Materials & Energyarticle2026-08-22

Perovskite‐Based Catalysts for the Oxygen Evolution Reaction: Synthesis, Device Relevant Performance, and Scale‐Up Strategies

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Abstract

ABSTRACT Perovskite‐based oxides are promising electrocatalysts for the oxygen evolution reaction due to their flexible composition, tunable electronic structure, and robust nature. However, their activity and durability in proton exchange membrane (PEM)–relevant acidic conditions are not fully understood, limiting their use in water electrolyzers. This review critically discusses recent advances in perovskite‐based electrocatalysts, covering design, synthesis strategies, morphological engineering, reaction mechanisms, and degradation pathways. Fundamental design principles based on A‐/B‐site engineering, defect chemistry, metal–oxygen covalency, active‐site optimization, and controlled surface reconstruction are discussed together with emerging oxide pathway mechanisms. Particular emphasis is placed on bridging fundamental electrochemical studies with practical implementation through membrane electrode assembly design, catalyst‐layer optimization, in situ evaluation, and realistic performance benchmarking. Finally, current challenges associated with standardization, scalability, and industrial implementation are highlighted, and future research directions for developing durable, low‐PGM perovskite electrocatalysts for PEM water electrolysis are outlined.

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Authors: Jala Bib Khan, Norbert Kazamer, Marco Brand, Tim Hülser, Clemens Pollerberg, Ulrich Rost

Institutions: University of Duisburg-Essen, Polytechnic University of Timişoara, Westfälische Hochschule, Evangelische Kliniken Gelsenkirchen, Institut für Energie- und Umwelttechnik, RheinMain University of Applied Sciences