univ, WCU Dept Energy Engn, Seoul 133791, South Korea
Park, Chi Hoon
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Yi, Sung Chul
Lee, Young Moo
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Hanyang Univ, WCU Dept Energy Engn, Seoul 133791, South Korea
Hanyang Univ, Sch Chem Engn, Seoul 133791, South KoreaHanyang Univ, WCU Dept Energy Engn, Seoul 133791, South Korea