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Push-pull-pull interactions of 2D imide-imine-based covalent organic framework to promote charge separation in photocatalytic hydrogen production
Journal article   Open access   Peer reviewed

Push-pull-pull interactions of 2D imide-imine-based covalent organic framework to promote charge separation in photocatalytic hydrogen production

Islam M. A. Mekhemer, Mohamed M. Elsenety, Ahmed M. Elewa, Khanh Do Gia Huynh, Maha Mohamed Samy, Mohamed Gamal Mohamed, Dalia M. Dorrah, Dung Chau Kim Hoang, Ahmed Fouad Musa, Shiao-Wei Kuo, …
Journal of materials chemistry. A, Materials for energy and sustainability, Vol.12(18), pp.10790-10798
08/05/2024

Abstract

Chemistry Chemistry, Physical Energy & Fuels Materials Science, Multidisciplinary Science & Technology Materials Science Physical Sciences Technology
Photocatalytic hydrogen production through water splitting provides a promising route towards renewable energy generation. However, constructing photocatalytically active covalent organic frameworks with high charge separation remains challenging. Herein, we demonstrate for the first time the use of 2D imide-imine-based covalent organic frameworks as new photocatalysts for the hydrogen evolution reaction (HER) under visible light irradiation. The main achievement is incorporating donor and dual acceptors, including weak electron-deficient imine and strong electron-deficient imide groups within the 2D COF backbone that create favorable push-pull-pull intramolecular charge transfer to promote charge separation after photoexcitation. DFT and NBO calculations revealed the strong integration of donor and dual acceptors with a synergistic interplay enhancing spatial charge transfer and separation. The synthesized COFs show significantly high thermal stability >400 degrees C with a high energy barrier for degradation. Moreover, Py-DNII-COF exhibited a 104-fold enhancement in hydrogen evolution compared to TFPB-DNII-COF. Py-DNII-COF demonstrated excellent stability and hydrogen evolution of 625 mu mol h(-1) g(-1) over 48 hours.
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https://doi.org/10.1039/d4ta01108bView
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