Long-range Pt-Ni dual sites boost hydrogen evolution through optimizing the adsorption configuration

被引:0
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作者
Cong Liu
Pengfang Zhang
Bing Liu
Qian Meng
Xuzhao Yang
Yakun Li
Jingli Han
Yao Wang
机构
[1] Zhengzhou University of Light Industry,Henan Province Engineering Research Center of Catalysis and Separation of Cyclohexanol, College of Materials and Chemical Engineering
[2] Liaocheng University,Shandong Provincial Key Laboratory of Chemical Energy Storage and Novel Cell Technology
[3] Jiangnan University,Key Laboratory of Synthetic and Biological Colloids, Ministry of Education, School of Chemical and Material Engineering, International Joint Research Center for Photoresponsive Molecules and Materials
来源
Nano Research | 2024年 / 17卷
关键词
long-range; Pt-Ni dual sites; electron transfer; hydrogen evolution reaction; sites synergy;
D O I
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中图分类号
学科分类号
摘要
Elaborated design of catalytic systems with a specifically tailored site distance to match the intermediates could substantially improve reaction kinetics and boost catalytic activity under unfavorable reaction conditions. Considering the lower energy barriers of water splitting upon the synergy of dual sites, constructing synergistic Pt-M (M: transition metal) dual sites is an effective way to boost Pt with highly catalytic hydrogen evolution reaction (HER) performance. An unconventional “Ni(OH)2-coated high-index Pt facets” was constructed to obtain long-range Pt-Ni dual sites, in which Ni composition as a water dissociation synergistic site can protect Pt from electrolyte corrosion and ensure efficient proton donation to Pt sites. The obtained long-range Pt-Ni dual sites present 3.84 mA·cm−1 of current density, which is 7.5 times specific activity higher than that of commercial Pt/C towards alkaline HER. The enhanced HER performance is attributed to synergistic catalysis on Pt-Ni dual sites accompanied by unconventional electron coupling. This work illustrates a new strategy to construct the long-range dual sites by unconventional strategy for fundamental electrocatalytic study of alkaline HER.
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页码:3700 / 3706
页数:6
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