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Activation of Oxygen Evolution Electrocatalysis via Reduced Ruthenium-Oxygen-Ruthenium Coordination.

Journal articles  - Journal Article
Vigil, SA; Yuan, Y; Zagalskaya, A; Calegari Andrade, MF; Soderstedt, CJ; Ford, HH; Lin, Z; Pham, TA; Chen, JG; Moreno-Hernandez, IA
Published in: Journal of the American Chemical Society
August 2026

Noble metal oxides such as RuO2 are the state-of-the-art electrocatalysts for anodic reactions in acidic electrolytes, but their scarcity and moderate activity greatly limit emerging renewable energy technologies. Here, we show that oxidized overlayers of ruthenium on earth-abundant manganese oxide (MnO2/o-RuOx) nanocrystal supports exhibit Ru chemical states associated with reduced Ru-O-Ru coordination that enable dynamic switching of hydrogen bonding, with *OH intermediates hydrogen bonding to surface O and *OOH intermediates bonding to protruding RuOx clusters. The resulting electrocatalysts exhibit an overpotential of 218.9 ± 0.3 mV at 10 mA cm-2 for the oxygen evolution reaction in acid, corresponding to a 2425% increase in Ru mass activity compared to RuO2, enabling the construction of electrolyzers that achieved 3 A cm-2 at 1.646 V, 5.54 A cm-2 at 1.8 V, and exhibited over 3000-h stability at 100 mA cm-2. These findings motivate further efforts to develop nanomaterials that harness reduced Ru-O-Ru coordination to enable emerging renewable energy technologies.

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Published In

Journal of the American Chemical Society

DOI

EISSN

1520-5126

ISSN

0002-7863

Publication Date

August 2026

Volume

148

Issue

30

Start / End Page

32041 / 32052

Related Subject Headings

  • General Chemistry
  • 40 Engineering
  • 34 Chemical sciences
 

Citation

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Vigil, S. A., Yuan, Y., Zagalskaya, A., Calegari Andrade, M. F., Soderstedt, C. J., Ford, H. H., … Moreno-Hernandez, I. A. (2026). Activation of Oxygen Evolution Electrocatalysis via Reduced Ruthenium-Oxygen-Ruthenium Coordination. Journal of the American Chemical Society, 148(30), 32041–32052. https://doi.org/10.1021/jacs.6c06781
Vigil, S Avery, Yong Yuan, Alexandra Zagalskaya, Marcos F. Calegari Andrade, Conner J. Soderstedt, Heber H. Ford, Ziqing Lin, Tuan Anh Pham, Jingguang G. Chen, and Ivan A. Moreno-Hernandez. “Activation of Oxygen Evolution Electrocatalysis via Reduced Ruthenium-Oxygen-Ruthenium Coordination.Journal of the American Chemical Society 148, no. 30 (August 2026): 32041–52. https://doi.org/10.1021/jacs.6c06781.
Vigil SA, Yuan Y, Zagalskaya A, Calegari Andrade MF, Soderstedt CJ, Ford HH, et al. Activation of Oxygen Evolution Electrocatalysis via Reduced Ruthenium-Oxygen-Ruthenium Coordination. Journal of the American Chemical Society. 2026 Aug;148(30):32041–52.
Vigil, S. Avery, et al. “Activation of Oxygen Evolution Electrocatalysis via Reduced Ruthenium-Oxygen-Ruthenium Coordination.Journal of the American Chemical Society, vol. 148, no. 30, Aug. 2026, pp. 32041–52. Epmc, doi:10.1021/jacs.6c06781.
Vigil SA, Yuan Y, Zagalskaya A, Calegari Andrade MF, Soderstedt CJ, Ford HH, Lin Z, Pham TA, Chen JG, Moreno-Hernandez IA. Activation of Oxygen Evolution Electrocatalysis via Reduced Ruthenium-Oxygen-Ruthenium Coordination. Journal of the American Chemical Society. 2026 Aug;148(30):32041–32052.
Journal cover image

Published In

Journal of the American Chemical Society

DOI

EISSN

1520-5126

ISSN

0002-7863

Publication Date

August 2026

Volume

148

Issue

30

Start / End Page

32041 / 32052

Related Subject Headings

  • General Chemistry
  • 40 Engineering
  • 34 Chemical sciences