September 2026

Journal

The dual role of iron in alkaline water electrolysis: A friend or a foe?

By:
Lyu, Xiang ; Serov, Alexey ; Zenyuk, Iryna; Pylypenko, Svitlana; Lopes, Pietro; Shviro, Meital
Journal Name:
Joule
Page Number:
102639
Volume:
TBD
Publication Date:
September 1, 2026
View DOI Listing:
https://doi.org/10.1016/j.joule.2026.102639

Abstract

Trace iron (Fe) impurities pose a challenge in alkaline water electrolysis (AWE) and can significantly impact long-term performance, yet their comprehensive system-level effects remain poorly understood. Here, we present the mechanistic roles of Fe in AWE, using combined rotation disk electrode studies, zero-gap cell measurements, and durability tests up to 1,000 h. Fundamental electrochemistry shows that Fe deposition proceeds through a solution-mediated pathway, with dendritic growth triggered under specific mass-transport and potential conditions. In single-cell operation, Fe incorporation substantially enhances nickel (Ni)-based anode activity by forming highly active Ni-Fe oxyhydroxides, while cathodic Fe forms either thin films or dendrites, depending on potential, surface morphology, and electrolyte distribution. Although dendrites do not degrade hydrogen evolution performance up to 1,000 h, they reveal partial intrusion into the separator, indicating a potential durability risk. We identify five governing factors controlling Fe dendrite formation and provide design principles for impurity-resilient AWE systems.


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