Nature Communications, Published online: 25 June 2026; doi:10.1038/s41467-026-74827-x Ruthenium oxide is active for acidic water electrolysis but degrades under operating conditions. Here, the authors report a cavitation-mediated sonochemical strategy to incorporate boron into Ruthenium oxide, improving its activity and durability for water electrolysis.
Sonochemical boron incorporation enhances activity and durability of ruthenium oxide for acidic water oxidation
Shu-Hong Yu

