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Divergent functionalization of alkenes enabled by photoredox activation of CDFA and α-halo carboxylic acids

机译:CDFA 和 α-halo 羧酸的光氧化还原活化实现烯烃的不同官能团化

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摘要

Herein we present our studies on the solvent-controlled difunctionalization of alkenes utilizing chlorodifluoroacetic acid (CDFA) and α-halo carboxylic acids for the synthesis of γ-lactones, γ-lactams and α,α-difluoroesters. Mechanistic insights revealed that photocatalytic reductive mesolytic cleavage of the C–X bond delivers elusive α-carboxyl alkyl radicals. In the presence of an olefin molecule, this species acts as a unique bifunctional intermediate allowing for stipulated formation of C–O, C–N and C–H bonds on Giese-type adducts via single electron transfer (SET) or hydrogen atom transfer (HAT) events. These protocols exhibit great efficiency across a broad spectrum of readily available α-halo carboxylic acids and are amenable to scalability in both batch and flow. To demonstrate the versatility of this concept, the synthesis of (±)-boivinianin A, its fluorinated analog and eupomatilone-6 natural products was successfully accomplished.
机译:在本文中,我们介绍了利用氯二氟乙酸 (CDFA) 和 α-卤代羧酸合成γ-内酯、γ-内酰胺和 α,α-二氟酯的溶剂控制烯烃二官能化的研究。机理见解表明,C-X 键的光催化还原介解裂解会产生难以捉摸的 α-羧基烷基自由基。在烯烃分子存在下,该物质充当独特的双功能中间体,允许通过单电子转移 (SET) 或氢原子转移 (HAT) 事件在 Giese 型加合物上形成规定的 C-O、C-N 和 C-H 键。这些方案在广泛的现成 α-halo 羧酸中表现出极高的效率,并且适合批次和流程的可扩展性。为了证明这一概念的多功能性,成功完成了 (±)-boivinianin A、其氟化类似物和依波马替龙-6 天然产物的合成。

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