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光催化用于有机物选择性转移氢化研究进展

潘晟昊 陈伦刚 张兴华 张琦 马隆龙 刘建国

化工进展2024,Vol.43Issue(12):6723-6734,12.
化工进展2024,Vol.43Issue(12):6723-6734,12.DOI:10.16085/j.issn.1000-6613.2023-1957

光催化用于有机物选择性转移氢化研究进展

Research progress on photocatalysis for selective transfer hydrogenation of organic compounds

潘晟昊 1陈伦刚 2张兴华 2张琦 2马隆龙 2刘建国2

作者信息

  • 1. 东南大学-蒙纳士大学苏州联合研究生院,江苏 苏州 215123
  • 2. 东南大学能源与环境学院,江苏 南京 210096
  • 折叠

摘要

Abstract

In recent decades,the development of photocatalysis has opened up new paths for the efficient utilization of energy.Transfer hydrogenation based on photocatalysis offers advantages such as the absence of gaseous hydrogen,mild reaction conditions,reliance on clean and renewable energy sources,and controllable reaction processes.In this paper,research progress in recent years on photocatalysis for selective transfer hydrogenation of organic compounds is reviewed.Firstly,the mechanism of photocatalytic transfer hydrogenation is presented.Secondly,based on the different functional groups being hydrogenated,the research achievements of various photocatalysts and reaction systems are summarized and the reaction mechanism of typical catalytic systems is explained.New hydrogenation systems and ways of substrate valorization are also introduced.Finally,it is pointed out that photocatalytic hydrogenation still encounters challenges such as low reaction rate and low quantum efficiency,limited photocatalysts suitable for visible light,incompatible to traditional reactors,and the use of power-consuming simulated light sources.In this regard,the prospects including the combination of photocatalysis and electrocatalysis,the development of new photocatalysts,the design of reactors suitable for photocatalysis,and the direct utilization of solar energy for photocatalysis,are made.

关键词

催化/光化学/加氢/选择性/能源

Key words

catalysis/photochemistry/hydrogenation/selectivity/energy

分类

化学化工

引用本文复制引用

潘晟昊,陈伦刚,张兴华,张琦,马隆龙,刘建国..光催化用于有机物选择性转移氢化研究进展[J].化工进展,2024,43(12):6723-6734,12.

基金项目

国家自然科学基金(51976225) (51976225)

中央高校基本科研业务费专项(2242022R10058). (2242022R10058)

化工进展

OA北大核心CSTPCD

1000-6613

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