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The direct arylation of allylic sp3 C–H bonds via organocatalysis and photoredox catalysis

机译:通过有机催化和光氧化还原催化烯丙基sp3 C–H键直接芳基化

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摘要

The direct functionalization of unactivated sp3 C–H bonds is still one of the most challenging problems facing synthetic organic chemists. The appeal of such transformations derives from their capacity to facilitate the construction of complex organic molecules via the coupling of simple and otherwise inert building blocks, without introducing extraneous functional groups. Despite notable recent efforts, the establishment of general and mild strategies for the engagement of sp3 C–H bonds in carbon–carbon bond forming reactions has proven difficult. Within this context, the discovery of chemical transformations that are able to directly functionalize allylic methyl, methylene, and methine carbons in a catalytic manner is a priority. While protocols for direct allylic C–H oxidation and amination have become widely established,, the engagement of allylic substrates in carbon–carbon bond-forming reactions has thus far required the use of pre-functionalized coupling partners. In particular, the direct arylation of non-functionalized allylic systems would enable chemists to rapidly access a series of known pharmacophores, though a general solution to this longstanding challenge remains elusive. We describe herein the use of both photoredox and organic catalysis to accomplish the first mild, broadly effective direct allylic C–H arylation. This new C–C bond-forming reaction readily accommodates a broad range of alkene and electron-deficient arene reactants and has been used in the direct arylation of benzylic C–H bonds.
机译:未活化的sp 3 CH键的直接官能化仍然是合成有机化学家面临的最具挑战性的问题之一。这种转化的吸引力来自其通过简单且惰性的构建基团的偶联而无需引入无关的官能团来促进复杂有机分子的构建的能力。尽管最近做出了显着的努力,但 很难建立使sp 3 C–H键参与碳-碳键形成反应的一般和温和的策略。在这种情况下,发现能够以催化方式直接官能化烯丙基甲基,亚甲基和次甲基碳的化学转化是当务之急。尽管直接烯丙基CH-H氧化和胺化的规程已得到广泛确立, 迄今为止,烯丙基底物在碳-碳键形成反应中的参与一直要求使用预功能化的偶联伙伴。 特别地,尽管解决这一长期挑战的一般解决方案仍然难以捉摸,但非功能化的烯丙基系统的直接芳基化将使化学家能够快速使用一系列已知的药效团。我们在这里描述了同时使用光氧化还原和有机催化来完成第一个温和,广泛有效的直接烯丙基CH芳基化反应。这种新的C–C键形成反应可轻松适应各种烯烃和缺电子的芳烃反应物,并已用于苄基C–H键的直接芳基化。

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