A Radical Approach to Anionic Chemistry: Synthesis of Ketones, Alcohols, and Amines
作者:Shengyang Ni、Natalia M. Padial、Cian Kingston、Julien C. Vantourout、Daniel C. Schmitt、Jacob T. Edwards、Monika M. Kruszyk、Rohan R. Merchant、Pavel K. Mykhailiuk、Brittany B. Sanchez、Shouliang Yang、Matthew A. Perry、Gary M. Gallego、James J. Mousseau、Michael R. Collins、Robert J. Cherney、Pavlo S. Lebed、Jason S. Chen、Tian Qin、Phil S. Baran
DOI:10.1021/jacs.9b02238
日期:2019.4.24
Historically accessed through two-electron, anionic chemistry, ketones, alcohols, and amines are of foundational importance to the practice of organic synthesis. After placing this work in proper historical context, this Article reports the development, full scope, and a mechanistic picture for a strikingly different way of forging such functional groups. Thus, carboxylic acids, once converted to redox-active
历史上通过二电子、阴离子化学、酮、醇和胺进行访问对于有机合成的实践具有基础重要性。在将这项工作置于适当的历史背景下之后,本文报告了形成此类功能组的截然不同的方式的发展、全范围和机械图。因此,羧酸一旦转化为氧化还原活性酯 (RAE),就可以用作形式上与其他羧酸衍生物(生产酮)、亚胺(生产苄胺)或醛(生产醇)的亲核偶联伙伴。这些反应一致温和,操作简单,并且在酮合成的情况下,范围很广(包括一些简化合成问题和平行合成的应用)。最后,