Platinum Single Atoms Anchored on a Covalent Organic Framework: Boosting Active Sites for Photocatalytic Hydrogen Evolution

被引:248
作者
Dong, Pengyu [1 ]
Wang, Yan [2 ]
Zhang, Aicaijun [2 ]
Cheng, Ting [1 ]
Xi, Xinguo [2 ]
Zhang, Jinlong [3 ]
机构
[1] Yancheng Inst Technol, Key Lab Adv Technol Environm Protect Jiangsu Prov, Yancheng 224051, Peoples R China
[2] Yancheng Inst Technol, Sch Chem & Chem Engn, Yancheng 224051, Peoples R China
[3] East China Univ Sci & Technol, Key Lab Adv Mat & Inst Fine Chem, Sch Chem & Mol Engn, Shanghai Engn Res Ctr Multimedia Environm Catalys, Shanghai 200237, Peoples R China
基金
中国国家自然科学基金;
关键词
heterogeneous photocatalysis; covalent organic frameworks; single-atom Pt; hydrogen evolution; visible-light-driven; coordination site construction; H-2; EVOLUTION; EFFICIENT; INSIGHTS;
D O I
10.1021/acscatal.1c03441
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
It is of great importance to explore and achieve a more effective approach toward the controllable synthesis of single-atom-based photocatalysts with high metal content and long-term durability. Herein, single-atom platinum (Pt) with high loading content anchored on the pore walls of two-dimensional beta-ketoenamine-linked covalent organic frameworks (TpPa-1-COF) is presented. Aided by advanced characterization techniques of aberration-corrected high-angle annular dark-field scanning transmission electron microscopy (AC HAADF-STEM) and X-ray absorption fine structure (XAFS) spectroscopy, it has been demonstrated that atomically dispersed Pt is formed on the TpPa-1-COF support through a six-coordinated C3N-Pt-Cl-2 species. The optimized Pt-1@TpPa-1 catalyst exhibits a high photocatalytic H-2 evolution rate of 719 mu mol g(-1) h(-1) under visible-light irradiation, a high actual Pt loading content of 0.72 wt %, and a large turnover frequency (TOF) of 19.5 h(-1), with activity equivalent to 3.9 and 48 times higher than those of Pt nanoparticles/TpPa-1 and bare TpPa-1, respectively. The improved photocatalytic per formance for H-2 evolution is ascribed to the effective photogenerated charge separation and migration and well-dispersed active sites of single-atom Pt. Moreover, density functional theory (DFT) calculations further reveal the role of Pt single atoms in the enhanced photocatalytic activity for H-2 evolution. Overall, this work provides some inspiration for designing single-atom-based photocatalysts with outstanding stability and efficiency using COFs as the support.
引用
收藏
页码:13266 / 13279
页数:14
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