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Cooperative hydrogen evolution reaction combining Cu2+1O and Ru active sites
The design and construction of electrocatalysts with multiple components to modulate the intrinsic catalytic activity is a compelling strategy to achieve Pt-like activity for hydrogen generation. Challenging on the inert Cu-based electrocatalysts for water reduction, herein, a novel and fruitful CuRu-based electrocatalysts (RuCuO x /NC) is established by combining dual-templates assembling and pyrolysis protocol with a subsequent hot-alkali corrosion. Benefitting from the synergetic effect of Cu 2+1 O (with copper excess defects) and Ru, the as-prepared RuCuO x /NC affords brilliant activity and stability under alkaline condition. In 1 M KOH, the RuCuO x /NC provides Pt-like activity with overpotential of ∼29 mV to reach 10 mA cm −2 . Theoretical calculations certified that H 2 O dissociation was accelerated and hydrogen adsorption free energy was optimized by the cooperation of Cu 2+1 O and Ru. This work proposes a promising methodology to construct multi-components electrocatalysts, which may lend perspective for the design of advanced electrocatalysts for renewable energy systems.