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Understanding the reaction energetics of oxygen-evolving electrocatalysts

Publication ,  Journal Article
Lin, Z; Chaudhary, P; Vigil, SA; Fratarcangeli, M; Soderstedt, CJ; Alexandrov, V; Moreno-Hernandez, IA
Published in: Energy and Environmental Science
August 12, 2025

Electrocatalysts are crucial for efficient electrochemical devices that enable sustainable chemical transformations. Electrocatalyst activity has been correlated to the thermodynamics of reaction intermediates that balance intermediate formation and desorption. However, a lack of detailed experimental thermodynamic information about reaction energetics limits the design of next-generation electrocatalysts. Here we show kinetic and electroadsorption studies of precisely terminated first-row transition metal ruthenium oxide nanocrystals that elucidate how material chemistry influences the oxygen evolution reaction activity and reaction energetics. We established the energy scaling relations between the *OH, *O, and *OOH intermediates involved in the oxygen evolution reaction. These energy scaling relations were leveraged to design an FeMn-RuOx electrocatalyst with an 876% increase in mass activity compared to RuO2. Our study highlights the potential for precise nanocrystal synthesis and electroadsorption analysis to rationally guide the design of next-generation electrocatalysts with improved activity and further elucidate mechanisms of catalyst activation.

Duke Scholars

Published In

Energy and Environmental Science

DOI

EISSN

1754-5706

ISSN

1754-5692

Publication Date

August 12, 2025

Volume

18

Issue

16

Start / End Page

8029 / 8038

Related Subject Headings

  • Energy
 

Citation

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Lin, Z., Chaudhary, P., Vigil, S. A., Fratarcangeli, M., Soderstedt, C. J., Alexandrov, V., & Moreno-Hernandez, I. A. (2025). Understanding the reaction energetics of oxygen-evolving electrocatalysts. Energy and Environmental Science, 18(16), 8029–8038. https://doi.org/10.1039/d5ee02196k
Lin, Z., P. Chaudhary, S. A. Vigil, M. Fratarcangeli, C. J. Soderstedt, V. Alexandrov, and I. A. Moreno-Hernandez. “Understanding the reaction energetics of oxygen-evolving electrocatalysts.” Energy and Environmental Science 18, no. 16 (August 12, 2025): 8029–38. https://doi.org/10.1039/d5ee02196k.
Lin Z, Chaudhary P, Vigil SA, Fratarcangeli M, Soderstedt CJ, Alexandrov V, et al. Understanding the reaction energetics of oxygen-evolving electrocatalysts. Energy and Environmental Science. 2025 Aug 12;18(16):8029–38.
Lin, Z., et al. “Understanding the reaction energetics of oxygen-evolving electrocatalysts.” Energy and Environmental Science, vol. 18, no. 16, Aug. 2025, pp. 8029–38. Scopus, doi:10.1039/d5ee02196k.
Lin Z, Chaudhary P, Vigil SA, Fratarcangeli M, Soderstedt CJ, Alexandrov V, Moreno-Hernandez IA. Understanding the reaction energetics of oxygen-evolving electrocatalysts. Energy and Environmental Science. 2025 Aug 12;18(16):8029–8038.
Journal cover image

Published In

Energy and Environmental Science

DOI

EISSN

1754-5706

ISSN

1754-5692

Publication Date

August 12, 2025

Volume

18

Issue

16

Start / End Page

8029 / 8038

Related Subject Headings

  • Energy