光催化
催化作用
化学
还原(数学)
化学工程
纳米技术
环境科学
材料科学
有机化学
工程类
数学
几何学
作者
Li Tan,Yanru Li,Qian Lv,Yuyan Gan,Yuan Fang,Yu Tang,Lizhi Wu,Yuanxing Fang
标识
DOI:10.1016/j.cattod.2022.05.001
摘要
The conversion of CO 2 to valuable chemicals by photocatalysis has attracted widespread interesting. Owing to the linear structure of CO 2 molecule with strong C O bond, the surface reaction is considered as one of the main issues to restrict the conversion efficiency. Herein, soluble UiO-66 has been developed as co-catalyst to enhance the photocatalytic performance for CO 2 reduction. The soluble UiO-66 has presented the performance ca. 1.5 higher than the insoluble version, yielding 30.6 µmol/h for CO 2 to CO conversion by using 5.0 mg sample. This improvement can be attributed to the preserved framework by soluble UiO-66. Therefore, the chemisorption of CO 2 molecules can be improved, boosting the reduction reaction for CO production. This research provides a new path for a rational design of metal-organic framework (MOF) for photoredox catalysis, meanwhile inspiring advanced application of MOF catalysis with the soluble manner. The difference between the general UiO-66 and soluble UiO-66 in CO 2 photocatalytic reduction reaction. • A soluble UiO-66 MOF material is synthesized for CO 2 photoredox catalysis. • The product yield over soluble UiO-66 is much higher than the insoluble UiO-66. • The soluble UiO-66 maximizes the active sites, similar to a homogeneous catalyst. • This research has provided a path for design of MOFs by usage of its solubility.
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