Satellite Pd Single-Atom Embraced AuPd Alloy Nanoclusters for Enhanced Hydrogen Evolution

被引:8
作者
Lv, Ya-Kun [1 ,2 ]
Han, Ye [1 ,2 ]
Wang, Kun [1 ,2 ]
Sun, Wen-Yan [1 ,2 ]
Du, Chen-Xia [1 ,2 ]
Huang, Ren-Wu [1 ,2 ]
Peng, Peng [1 ,2 ]
Zang, Shuang-Quan [1 ,2 ]
机构
[1] Zhengzhou Univ, Henan Key Lab Crystalline Mol Funct Mat, Zhengzhou 450001, Peoples R China
[2] Zhengzhou Univ, Coll Chem, Zhengzhou 450001, Peoples R China
基金
中国国家自然科学基金; 中国博士后科学基金;
关键词
single atoms; nanoclusters; electrocatalyst; hydrogen evolution reaction; synergistic effect; INITIO MOLECULAR-DYNAMICS; TOTAL-ENERGY CALCULATIONS; EFFICIENT; OXIDATION; CATALYSTS; PLATINUM; POINTS;
D O I
10.1021/acsnano.4c11554
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
The fabrication of hybrid active sites that synergistically contain nanoclusters and single atoms (SAs) is vital for electrocatalysts to achieve excellent activity and durability. Herein, we develop a ligand-assisted pyrolysis strategy using nanoclusters (Au4Pd2(SC2H4Ph)8) with alloy cores and protected ligands to build AuPd cluster sites embraced by satellite Pd SAs. In the thermal drive control process, different thermodynamic properties of the alloy atoms and the confinement effects of organic ligands allow for the mild spillover of the single-component metal Pd, resulting in the formation of AuPd alloy nanoclusters tightly encompassed by isolated Pd atoms. Experiments and theoretical calculations indicated that the satellite Pd atoms can optimize the electronic structure of the AuPd nanoclusters and Au sites in the alloy to facilitate the adsorption and dissociation of H2O, thus enhancing the hydrogen evolution reaction (HER) activity. The optimal AuPdNCs/PdSAs-600 exhibits outstanding electrocatalytic activity toward HER, with overpotentials of 21 and 38 mV at 10 mA cm-2 in acidic and alkaline media, respectively. Moreover, the mass activity and turnover frequency of AuPdNCs/PdSAs-600 are one order of magnitude higher than those of commercial Pd/C and Pt/C catalysts. This facile strategy for constructing hybrid catalytic centers using ligand-protected nanoclusters provides efficient insights for the further design of nanocluster-based electrocatalysts synergized by SAs.
引用
收藏
页码:32186 / 32195
页数:10
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