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涉及水的有机物种的电化学氢化和氧化。

Electrochemical hydrogenation and oxidation of organic species involving water.

作者信息

Liu Cuibo, Chen Fanpeng, Zhao Bo-Hang, Wu Yongmeng, Zhang Bin

机构信息

Institute of Molecular Plus, Department of Chemistry, School of Science, Tianjin University, Tianjin, China.

Tianjin Key Laboratory of Molecular Optoelectronic Sciences, Frontiers Science Center for Synthetic Biology, Tianjin University, Tianjin, China.

出版信息

Nat Rev Chem. 2024 Apr;8(4):277-293. doi: 10.1038/s41570-024-00589-z. Epub 2024 Mar 25.

Abstract

Fossil fuel-driven thermochemical hydrogenation and oxidation using high-pressure H and O are still popular but energy-intensive CO-emitting processes. At present, developing renewable energy-powered electrochemical technologies, especially those using clean, safe and easy-to-handle reducing agents and oxidants for organic hydrogenation and oxidation reactions, is urgently needed. Water is an ideal carrier of hydrogen and oxygen. Electrochemistry provides a powerful route to drive water splitting under ambient conditions. Thus, electrochemical hydrogenation and oxidation transformations involving water as the hydrogen source and oxidant, respectively, have been developed to be mild and efficient tools to synthesize organic hydrogenated and oxidized products. In this Review, we highlight the advances in water-participating electrochemical hydrogenation and oxidation reactions of representative organic molecules. Typical electrode materials, performance metrics and key characterization techniques are firstly introduced. General electrocatalyst design principles and controlling the microenvironment for promoting hydrogenation and oxygenation reactions involving water are summarized. Furthermore, paired hydrogenation and oxidation reactions are briefly introduced before finally discussing the challenges and future opportunities of this research field.

摘要

使用高压氢气和氧气的化石燃料驱动的热化学氢化和氧化仍然很常见,但却是能源密集型的碳排放过程。目前,迫切需要开发可再生能源驱动的电化学技术,特别是那些使用清洁、安全且易于处理的还原剂和氧化剂进行有机氢化和氧化反应的技术。水是氢和氧的理想载体。电化学提供了一条在环境条件下驱动水分解的有效途径。因此,分别以水作为氢源和氧化剂的电化学氢化和氧化转化已发展成为合成有机氢化和氧化产物的温和且高效的工具。在本综述中,我们重点介绍了代表性有机分子参与水的电化学氢化和氧化反应的进展。首先介绍了典型的电极材料、性能指标和关键表征技术。总结了一般的电催化剂设计原则以及控制涉及水的氢化和氧化反应的微环境。此外,在最后讨论该研究领域的挑战和未来机遇之前,简要介绍了成对的氢化和氧化反应。

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