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将光催化产氢与关键氧化反应相结合。

Coupling Photocatalytic Hydrogen Production with Key Oxidation Reactions.

作者信息

Teng Jiayan, Li Wenlu, Wei Zhen, Hao Derek, Jing Lin, Liu Yuxi, Dai Hongxing, Zhu Yongfa, Ma Tianyi, Deng Jiguang

机构信息

Beijing Key Laboratory for Green Catalysis and Separation, Key Laboratory of Beijing on Regional Air Pollution Control, Key Laboratory of Advanced Functional Materials, Education Ministry of China, Beijing University of Technology, Beijing, 100124, China.

Department of Chemistry, Tsinghua University, Beijing, 100084, China.

出版信息

Angew Chem Int Ed Engl. 2024 Dec 9;63(50):e202416039. doi: 10.1002/anie.202416039. Epub 2024 Oct 31.

Abstract

Hydrogen represents a clean and sustainable energy source with wide applications in fuel cells and hydrogen energy storage systems. Photocatalytic strategies emerge as a green and promising solution for hydrogen production, which still reveals several critical challenges in enhancing the efficiency and stability and improving the whole value. This review systematically elaborates on various coupling approaches for photocatalytic hydrogen production, aiming to improve both efficiency and value through different oxidation half-reactions. Firstly, the fundamental mechanism is discussed for photocatalytic hydrogen production. Then, the advances, challenges, and opportunities are expanded for the coupling of photocatalytic hydrogen production, which focuses on the integration of value-added reactions including O production, HO production, biomass conversion, alcohol oxidation, and pollutants treatment. Finally, the challenges and outlook of photocatalytic H production technology are analyzed from the aspects of coupling hydrogen production value, photocatalyst design and reaction system construction. This work presents a holistic view of the field, emphasizing the synergistic benefits of coupled reactions and their practical application potential, rather than focusing on catalysts or single reaction systems. This review provides valuable references for the development and application of photocatalytic hydrogen production in energy conversion and environmental conservation through sustainable, eco-friendly and economic pathways.

摘要

氢是一种清洁且可持续的能源,在燃料电池和氢能存储系统中有着广泛应用。光催化策略作为一种绿色且有前景的制氢解决方案应运而生,不过在提高效率、稳定性以及提升整体价值方面仍面临若干关键挑战。本综述系统阐述了光催化制氢的各种耦合方法,旨在通过不同的氧化半反应提高效率和价值。首先,讨论了光催化制氢的基本机制。然后,拓展了光催化制氢耦合的进展、挑战和机遇,重点关注包括氧气生成、过氧化氢生成、生物质转化、醇氧化和污染物处理等增值反应的整合。最后,从耦合产氢价值、光催化剂设计和反应体系构建等方面分析了光催化制氢技术的挑战与展望。这项工作呈现了该领域的整体观点,强调耦合反应的协同效益及其实际应用潜力,而非聚焦于催化剂或单一反应体系。本综述为通过可持续、环保且经济的途径将光催化制氢应用于能量转换和环境保护提供了有价值的参考。

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