光催化
异质结
材料科学
金属有机骨架
半导体
电子转移
化学工程
还原(数学)
纳米技术
纳米-
载流子
光电子学
光化学
催化作用
化学
复合材料
物理化学
生物化学
几何学
数学
工程类
吸附
作者
Nan Kong,Huiling Du,Zhuo Li,Tong Lu,Siyu Xia,Ziwei Tang,Shijie Song
标识
DOI:10.1016/j.colsurfa.2023.131005
摘要
Metal-organic frameworks (MOFs), featuring semiconductor-like behavior, are promising for the photocatalytic reduction of CO2. While their practical application is hindered by the disadvantages of low charge migration efficiency and fast electron-hole pair complexation. In this paper, a simple solvothermal method was used to load NH2-UiO-66 onto the surface of MIL-101(Cr) to form a nano type II heterojunction double MOFs composite of NH2-UiO-66 @MIL-101. The results show that the heterostructure of NH2-UiO-66 @MIL-101 promotes the separation of photogenerated electron-hole pairs and accelerates the interfacial photogenerated electron transfer under light, and the NH2-UiO-66 @MIL-101 type II heterojunction exhibits higher activity for photocatalytic reduction of CO2 compared with pure MIL-101(Cr) and NH2-UiO-66. In addition, the possible photocatalytic mechanism was further elucidated to demonstrate the increased photocatalytic activity of NH2-UiO-66 @MIL-101. This study provides effective insights for designing efficient MOFs photocatalysts for CO2 reduction to enhance the photocatalytic activity for environmental protection and governance.
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