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采用简单方法设计共价有机框架/二维石墨相氮化碳异质结构以增强光催化产氢性能

Designing of covalent organic framework/2D g-CN heterostructure using a simple method for enhanced photocatalytic hydrogen production.

作者信息

Hassan Ahmed E, Elewa Ahmed M, Hussien Mai S A, El-Mahdy Ahmed F M, Mekhemer Islam M A, Yahia Ibrahim S, Mohamed Tarek A, Chou Ho-Hsiu, Wen Zhenhai

机构信息

CAS Key Laboratory of Design and Assembly of Functional Nanostructures, and Fujian Provincial Key Laboratory of Nanomaterials, Fujian Institute of Research on the Structure of Matter, Chinese Academy of Sciences, Fuzhou, Fujian 350002, China; University of Chinese Academy of Sciences, Beijing 100049, China; Department of Chemistry, Faculty of Science, Al-Azhar University, Nasr City 11884, Cairo, Egypt.

Department of Chemical Engineering, National Tsing Hua University, Hsinchu 300044, Taiwan; Nuclear Chemistry Department, Hot Laboratories Center, Atomic Energy Authority, Cairo 13759, Egypt.

出版信息

J Colloid Interface Sci. 2024 Jan;653(Pt B):1650-1661. doi: 10.1016/j.jcis.2023.10.010. Epub 2023 Oct 4.

Abstract

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-CN (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-CN structure significantly improved photocatalytic H production. The hybrid system (30 % COF/CN) displayed an outstanding hydrogen evolution rate (HER) of 27540 ± 805 μmol gh, outperforming most known COFs and g-CN-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 H evolution.

摘要

设计异质结构光催化剂是开发用于氢能生产的高效光催化剂的一种有前途的方法。在这项工作中,我们合成了一系列共价有机框架(COF)/g-CN(CN)异质结光催化剂,记为x% COF/CN(其中x表示COF的重量百分比,x = 5、10、20、30、40、50、90、95、100),用于制氢。作为光催化剂关键组分的COF是通过将苯并噻二唑(BT)和芘(Py)衍生物作为结构单元组装制备的。将COF棒整合到二维(2D)层状g-CN结构中显著提高了光催化产氢性能。混合体系(30% COF/CN)表现出27540±805 μmol g h的出色析氢速率(HER),除了具有稳定的光催化性能外,还优于大多数已知的COF和基于g-CN的光催化剂。此外,在420 nm处的表观量子产率(AQY)为15.5±0.8%。实验技术和密度泛函理论(DFT)计算表明,与单个组分相比,30% COF/CN异质结构具有宽可见光吸收、合适的能带能级和最佳的化学反应描述符,从而实现了有效的载流子分离和优异的性能。我们的研究结果为开发用于可见光驱动析氢的高效稳定异质结光催化剂提供了有价值的策略。

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