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Electrochemical Synthesis of Hindered Primary and Secondary Amines via Proton-Coupled Electron Transfer

机译:质子耦合电子转移电化学合成受阻伯胺和仲胺

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摘要

Accessing hindered amines, particularly primary amines a to a fully substituted carbon center, is synthetically challenging. We report an electrochemical method to access such hindered amines starting from benchtop-stable iminium salts and cyanoheteroarenes. A wide variety of substituted heterocycles (pyridine, pyrimidine, pyrazine, purine, azaindole) can be utilized in the cross-coupling reaction, including those substituted with a halide, trifluoromethyl, ester, amide, or ether group, a heterocycle, or an unprotected alcohol or alkyne. Mechanistic insight based on DFT data, as well as cyclic voltammetry and NMR spectroscopy, suggests that a proton-coupled electron-transfer mechanism is operational as part of a hetero-biradical cross-coupling of α-amino radicals and radicals derived from cyanoheteroarenes.
机译:将受阻胺,尤其是伯胺α连接至完全取代的碳中心是合成上的挑战。我们报告了一种电化学方法,可从台式稳定的亚胺盐和氰基杂环芳烃开始获得此类受阻胺。多种取代的杂环(吡啶,嘧啶,吡嗪,嘌呤,氮杂吲哚)可用于交叉偶联反应,包括被卤素,三氟甲基,酯,酰胺或醚基,杂环或未保护的取代的杂环酒精或炔烃。基于DFT数据以及循环伏安法和NMR光谱学的机理研究表明,质子偶联电子转移机制可作为α-氨基自由基和氰基杂环芳烃衍生基团的异双自由基交叉偶联的一部分。

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