The effect of Nafion film on the cathode catalyst layer performance in a low–Pt PEM fuel cell
Andrei Kulikovsky
Abstract
Open-access reader
Andrei Kulikovsky
Abstract
Open-access reader
A single–pore model for performance of the cathode catalyst layer (CCL) in a PEM fuel cell is developed. The model takes into account oxygen transport through the CCL depth and through the thin Nafion film, separating the pore from Pt/C species. Analytical solution to model equations reveals the limiting current density jNlim due to oxygen transport through the Nafion film. Further, jNlim linearly depends on the CCL thickness, i.e., the thinner the CCL, the lower jNlim. This result may explain unexpected lowering of low–Pt loaded catalyst layers performance, which has been widely discussed in literature.
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A single–pore model for performance of the cathode catalyst layer (CCL) in a PEM fuel cell is developed. The model takes into account oxygen transport through the CCL depth and through the thin Nafion film, separating the pore from Pt/C species. Analytical solution to model equations reveals the limiting current density jNlim due to oxygen transport through the Nafion film. Further, jNlim linearly depends on the CCL thickness, i.e., the thinner the CCL, the lower jNlim. This result may explain unexpected lowering of low–Pt loaded catalyst layers performance, which has been widely discussed in literature.
Key concepts: Nafion, Limiting current, Cathode, Proton exchange membrane fuel cell, Catalysis, Limiting, Layer (electronics), Chemical engineering