催化作用
氢
材料科学
钴
纳米技术
无机化学
化学
结晶学
生物化学
有机化学
作者
Yufei Zhao,Priyank V. Kumar,Xin Tan,Xinxin Lu,Xiaofeng Zhu,Junjie Jiang,Jian Pan,Shibo Xi,Hui Ying Yang,Zhipeng Ma,Tao Wan,Dewei Chu,Wenjie Jiang,Sean C. Smith,Rose Amal,Zhaojun Han,Xunyu Lu
标识
DOI:10.1038/s41467-022-30155-4
摘要
Abstract Platinum is the most efficient catalyst for hydrogen evolution reaction in acidic conditions, but its widespread use has been impeded by scarcity and high cost. Herein, Pt atomic clusters (Pt ACs) containing Pt-O-Pt units were prepared using Co/N co-doped carbon (CoNC) as support. Pt ACs are anchored to single Co atoms on CoNC by forming strong interactions. Pt-ACs/CoNC exhibits only 24 mV overpotential at 10 mA cm −2 and a high mass activity of 28.6 A mg −1 at 50 mV, which is more than 6 times higher than commercial Pt/C with any Pt loadings. Spectroscopic measurements and computational modeling reveal the enhanced hydrogen generation activity attributes to the charge redistribution between Pt and O atoms in Pt-O-Pt units, making Pt atoms the main active sites and O linkers the assistants, thus optimizing the proton adsorption and hydrogen desorption. This work opens an avenue to fabricate noble-metal-based ACs stabilized by single-atom catalysts with desired properties for electrocatalysis.
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