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Octahedral-coordinated Co3O4 for water electrolysis in acid

July 29, 2026
in Medicine, Technology and Engineering
Denise Maddox
By Denise Maddox Scienmag Editorial Profile - Mechanical Engineering
Reading Time: 2 mins read
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Octahedral-coordinated Co3O4 for water electrolysis in acid

Octahedral-coordinated Co3O4 for water electrolysis in acid

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The development of highly active and stable non-noble metal oxide catalysts to replace iridium-based materials for efficient acidic water electrolysis is crucial1,2,3. However, traditional spinel cobalt oxide suffers from intrinsic performance limitations from coexistence of inactive tetrahedral (Td) and highly active octahedral (Oh) coordination sites4,5. Here we report a new trigonal-phase Co3O4 (Tri-Co3O4) produced by a vacuum-mediated molten-alkali mechanochemical method, which shows edge-shared [CoO6] octahedral coordination with the space group P-3m1 (164). The three-layer compact structure provides Co2+ and Co3+ located in octahedral coordination in the ratio 1:2. Tri-Co3O4 achieves a low overpotential of 269 millivolts (mV) at the current density of 10 mA cm−2 in the acidic oxygen evolution reaction (OER), 181 mV less than spinel-type Co3O4. It also achieves a current density exceeding 1,800 mA cm−2 at a cell voltage of 1.80 V in proton-exchange membrane water electrolysis (PEMWE) devices. The catalytic mechanism shows that the 2D layered structure with edge-shared octahedral coordination can effectively optimize the adsorption of intermediates and reduce the dissolution of Co, thereby substantially improving the activity and stability of the non-noble metal catalysts.

Wang, Y., Ji, Y., Zhou, J. et al. Octahedral-coordinated Co3O4 for water electrolysis in acid.
Nature (2026). https://doi.org/10.1038/s41586-026-10851-7

https://doi.org/10.1038/s41586-026-10851-7

Subject of Research: Medicine, Technology and Engineering

Article Title: Octahedral-coordinated Co3O4 for water electrolysis in acid

Article References: Wang, Y., Ji, Y., Zhou, J., Chen, J., Li, C., Zhao, C., Ke, J., Xiong, Y., Pan, S., Huang, W.-H., Pao, C.-W., Kuo, C.-Y., Chen, C.-T., Li, Y., Hu, Z., Shao, Q., & Huang, X. (2026). Octahedral-coordinated Co3O4 for water electrolysis in acid. Nature, 656(8127), 370-375. https://doi.org/10.1038/s41586-026-10851-7

Image Credits: AI Generated

DOI: 10.1038/s41586-026-10851-7

Keywords: acidic water electrolysis, catalyst stability in acid, edge-shared [CoO6] octahedral structure, layered Co3O4 structure for enhanced activity, low overpotential for OER, molten-alkali mechanochemical method, non-noble metal oxide catalysts, octahedral-coordinated cobalt oxide catalyst, oxygen evolution reaction performance, proton-exchange membrane water electrolysis, spinel cobalt oxide limitations, trigonal-phase Co3O4 synthesis

Cite Scienmag News

Denise Maddox. (July 29, 2026). Octahedral-coordinated Co3O4 for water electrolysis in acid. Scienmag. https://scienmag.com/octahedral-coordinated-co3o4-for-water-electrolysis-in-acid/

Denise Maddox. "Octahedral-coordinated Co3O4 for water electrolysis in acid." Scienmag, 29 July 2026, https://scienmag.com/octahedral-coordinated-co3o4-for-water-electrolysis-in-acid/. Accessed 4 September 2026.

Denise Maddox. "Octahedral-coordinated Co3O4 for water electrolysis in acid." Scienmag. July 29, 2026. https://scienmag.com/octahedral-coordinated-co3o4-for-water-electrolysis-in-acid/

Tags: acidic water electrolysiscatalyst stability in acidedge-shared [CoO6] octahedral structurelayered Co3O4 structure for enhanced activitylow overpotential for OERmolten-alkali mechanochemical methodnon-noble metal oxide catalystsoctahedral-coordinated cobalt oxide catalystoxygen evolution reaction performanceproton-exchange membrane water electrolysisspinel cobalt oxide limitationstrigonal-phase Co3O4 synthesis
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