光催化
异质结
共价键
可见光谱
卟啉
材料科学
共价有机骨架
X射线光电子能谱
化学工程
介孔材料
光致发光
光电子学
载流子
光化学
纳米技术
催化作用
化学
有机化学
工程类
作者
Shanshan Li,Haihan Yu,Yuwen Wang,Shuai Wang,Lina Zhang,Peihua Zhu,Chaomin Gao,Jinghua Yu
标识
DOI:10.1016/j.apsusc.2023.156335
摘要
The porphyrin-based covalent organic frameworks (COFs) are promising candidates for photocatalytic CO2 conversion account for their long-range ordered mesopores and excellent semiconducting properties, but the insufficient oxidative capacity of valence band is less efficient for photooxidation of H2O, which hinders the photocatalytic performance. Herein, the stable organic–inorganic Z-scheme heterostructure was constructed through covalently connecting COF-366-Fe consisting of Fe-porphyrin and terephthaldehyde units with CeO2 by Schiff base reaction with an in-situ reaction strategy. The [email protected]2 core–shell Z-scheme heterojunction not only effectively integrated the light-harvesting capability, active metal centers of COF-366-Fe and strong oxidation ability of CeO2, but also promoted the separation and transfer of photoexcited carriers. The as-prepared [email protected]2 exhibited a photocatalytic CO yield of 66.2 μmol g−1 in 8 h with a 99 % selectivity under the visible light irradiation without additional photosensitizers and sacrificial agents, which was far superior to COF-366-Fe and CeO2. The remarkable promoted performance is ascribed to the covalently contact Z-scheme heterojunction interface, which benefited to facilitate the separation of photoexcited electron-hole pairs, as confirmed by the results of electronic paramagnetic resonance, time-resolved photoluminescence and in-situ XPS. This study provides an idea for designing highly-effective COF-based photocatalysts for artificial photosynthesis.
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