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March 10, 2026Advanced Materials Technologies4 citationsOpen Access

Degradation Mechanisms in PEM Water Electrolysis: Diagnosis and Impact

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ABAnnik BernhardtKLKatja LangeRGRobert Göckeritz

Key Points

  • The central aim is to understand the degradation mechanisms in PEM water electrolyzers and their impact on performance.
  • Conducted a literature review of degradation mechanisms in PEM water electrolyzers.
  • Surveyed PEMWE experts to gather opinions on degradation severity and frequency.
  • Analyzed various measurement techniques for studying degradation.
  • Examined less-studied degradation mechanisms and their implications.
  • Identified multiple degradation mechanisms affecting PEMWE performance.
  • Emphasized the importance of specific components like the electrolyte membrane and catalyst layers.
  • Provided insight into expert opinions on the prevalence of different degradation mechanisms.

Abstract

ABSTRACT Proton electrolyte membrane (PEM) water electrolyzers (WE) represent a pivotal technology for the electrochemical production of hydrogen. However, a persistent challenge is the loss of efficiency and performance, along with a shortened lifetime caused by degradation of the materials in PEMWE. This review examines the degradation mechanisms of PEMWE components, including the electrolyte membrane, catalyst layers, porous transport layers, bipolar plates, and gaskets. Furthermore, it places particular emphasis on measurement techniques used to examine and differentiate the degradation mechanisms, including a discussion of less‐studied mechanisms and measurement methods. A survey was conducted among PEMWE experts to analyse prevailing opinions on the severity and frequency of different degradation mechanisms. It supplements the literature review and allows for a comprehensive understanding of the impacts of degradation.

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Cite This Study

Bernhardt et al. (2026) studied this question.

synapsesocial.com/papers/69af958570916d39fea4d3c3https://doi.org/10.1002/admt.202502419
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