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Recent Advances of Oxidative Radical Cross-Coupling Reactions: Direct alpha-C(sp(3))-H Bond Functionalization of Ethers and Alcohols

机译:氧化自由基交联反应的最新进展:直接α-C(SP(3)) - H键官能化和醇的官能化

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摘要

Oxygen-containing heterocycles are an important class of compounds with diverse biological activities. In recent years, direct a-C-H functionalization of inexpensive and abundant readily available ethers and alcohols by oxidative radical cross-coupling with different nucleophilic partners (C-H, N-H, O-H and S-S), leading to the construction of CC and C-X (X=C, N, O, S) bonds, has emerged as one of the vital strategies among oxidative cross-coupling reactions. Owing to the features of being atomeconomic, environmentally benign, having a simple operation and biologically properties, a series of ether alpha-C(sp(3))-H bond activation reactions have been developed by metal or metal-free systems via the radical oxidative coupling pathway, since the radical oxidative coupling reactions have wide range of applications. This review aims to highlight the recent advances in direct alpha-C(sp(3))-H bond functionalization of ethers and alcohols via radical oxidative process.
机译:含氧杂环是具有不同生物活性的重要类化合物。 近年来,通过氧化自由基交叉偶联与不同的亲核合作伙伴(CH,NH,OH和SS)进行廉价和丰富的易用ethers和醇的直接ACH功能化,导致CC和CX的构建(X = C,n o,s)债券,已成为氧化交叉偶联反应中的重要策略之一。 由于具有简单操作和生物学性质的紫色经济,环境良性的特征,通过自由基通过金属或无金属系统开发了一系列醚α-C(SP(3))-H键活化反应 氧化偶联途径,因为自由基氧化偶联反应具有广泛的应用。 该审查旨在通过自由基氧化过程突出醚和醇的直接α-C(SP(3)) - H键官能化的最新进展。

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