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Maximizing hydrogen evolution via Co-Ni dual atoms and nanoclusters on hierarchically ordered porous carbon framework
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作者 Qian Li Pan Zhang +4 位作者 Huaiguang Li Yuan Wang Dongsheng Tang Qun Li Jiabin Wu 《Science China Materials》 SCIE EI CAS CSCD 2024年第10期3197-3205,共9页
Efficient hydrogen production through water splitting relies on the development of high-performance catalysts for the hydrogen evolution reaction(HER).In this study,we synthesized the CoNi SAs@NPs-NC catalyst using mu... Efficient hydrogen production through water splitting relies on the development of high-performance catalysts for the hydrogen evolution reaction(HER).In this study,we synthesized the CoNi SAs@NPs-NC catalyst using multi-metal single-crystal ordered macroporous metal-organic frameworks(MOFs)as precursors.This catalyst features a hierarchical porous structure with ordered macropores and micropores,which not only provides a high specific surface area but also promotes efficient mass diffusion.Furthermore,the incorporation of bimetallic components,coupled with synergistic interactions between single atoms(SAs)and nanoparticles(NPs),significantly enhances its catalytic activity.The CoNi SAs@NPs-NC nanocatalysts demonstrated exceptional activity in the HER,recording overpotentials of 90 mV in 1 M KOH and 61 mV in 0.5 M H_(2)SO_(4),both at a current density of 10 mA cm^(−2).In addition,density functional theory(DFT)analysis was employed to investigate the synergistic interactions among CoNi NPs,SAs,and nitrogen dopants.Our finding highlights the promising potential of the CoNi SAs@NPs-NC catalyst for efficient hydrogen evolution,making it a valuable candidate for advancing the field of water splitting. 展开更多
关键词 three dimensional ordered macroporous Co-Ni dual atoms Co-Ni nanoclusters HER synergistic effect
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