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Light-Enabled Radical 1,4-Aryl Migration Via a Phospho-Smiles Rearrangement

机译:通过磷光微笑重新排列的光使能直接的自由基1,4-芳基迁移

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Rearrangement reactions in organic chemistry are attractive strategies to build efficiently complex scaffolds, in just one step, from simple starting materials. Among them, aryl migrations are certainly one of the most useful and straightforward rearrangement for building attractive carbon-carbon bonds. Of note, anionic aryl migration reactions have been largely described compared to their radical counterparts. Recently, visible-light catalysis has proven its efficiency to generate such radical rearrangements due to the concomitant loss of a particle (often CO2 or SO2), which is the driving-force of the reaction. Here, we disclose a Smiles-type rearrangement, triggered by a phosphorus-containing unit (arylphosphoramidate), therefore called "phospho-Smiles" rearrangement, allowing a Csp(2)-Csp(2) bond formation thanks to a 1,4-aryl migration reaction. In addition, combining this approach with a radical hydroamination/amination reaction produces an amination/phospho-Smiles cascade particularly attractive, for instance, to investigate the synthesis of the phthalazine core, a scarcely described scaffold of interest for medicinal chemistry projects.
机译:有机化学中的重排反应是从简单的起始材料一步有效构建复杂支架的吸引人的策略。其中,芳基迁移无疑是构建有吸引力的碳-碳键的最有用和最直接的重排之一。值得注意的是,与自由基反应相比,阴离子芳基迁移反应在很大程度上得到了描述。最近,可见光催化已经证明了它能有效地产生这样的自由基重排,这是因为伴随的颗粒(通常是CO2或SO2)的损失是反应的驱动力。在这里,我们揭示了一种由含磷单元(芳基膦酰胺)触发的Smiles型重排,因此被称为“磷酸Smiles”重排,通过1,4-芳基迁移反应允许Csp(2)-Csp(2)键的形成。此外,将这种方法与自由基氢胺化/胺化反应相结合,产生了一种胺化/磷酸化反应,特别有吸引力,例如,用于研究邻苯二甲嗪核的合成,邻苯二甲嗪核是一种几乎不被描述的药物化学项目感兴趣的支架。

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