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Constructing an Asymmetric Covalent Triazine Framework to Boost the Efficiency and Selectivity of Visible‐Light‐Driven CO2 Photoreduction.

Authors :
Qi, Guang‐Dong
Ba, Dan
Zhang, Yu‐Jie
Jiang, Xue‐Qing
Chen, Zihao
Yang, Miao‐Miao
Cao, Jia‐Min
Dong, Wen‐Wen
Zhao, Jun
Li, Dong‐Sheng
Zhang, Qichun
Source :
Advanced Science. 7/24/2024, Vol. 11 Issue 28, p1-8. 8p.
Publication Year :
2024

Abstract

The photocatalytic reduction of CO2 represents an environmentally friendly and sustainable approach for generating valuable chemicals. In this study, a thiophene‐modified highly conjugated asymmetric covalent triazine framework (As‐CTF‐S) is developed for this purpose. Significantly, single‐component intramolecular energy transfer can enhance the photogenerated charge separation, leading to the efficient conversion of CO2 to CO during photocatalysis. As a result, without the need for additional photosensitizers or organic sacrificial agents, As‐CTF‐S demonstrates the highest photocatalytic ability of 353.2 µmol g−1 and achieves a selectivity of ≈99.95% within a 4 h period under visible light irradiation. This study provides molecular insights into the rational control of charge transfer pathways for high‐efficiency CO2 photoreduction using single‐component organic semiconductor catalysts. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
21983844
Volume :
11
Issue :
28
Database :
Academic Search Index
Journal :
Advanced Science
Publication Type :
Academic Journal
Accession number :
178591911
Full Text :
https://doi.org/10.1002/advs.202402645