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通过黄素和碘催化的C-H键活化实现需氧氧化C-C键形成

Aerobic oxidative C-C bond formation through C-H bond activation catalysed by flavin and iodine.

作者信息

Miyake Hazuki, Ishige Nico, Okai Hayaki, Iida Hiroki

机构信息

Department of Chemistry, Graduate School of Natural Science and Technology, Shimane University, 1060 Nishikawatsu, Matsue, Shimane 690-8504, Japan.

出版信息

Org Biomol Chem. 2024 Sep 25;22(37):7736-7742. doi: 10.1039/d4ob01317d.

Abstract

We report a metal/light-free aerobic oxidative C-C bond formation using sp C-H bond activation of tetrahydroisoquinolines catalyzed by flavin and iodine. The dual catalytic system enabled the oxidative Mannich and aza-Henry reactions by the cross-dehydrogenative coupling between two sp C-H bonds. Furthermore, the flavin-iodine-coupled catalysis was applied to the synthesis of pyrrolo[2,1-]isoquinolines through the sequential oxidative 1,3-dipolar cycloaddition and dehydrogenative aromatization. The biomimetic flavin catalysis efficiently activates molecular oxygen; thus the non-metal dual catalytic system enables green oxidative transformation using molecular oxygen as an environmentally friendly terminal oxidant which generates benign water.

摘要

我们报道了一种使用黄素和碘催化的四氢异喹啉的sp C-H键活化实现的无金属/无光照需氧氧化C-C键形成。该双催化体系通过两个sp C-H键之间的交叉脱氢偶联实现了氧化曼尼希反应和氮杂亨利反应。此外,黄素-碘偶联催化通过连续的氧化1,3-偶极环加成和脱氢芳构化应用于吡咯并[2,1-]异喹啉的合成。仿生黄素催化有效地活化分子氧;因此,这种无金属双催化体系能够使用分子氧作为环境友好的终端氧化剂实现绿色氧化转化,分子氧产生良性的水。

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