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Phosphite mediated molecular editing via switch to meta-C–H alkylation of isoquinolines: emergence of a distinct photochemical 13 N to C rearrangement

机译:亚磷酸盐通过异喹啉的 meta-C-H 烷基化介导的分子编辑:出现独特的光化学 13 N 到 C 重排

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摘要

The isoquinoline core is present in one of the largest subsets of bioactive natural products. The multifunctional isoquinoline core exerts diverse bioactivity, resulting in the development of numerous isoquinoline-based drugs and molecules that are currently under clinical trials. We developed a new approach for phosphite-mediated [1,2] alkyl migration for an overall ortho-C–H alkylation via N-alkylation of isoquinoline. Tuning the phosphite-mediated protocol to switch the site selectivity would expedite direct and diverse multi-C–H bond functionalization. We report a new approach starting with a simple N-alkylation of isoquinoline with sterically and electronically diverse alkyl bromides for their phosphite-mediated photochemical [1,3] N to C rearrangement followed by a rearomatization sequence that leads to meta-C–H (C4) alkylation. Combined experimental and computational studies unveiled the emergence of an unprecedented C–N bond cleavage pathway from the singlet excited state of the enamine-type intermediate. Our radical bond-cleavage pathway favors substituted alkyl group migration that complements the recently successful meta-alkylation methods with smaller and more reactive electrophiles. This switch in site selectivity via tuning the phosphite-mediated protocol resulted in sequential C–H difunctionalization of isoquinoline including regiodivergent ortho, meta-dialkylations of isoquinolines.
机译:异喹啉核心存在于生物活性天然产物的最大亚群之一中。多功能异喹啉核心发挥多种生物活性,导致开发了许多基于异喹啉的药物和分子,目前正在进行临床试验。我们开发了一种亚磷酸盐介导的 [1,2] 烷基迁移的新方法,通过异喹啉的 N-烷基化进行整体邻位 C-H 烷基化。调整亚磷酸盐介导的方案以切换位点选择性将加速直接和多样化的多 C-H 键官能化。我们报道了一种新方法,首先是异喹啉与空间和电子不同的烷基溴进行简单的 N-烷基化反应,用于亚磷酸盐介导的光化学 [1,3] N 到 C 重排,然后是导致 meta-C-H (C4) 烷基化的再芳构化序列。结合实验和计算研究揭示了从 enamine 型中间体的单重态激发态出现前所未有的 C-N 键裂解途径。我们的自由基键裂解途径有利于取代烷基迁移,这与最近成功的间烷基化方法相辅相成,使用更小、反应性更强的亲电试剂。通过调整亚磷酸盐介导的方案实现位点选择性的这种转换导致异喹啉的连续 C-H 二官能化,包括异喹啉的区域发散邻位、间二元二官能化。

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