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Charge-transfer-directed radical substitution enables para-selective C-H functionalization

机译:电荷转移导向的自由基取代可实现对位选择性C-H功能化

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Efficient C-H functionalization requires selectivity for specific C-H bonds. Progress has been made for directed aromatic substitution reactions to achieve ortho and meta selectivity, but a general strategy for para-selective C-H functionalization has remained elusive. Herein we introduce a previously unappreciated concept that enables nearly complete para selectivity. We propose that radicals with high electron affinity elicit arene-to-radical charge transfer in the transition state of radical addition, which is the factor primarily responsible for high positional selectivity. We demonstrate with a simple theoretical tool that the selectivity is predictable and show the utility of the concept through a direct synthesis of aryl piperazines. Our results contradict the notion, widely held by organic chemists, that radical aromatic substitution reactions are inherently unselective. The concept of radical substitution directed by charge transfer could serve as the basis for the development of new, highly selective C-H functionalization reactions.
机译:有效的C-H功能化需要特定C-H键的选择性。定向芳族取代反应以实现邻位和间位选择性已经取得了进展,但对位选择性C-H功能化的一般策略仍然难以捉摸。在这里,我们介绍一个以前几乎未被理解的概念,它可以实现几乎完全的对位选择性。我们建议具有高电子亲和力的自由基在自由基加成的过渡态中引起芳烃到自由基的电荷转移,这是主要负责高位置选择性的因素。我们用简单的理论工具论证了选择性是可预测的,并通过直接合成芳基哌嗪显示了该概念的实用性。我们的结果与有机化学家普遍认为的自由基芳族取代反应本质上是非选择性的观点相矛盾。由电荷转移指导的自由基取代的概念可以作为开发新的,高度选择性的C-H官能化反应的基础。

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