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Catalytic C-H Trifluoromethoxylation of Arenes and Heteroarenes

机译:催化C-H三氟甲氧基氧基化芳烃和杂种

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摘要

The intermolecular C-H trifluoromethoxylation of arenes remains a long-standing and unsolved problem in organic synthesis. Herein, we report the first catalytic protocol employing a novel trifluoromethoxylating reagent and redox-active catalysts for the direct (hetero)aryl C-H trifluoromethoxylation. Our approach is operationally simple, proceeds at room temperature, uses easy-to-handle reagents, requires only 0.03mol% of redox-active catalysts, does not need specialized reaction apparatus, and tolerates a wide variety of functional groups and complex structures such as sugars and natural product derivatives. Importantly, both ground-state and photoexcited redox-active catalysts are effective. Detailed computational and experimental studies suggest a unique reaction pathway where photoexcitation of the trifluoromethoxylating reagent releases the OCF3 radical that is trapped by (hetero)arenes. The resulting cyclohexadienyl radicals are oxidized by redox-active catalysts and deprotonated to form the desired products of trifluoromethoxylation.
机译:芳烃的分子间C-H三氟甲氧基化仍然是有机合成中的长期和未解决的问题。在此,我们报告了用于直接(杂)芳基C-H三氟甲氧基化的新型三氟甲氧化试剂和氧化还原活性催化剂的第一催化方案。我们的方法在操作上简单,室温进行,使用易于处理的试剂,仅需要0.03mol%的氧化还原活性催化剂,不需要专用反应装置,并耐受各种官能团和复杂的结构,如糖和天然产品衍生物。重要的是,地态和光透过的氧化还原活性催化剂都是有效的。详细的计算和实验研究表明了一种独特的反应途径,其中三氟甲氧化试剂的光筛选释放由(杂)植物被捕获的OCF3自由基。由此得到的环己二烯基团通过氧化还原活性催化剂氧化并反驳以形成三氟甲氧基化的所需产物。

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