光催化
光化学
可见光谱
材料科学
电子转移
格式化
超快激光光谱学
电子受体
催化作用
金属有机骨架
化学物理
光谱学
化学
光电子学
物理化学
吸附
物理
量子力学
生物化学
作者
Sanchita Karmakar,Soumitra Barman,Faruk Ahamed Rahimi,Darsi Rambabu,Sukhendu Nath,Tapas Kumar Maji
标识
DOI:10.1038/s41467-023-40117-z
摘要
Abstract In the quest for renewable fuel production, the selective conversion of CO 2 to CH 4 under visible light in water is a leading-edge challenge considering the involvement of kinetically sluggish multiple elementary steps. Herein, 1-pyrenebutyric acid is post-synthetically grafted in a defect-engineered Zr-based metal organic framework by replacing exchangeable formate. Then, methyl viologen is incorporated in the confined space of post-modified MOF to achieve donor-acceptor complex, which acts as an antenna to harvest visible light, and regulates electron transfer to the catalytic center (Zr-oxo cluster) to enable visible-light-driven CO 2 reduction reaction. The proximal presence of the charge transfer complex enhances charge transfer kinetics as realized from transient absorption spectroscopy, and the facile electron transfer helps to produce CH 4 from CO 2 . The reported material produces 7.3 mmol g −1 of CH 4 under light irradiation in aqueous medium using sacrificial agents. Mechanistic information gleans from electron paramagnetic resonance, in situ diffuse reflectance FT-IR and density functional theory calculation.
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