- By:
- Bühre, Lena; Khandavalli, Sunilkumar; Soetrisno, Diego; Blair, Sarah; Yu, Haoran ; Hyung park, Jae; Myers, Deborah; Pivovar, Bryan; Alia, Shaun
- Journal Name:
- Journal of the Electrochemical Society
- Page Number:
- 154503
- Volume:
- 173
- Issue Number:
- 15
- Publication Date:
- August 20, 2026
- View DOI Listing:
- https://doi.org/10.1149/1945-7111/ae8d92
Abstract
The performance and durability of proton exchange membrane electrolyzers are governed by the interplay between catalyst inks and integration, the resulting catalyst layer (CL) structure, and the interface between the CL and porous transport layer (PTL). In this study, we examine the impact of these factors on cell performance and degradation using rutile IrO2 as the anode catalyst. The two commercial rutile IrO2 catalysts differ from each other and from the amorphous benchmark in agglomerate size and ink stability. This has implications for CL morphology and electronic connectivity. In the context of long-term pressurized operation for up to 1000 h, the selection of the PTL has a marginal effect on the durability of CLs with good structural and compositional properties, whereas poorly structured CLs demonstrate evident degradation when used with certain PTLs. Poor CL properties amplify the negative impact of non-ideal CL/PTL interfaces, demonstrating the importance of CL/PTL interface engineering.