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首页> 外文期刊>Angewandte Chemie >Recent Advances in Minisci-Type Reactions
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Recent Advances in Minisci-Type Reactions

机译:MINISCI型反应的最新进展

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摘要

Reactions that involve the addition of carbon-centered radicals to basic heteroarenes, followed by formal hydrogen atom loss, have become widely known as Minisci-type reactions. First developed into a useful synthetic tool in the late 1960s by Minisci, this reaction type has been in constant use over the last half century by chemists seeking to functionalize heterocycles in a rapid and direct manner, avoiding the need for de novo heterocycle synthesis. Whilst the originally developed protocols for radical generation remain in active use today, they have been joined in recent years by a new array of radical generation strategies that allow use of a wider variety of radical precursors that often operate under milder and more benign conditions. The recent surge of interest in new transformations based on free radical reactivity has meant that numerous choices are now available to a synthetic chemist looking to utilize a Minisci-type reaction. Radical-generation methods based on photoredox catalysis and electrochemistry have joined approaches which utilize thermal cleavage or the in situ generation of reactive radical precursors. This review will cover the remarkably large body of literature that has appeared on this topic over the last decade in an attempt to provide guidance to the synthetic chemist, as well as a perspective on both the challenges that have been overcome and those that still remain. As well as the logical classification of advances based on the nature of the radical precursor, with which most advances have been concerned, recent advances in control of various selectivity aspects associated with Minisci-type reactions will also be discussed.
机译:涉及将碳源于碳的基团加入碱性异质的反应,随后是正式的氢原子损失,已被广泛称为MINISCI型反应。首先在20世纪60年代后期开发了一个有用的合成工具,通过MINISCI,这种反应类型在过去半个世纪中,通过寻求快速直接的方式官能化杂环的化学家们一直在使用,避免对Novo杂环合成的需要。虽然目前最初开发的激进生成的协议仍然是积极使用,但近年来,他们已加入了一系列新的激进生成策略,允许使用更广泛的自由基前体,这些前体通常在更温和和更良好的良性条件下运行。最近基于自由基反应性的新转化兴趣已经意味着现在可以使用许多选择,这些选择可以使用Minisci型反应。基于Photoreox催化和电化学的自由基产生方法已经加入了利用热切割或原位产生反应性自由基前体的方法。该审查将涵盖在过去十年中出现在本课题上的显着大的文学,以便为合成化学家提供指导,以及对克服的挑战以及仍然存在的挑战的视角。除了基于自由基前体的性质的基础上的进步的逻辑分类,也将讨论与MINISCI型反应相关的各种选择性方面的最新进展。

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