异质结
光催化
材料科学
共价有机骨架
制氢
可见光谱
量子产额
共价键
氢
化学工程
量子效率
纳米技术
光化学
催化作用
光电子学
化学
有机化学
光学
物理
荧光
工程类
作者
Ahmed E. Hassan,Ahmed M. Elewa,Mai S. A. Hussien,Ahmed F. M. EL‐Mahdy,Islam M. A. Mekhemer,I.S. Yahia,Tarek A. Mohamed,Ho‐Hsiu Chou,Zhenhai Wen
标识
DOI:10.1016/j.jcis.2023.10.010
摘要
Designing heterostructure photocatalysts is a promising approach for developing highly efficient photocatalysts for hydrogen energy production. In this work, we synthesized a series of a covalent organic framework (COF)/g-C3N4 (CN) heterojunction photocatalysts, denoted as x % COF/CN (in which x indicates the weight % of COF and x = 5, 10, 20, 30, 40, 50, 90, 95, 100), for hydrogen production. The COF, which is a key component of the photocatalyst, was prepared by assembling benzothiadiazole (BT) and pyrene (Py) derivatives as building blocks. Integrating COF rods into the two-dimensional (2D) layered g-C3N4 structure significantly improved photocatalytic H2 production. The hybrid system (30 % COF/CN) displayed an outstanding hydrogen evolution rate (HER) of 27540 ± 805 μmol g-1h-1, outperforming most known COFs and g-C3N4-based photocatalysts, besides exhibiting stable photocatalytic performance. Moreover, the apparent quantum yield (AQY) was 15.5 ± 0.8 % at 420 nm. Experimental techniques and density functional theory (DFT) calculations demonstrated that the 30 % COF/CN heterostructure has broad visible-light absorption, adequate band energy levels, and the best chemical reactivity descriptors compared to the individual components, resulting in effective carrier separation and excellent performance. Our findings offer a valuable strategy for developing highly efficient and stable heterojunction photocatalysts for visible-light-driven H2 evolution.
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