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February 15, 2023Nature Communications474 citationsOpen Access

Customized reaction route for ruthenium oxide towards stabilized water oxidation in high-performance PEM electrolyzers

ZSZhaoping ShiJLJi LiYWYibo Wang

Key Points

  • This research aims to identify how customizing reaction routes affects the stability of Ru-based catalysts in oxygen evolution reactions.
  • Utilized MRuO<sub>x</sub> solid solutions to study the influence of different metal ions on reaction routes and stability.
  • Controlled Ru charge to customize the reaction routes of Ru-based catalysts.
  • Evaluated the stability of SnRuO<sub>x</sub> in a scalable PEMWE single cell during long-term operation.
  • SnRuO<sub>x</sub> demonstrated a stability improvement with a degradation rate of 53 μV h<sup>-1</sup> during 1300 hours at 1 A cm<sup>-2</sup>.
  • The customized reaction route led to an order of magnitude lifespan extension compared to traditional Ru-based electrocatalysts.

Abstract

The poor stability of Ru-based acidic oxygen evolution (OER) electrocatalysts has greatly hampered their application in polymer electrolyte membrane electrolyzers (PEMWEs). Traditional understanding of performance degradation centered on influence of bias fails in describing the stability trend, calling for deep dive into the essential origin of inactivation. Here we uncover the decisive role of reaction route (including catalytic mechanism and intermediates binding strength) on operational stability of Ru-based catalysts. Using MRuOx (M = Ce4+, Sn4+, Ru4+, Cr4+) solid solution as structure model, we find the reaction route, thereby stability, can be customized by controlling the Ru charge. The screened SnRuOx thus exhibits orders of magnitude lifespan extension. A scalable PEMWE single cell using SnRuOx anode conveys an ever-smallest degradation rate of 53 μV h-1 during a 1300 h operation at 1 A cm-2.

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Cite This Study

Shi et al. (2023) studied this question.

synapsesocial.com/papers/69d8fa7c183921ebcaae4413https://doi.org/10.1038/s41467-023-36380-9
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