化学
反应性(心理学)
电子顺磁共振
激进的
电化学
光化学
氢原子
磺胺
反应中间体
反应机理
电子转移
计算化学
有机化学
物理化学
催化作用
核磁共振
电极
病理
替代医学
物理
医学
烷基
作者
Yichang Liu,Biyin Shi,Zhao Liu,Renfei Gao,Cunlong Huang,Hesham Alhumade,Shengchun Wang,Xiaotian Qi,Aiwen Lei
摘要
Electrochemical synthesis has been rapidly developed over the past few years, while a vast majority of the reactions proceed through a radical pathway. Understanding the properties of radical intermediates is crucial in the mechanistic study of electrochemical transformations and will be beneficial for developing new reactions. Nevertheless, it is rather difficult to determine the "live" radical intermediates due to their high reactivity. In this work, the formation and structure of sulfonamide N-centered radicals have been researched directly by using the time-resolved electron paramagnetic resonance (EPR) technique under electrochemical conditions. Supported by the EPR results, the reactivity of N-centered radicals as a mediator in the hydrogen atom transfer (HAT) approach has been discussed. Subsequently, these mechanistic study results have been successfully utilized in the discovery of an unactivated C(sp3)–H arylation reaction. The kinetic experiments have revealed the rate-determined step is the anodic oxidation of sulfonamides.
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