August 2026

Journal

Quantifying Sources of Long-Term Voltage Decay for Rutile Iridium Oxide Anodes in Proton Exchange Membrane Water Electrolysis

By:
Buehre, Lena; Blair, Sarah; Padgett, Elliot; Yu, Haoran ; Hyung park, Jae; A kropf, Jeremy; Myers, Deborah; Pivovar, Bryan; Alia, Shaun
Journal Name:
Journal of the Electrochemical Society
Page Number:
144501
Volume:
173
Issue Number:
14
Publication Date:
August 20, 2026
View DOI Listing:
https://doi.org/10.1149/1945-7111/ae8413

Abstract

To achieve aggressive hydrogen cost targets for proton exchange membrane water electrolysis (PEMWE), it is necessary to develop catalyst systems that reduce precious metal loadings while maintaining performance over extended operation. While amorphous iridium (Ir) -based catalysts exhibit high initial activity, their long-term stability remains a key limitation. In this study, the behavior of a rutile IrO2 catalyst is investigated over 4000 h of durability testing and compared to past efforts evaluating a more amorphous material. This study finds that rutile IrO2 results in a smaller decay rate (4.9 μV h−1) than an amorphous catalyst (28 μV h−1); additionally, the rutile IrO2 results in a smaller degree of Ir migration (20% to the membrane and cathode) than an amorphous catalyst (35%). This research emphasizes rutile IrO2 as a promising avenue for the development of durable, low-iridium anodes that can meet lifetime and cost targets for next-generation electrolyzer systems.


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