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Precisely Regulating Asymmetric Charge Distribution by Single-Atom Central Doped Ag-Based Series Clusters for Enhanced Photoreduction of CO2 to Alcohol Fuels.
Huang, Liu; Lu, Rui; Zhang, Wenchang; Fan, Yikang; Du, Yuanxin; Ni, Kun; Zhu, Yanwu; Zhu, Manzhou.
Affiliation
  • Huang L; Anhui University, Department of Materials Science and Engineering, CHINA.
  • Lu R; Anhui University, Department of Materials Science and Engineering, CHINA.
  • Zhang W; University of Science and Technology of China, Department of Materials Science and Engineering, CHINA.
  • Fan Y; Anhui University, Department of Materials Science and Engineering, CHINA.
  • Du Y; Anhui University, Chemistry, Jiulong Road 111, hefei, CHINA.
  • Ni K; University of Science and Technology of China, Department of Materials Science and Engineering, CHINA.
  • Zhu Y; University of Science and Technology of China, School of Chemistry and Material Science, Department of Applied Chemistry, Department of Materials Science and Engineering, CHINA.
  • Zhu M; Anhui University, Department of Materials Science and Engineering, CHINA.
Angew Chem Int Ed Engl ; : e202412964, 2024 Jul 24.
Article in En | MEDLINE | ID: mdl-39048539
ABSTRACT
High efficiently photocatalytic CO2 reduction (CO2RR) into liquid fuels in pure water system remains challenged. Iron polyphthalocyanine (FePPc) with strong light harvesting, unique Fe-N4 structure, abundant pores, and good stability could serve as a promising catalyst for CO2 photoreduction. To further improve the catalytic efficiency, herein, symmetry-breaking Fe sites are constructed by coupling with atomically precise M1Ag24 (M=Ag, Au, Pt) series clusters. Especially, the introduction of Pt1Ag24 causes the most asymmetric charge distribution of Fe in FePPc (followed by Au1Ag24 and Ag25), leading to the favorable CO2 adsorption and activation. In addition, Pt1Ag24-FePPc exhibits the most effective photogenerated carriers transfer and separation. As a result, Pt1Ag24-FePPc shows the methanol/ethanol yield of 48.55/32.97 µmol·gcat-1·h-1 in H2O-CO2 system under visible light irradiation, ~ 1.65/1.25-fold, 1.83/1.37-fold, and 3.6/1.61-fold higher than that of Au1Ag24-FePPc, Ag25-FePPc, and FePPc, respectively. This work provides a concept for precisely construction and regulation symmetry-breaking sites of cluster-based catalysts for effective CO2 conversion.
Key words

Full text: 1 Collection: 01-internacional Database: MEDLINE Language: En Journal: Angew Chem Int Ed Engl Year: 2024 Document type: Article Affiliation country: China

Full text: 1 Collection: 01-internacional Database: MEDLINE Language: En Journal: Angew Chem Int Ed Engl Year: 2024 Document type: Article Affiliation country: China