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电/光催化烯烃衍生自由基阳离子化学:在合成应用中的最新进展。

Electro-/photocatalytic alkene-derived radical cation chemistry: recent advances in synthetic applications.

机构信息

Key Laboratory of Organic Chemistry of Jiangxi Province, Jiangxi Science & Technology Normal University, Nanchang, 330013, China.

Key Laboratory of Jiangxi Province for Persistent Pollutants Control and Resources Recycle, Nanchang Hangkong University, Nanchang 330063, China.

出版信息

Chem Soc Rev. 2022 Aug 15;51(16):7206-7237. doi: 10.1039/d2cs00013j.

Abstract

Alkene-derived radical cations are versatile reactive intermediates and have been widely applied in the construction of complex functionalized molecules and cyclic systems for chemical synthesis. Therefore, the synthetic application of these alkene-derived radical cations represents a powerful and green tool that can be used to achieve the functionalization of alkenes partially because the necessity of stoichiometric external chemical oxidants and/or hazardous reaction conditions is eliminated. This review summarizes the recent advances in the synthetic applications of the electro-/photochemical alkene-derived radical cations, emphasizing the key single-electron oxidation steps of the alkenes, the scope and limitations of the substrates, and the related reaction mechanisms. Using electrocatalysis and/or photocatalysis, single electron transfer (SET) oxidation of the CC bonds in the alkenes occurs, generating the alkene-derived radical cations, which sequentially enables the functionalization of translocated radical cations to occur in two ways: the first involves direct reaction with a nucleophile/radical or two molecules of nucleophiles to realize hydrofunctionalization, difunctionalization and cyclization; and the second involves the transformation of the alkene-derived radical cations into carbon-centered radicals using a base followed by radical coupling or oxidative nucleophilic coupling.

摘要

烯基衍生的自由基阳离子是多功能的反应中间体,已广泛应用于复杂功能化分子和环状系统的构建中,用于化学合成。因此,这些烯基衍生的自由基阳离子的合成应用代表了一种强大且绿色的工具,可以用于实现烯烃的部分功能化,部分原因是消除了化学计量外部氧化剂和/或危险反应条件的必要性。本综述总结了电/光化学烯基衍生的自由基阳离子的合成应用的最新进展,强调了烯烃的关键单电子氧化步骤、底物的范围和局限性以及相关的反应机制。通过电化学催化和/或光催化,烯烃中的 CC 键发生单电子转移 (SET) 氧化,生成烯基衍生的自由基阳离子,随后通过两种方式使迁移自由基阳离子的功能化发生:第一种方法涉及与亲核试剂/自由基或两个亲核试剂直接反应,以实现氢官能化、双官能化和环化;第二种方法涉及使用碱将烯基衍生的自由基阳离子转化为碳中心自由基,然后进行自由基偶联或氧化亲核偶联。

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