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镍催化的烯烃配体控制区域发散性还原双碳官能团化反应

Ni-Catalyzed Ligand-Controlled Regiodivergent Reductive Dicarbofunctionalization of Alkenes.

作者信息

Pan Qi, Ping Yuanyuan, Wang Yifan, Guo Ya, Kong Wangqing

机构信息

The Institute for Advanced Studies (IAS), Wuhan University, Wuhan 430072, People's Republic of China.

出版信息

J Am Chem Soc. 2021 Jul 14;143(27):10282-10291. doi: 10.1021/jacs.1c03827. Epub 2021 Jun 23.

Abstract

Transition-metal-catalyzed dicarbofunctionalization of alkenes involving intramolecular Heck cyclization followed by intermolecular cross-coupling has emerged as a powerful engine for building heterocycles with sterically congested quaternary carbon centers. However, only exo-cyclization/cross-coupling products can be obtained; endo-selective cyclization/cross-coupling has not been reported yet and still poses a formidable challenge. We herein report the first example of catalyst-controlled dicarbofunctionalization of alkenes for the regiodivergent synthesis of five- and six-membered benzo-fused lactams bearing all-carbon quaternary centers. Using a chiral Pyrox- or Phox-type bidentate ligand, 5-exo cyclization/cross-couplings proceed favorably to produce indole-2-ones in good yields with excellent regioselectivity and enantioselectivities (up to 98% ee). When C6-carboxylic acid-modified 2,2'-bipyridine was used as the ligand, 3,4-dihydroquinolin-2-ones were obtained in good yields through 6-endo-selective cyclization/cross-coupling processes. This transformation is modular and tolerant of a variety of functional groups. The ligand rather than the substrate structures precisely dictates the regioselectivity pattern. Moreover, the synthetic value of this regiodivergent protocol was demonstrated by the preparation of biologically relevant molecules and structural scaffolds.

摘要

涉及分子内Heck环化随后分子间交叉偶联的过渡金属催化烯烃双碳官能化反应,已成为构建具有空间拥挤季碳中心的杂环化合物的有力手段。然而,目前只能得到外型环化/交叉偶联产物;内型选择性环化/交叉偶联尚未见报道,仍然是一个巨大的挑战。我们在此报道了首例通过催化剂控制的烯烃双碳官能化反应实现区域发散性合成含全碳季碳中心的五元及六元苯并内酰胺的方法。使用手性Pyrox或Phox型双齿配体时,5-外型环化/交叉偶联反应顺利进行,以良好的收率、优异的区域选择性和对映选择性(高达98% ee)生成吲哚-2-酮。当使用C6-羧酸修饰的2,2'-联吡啶作为配体时,通过6-内型选择性环化/交叉偶联过程可高产率地得到3,4-二氢喹啉-2-酮。该转化反应具有模块化特点,对多种官能团具有耐受性。决定区域选择性模式的精确因素是配体而非底物结构。此外,通过制备具有生物学相关性的分子和结构骨架,证明了这种区域发散性方法的合成价值。

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