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Cooperative hydrogen evolution reaction combining Cu2+1O and Ru active sites

APPLIED CATALYSIS B-ENVIRONMENTAL [2023]
Jing Wang, Bingxin Guo, Junting Sun, Yingshuang Zhou, Chengfei Zhao, Zhongzhe Wei, Junjie Guo
ABSTRACT

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.

MATERIALS

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