钙钛矿(结构)
光催化
量子产额
量子点
金属有机骨架
催化作用
卤化物
人工光合作用
材料科学
复合数
卟啉
化学工程
电子转移
金属
化学
光化学
纳米技术
无机化学
复合材料
有机化学
物理
吸附
量子力学
工程类
冶金
荧光
作者
Liyuan Wu,Yanfei Mu,Xiao‐Xuan Guo,Wen Zhang,Zhiming Zhang,Min Zhang,Tong‐Bu Lu
标识
DOI:10.1002/anie.201904537
摘要
Improving the stability of lead halide perovskite quantum dots (QDs) in a system containing water is the key for their practical application in artificial photosynthesis. Herein, we encapsulate low-cost CH3 NH3 PbI3 (MAPbI3 ) perovskite QDs in the pores of earth-abundant Fe-porphyrin based metal organic framework (MOF) PCN-221(Fex ) by a sequential deposition route, to construct a series of composite photocatalysts of MAPbI3 @PCN-221(Fex ) (x=0-1). Protected by the MOF the composite photocatalysts exhibit much improved stability in reaction systems containing water. The close contact of QDs to the Fe catalytic site in the MOF, allows the photogenerated electrons in the QDs to transfer rapidly the Fe catalytic sites to enhance the photocatalytic activity for CO2 reduction. Using water as an electron source, MAPbI3 @PCN-221(Fe0.2 ) exhibits a record-high total yield of 1559 μmol g-1 for photocatalytic CO2 reduction to CO (34 %) and CH4 (66 %), 38 times higher than that of PCN-221(Fe0.2 ) in the absence of perovskite QDs.
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