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可见光光催化:它在有机合成中会产生影响吗?

Visible-Light Photocatalysis: Does It Make a Difference in Organic Synthesis?

作者信息

Marzo Leyre, Pagire Santosh K, Reiser Oliver, König Burkhard

机构信息

Institut für Organische Chemie, Universität Regensburg, Universitätsstrasse 31, 93053, Regensburg, Germany.

出版信息

Angew Chem Int Ed Engl. 2018 Aug 6;57(32):10034-10072. doi: 10.1002/anie.201709766. Epub 2018 Jun 29.

Abstract

Visible-light photocatalysis has evolved over the last decade into a widely used method in organic synthesis. Photocatalytic variants have been reported for many important transformations, such as cross-coupling reactions, α-amino functionalizations, cycloadditions, ATRA reactions, or fluorinations. To help chemists select photocatalytic methods for their synthesis, we compare in this Review classical and photocatalytic procedures for selected classes of reactions and highlight their advantages and limitations. In many cases, the photocatalytic reactions proceed under milder reaction conditions, typically at room temperature, and stoichiometric reagents are replaced by simple oxidants or reductants, such as air, oxygen, or amines. Does visible-light photocatalysis make a difference in organic synthesis? The prospect of shuttling electrons back and forth to substrates and intermediates or to selectively transfer energy through a visible-light-absorbing photocatalyst holds the promise to improve current procedures in radical chemistry and to open up new avenues by accessing reactive species hitherto unknown, especially by merging photocatalysis with organo- or metal catalysis.

摘要

在过去十年中,可见光光催化已发展成为有机合成中一种广泛使用的方法。已报道了许多重要转化反应的光催化变体,如交叉偶联反应、α-氨基官能化反应、环加成反应、全反式维甲酸(ATRA)反应或氟化反应。为帮助化学家为其合成选择光催化方法,我们在本综述中比较了选定反应类型的经典方法和光催化方法,并突出了它们的优点和局限性。在许多情况下,光催化反应在更温和的反应条件下进行,通常是在室温下,化学计量试剂被简单的氧化剂或还原剂取代,如空气、氧气或胺。可见光光催化在有机合成中会产生影响吗?通过可见光吸收光催化剂来回穿梭电子到底物和中间体或选择性地转移能量,有望改进当前的自由基化学方法,并通过获取迄今未知的活性物种开辟新途径,特别是通过将光催化与有机或金属催化相结合。

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