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Catalytic Synthesis of Indolines by Hydrogen Atom Transfer to Cobalt(III)–Carbene Radicals

机译:氢原子转移到钴(III)-碳自由基上的催化合成吲哚

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摘要

We report a new method for the synthesis of indolines from o‐aminobenzylidine N‐tosylhydrazones proceeding through a cobalt(III)–carbene radical intermediate. This methodology employs the use of inexpensive commercially available reagents and allows for the transformation of easily derivatized benzaldehyde‐derived precursors to functionalized indoline products. This transformation takes advantage of the known propensity of radicals to undergo rapid intramolecular 1,5‐hydrogen atom transfer (1,5‐HAT) to form more stabilized radical intermediates. Computational investigations using density functional theory identify remarkably low barriers for 1,5‐HAT and subsequent radical rebound displacement, providing support for the proposed mechanism. We explore the effect of a variety of nitrogen substituents, and highlight the importance of adequate resonance stabilization of radical intermediates to the success of the transformation. Furthermore, we evaluate the steric and electronic effects of substituents on the aniline ring. This transformation is the first reported example of the synthesis of nitrogen‐containing heterocycles from cobalt(III)–carbene radical precursors.
机译:我们报告了一种新的从邻氨基苄基N-甲苯磺酰基hydr通过钴(III)-卡宾自由基中间体合成吲哚的新方法。这种方法论使用廉价的市售试剂,并允许将易衍生的苯甲醛衍生的前体转化为功能化的吲哚啉产品。这种转化利用自由基的已知倾向来进行快速的分子内1,5-氢原子转移(1,5-HAT),形成更稳定的自由基中间体。使用密度泛函理论的计算研究确定了1,5-HAT的显着较低的障碍以及随后的自由基反弹位移,为拟议的机制提供了支持。我们探索了各种氮取代基的作用,并强调了自由基中间体充分共振稳定对成功转化的重要性。此外,我们评估了苯胺环上取代基的空间和电子效应。这种转变是从钴(III)-碳烯自由基前体合成含氮杂环的第一个报道实例。

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