Construction of Cs 2 AgBiCl 6 /COF Heterojunction for Boosted Photocatalytic Thioester Oxidation.
Qi QinZhi-Hua XiaWei-Qi LiuHong-Yan ChenDai-Bin KuangPublished in: Small (Weinheim an der Bergstrasse, Germany) (2024)
Lead-free halide perovskites as a new kind of potential candidate for photocatalytic organic synthesis have attracted much attention recently. The rational heterojunction construction is regarded as an efficient strategy to delicately regulate their catalytic performances. Herein, a semi-conductive covalent organic framework (COF) nanosheet, C 4 N, is employed as the functional component to construct Cs 2 AgBiCl 6 /C 4 N (CABC/C 4 N) heterojunction. It is found that the C 4 N nanosheets with rich surface functional groups can serve as heterogeneous nucleation sites to manipulate the growth of CABC nanocrystals and afford close contact between each other, therefore facilitate the transfer and spatial separation of photogenerated charge carriers, as verified by in situ X-ray photoelectronic spectroscopy and Kelvin probe force microscopy. Moreover, the oxygen affinity of C 4 N endows the heterojunctions with outstanding aerobic reactivity, thus improving the photocatalytic performance largely. The optimal CABC/C 4 N heterojunction delivers a thioanisole conversion efficiency of 100% after 6 h, which is 2.2 and 7.7-fold of that of CABC and C 4 N. This work provides a new ideal for the design and application of lead-free perovskite heterojunction photocatalysts for organic reactions.
Keyphrases
- visible light
- solar cells
- high resolution
- single molecule
- reduced graphene oxide
- water soluble
- room temperature
- quantum dots
- computed tomography
- living cells
- nitric oxide
- highly efficient
- mass spectrometry
- high intensity
- climate change
- metal organic framework
- energy transfer
- label free
- capillary electrophoresis
- solid state
- tissue engineering