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Facilitating alkaline hydrogen evolution reaction on the hetero-interfaced Ru/RuO2 through Pt single atoms doping.


ABSTRACT: Exploring an active and cost-effective electrocatalyst alternative to carbon-supported platinum nanoparticles for alkaline hydrogen evolution reaction (HER) have remained elusive to date. Here, we report a catalyst based on platinum single atoms (SAs) doped into the hetero-interfaced Ru/RuO2 support (referred to as Pt-Ru/RuO2), which features a low HER overpotential, an excellent stability and a distinctly enhanced cost-based activity compared to commercial Pt/C and Ru/C in 1 M KOH. Advanced physico-chemical characterizations disclose that the sluggish water dissociation is accelerated by RuO2 while Pt SAs and the metallic Ru facilitate the subsequent H* combination. Theoretical calculations correlate with the experimental findings. Furthermore, Pt-Ru/RuO2 only requires 1.90 V to reach 1 A cm-2 and delivers a high price activity in the anion exchange membrane water electrolyzer, outperforming the benchmark Pt/C. This research offers a feasible guidance for developing the noble metal-based catalysts with high performance and low cost toward practical H2 production.

SUBMITTER: Zhu Y 

PROVIDER: S-EPMC10873302 | biostudies-literature | 2024 Feb

REPOSITORIES: biostudies-literature

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Facilitating alkaline hydrogen evolution reaction on the hetero-interfaced Ru/RuO<sub>2</sub> through Pt single atoms doping.

Zhu Yiming Y   Klingenhof Malte M   Gao Chenlong C   Koketsu Toshinari T   Weiser Gregor G   Pi Yecan Y   Liu Shangheng S   Sui Lijun L   Hou Jingrong J   Li Jiayi J   Jiang Haomin H   Xu Limin L   Huang Wei-Hsiang WH   Pao Chih-Wen CW   Yang Menghao M   Hu Zhiwei Z   Strasser Peter P   Ma Jiwei J  

Nature communications 20240216 1


Exploring an active and cost-effective electrocatalyst alternative to carbon-supported platinum nanoparticles for alkaline hydrogen evolution reaction (HER) have remained elusive to date. Here, we report a catalyst based on platinum single atoms (SAs) doped into the hetero-interfaced Ru/RuO<sub>2</sub> support (referred to as Pt-Ru/RuO<sub>2</sub>), which features a low HER overpotential, an excellent stability and a distinctly enhanced cost-based activity compared to commercial Pt/C and Ru/C in  ...[more]

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