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铜催化的饱和酮的γ-C(sp3)-H 脱氢氨化反应合成多取代苯胺。

Copper-catalyzed dehydrogenative γ-C(sp)-H amination of saturated ketones for synthesis of polysubstituted anilines.

机构信息

School of Physical Science and Technology, ShanghaiTech University, Shanghai, 201210, China.

State Key Laboratory of Structural Chemistry, Center for Excellence in Molecular Synthesis, Fujian Institute of Research on the Structure of Matter, Chinese Academy of Sciences, Fuzhou, 350002, China.

出版信息

Nat Commun. 2019 Aug 15;10(1):3681. doi: 10.1038/s41467-019-11624-9.

Abstract

Metal-catalyzed β-C-H functionalization of saturated carbonyls via dehydrogenative desaturation proved to be a powerful tool for simplifying synthesis of valuable β-substituted carbonyls. Here, we report a copper-catalyzed dehydrogenative γ-C(sp)-H amination of saturated ketones that initiates the three-component coupling of saturated ketones, amines and N-substituted maleimides to construct polysubstituted anilines. The protocol presented herein enables both linear and α-branched butanones to couple a wide spectrum of amines and various N-substituted maleimides to produce diverse tetra- or penta-substituted anilines in fair-to-excellent yields with good functional group tolerance. The mechanism studies support that this ketone dehydrogenative γ-C(sp)-H amination was triggered by the ketone α,β-dehydrogenation desaturation that activates the adjacent γ-C(sp)-H bond towards functionalization. This α,β-dehydrogenation desaturation-triggered cascade sequence opens up a new avenue to the remote C(sp)-H functionalization of saturated ketones and has the potential to enable the rapid syntheses of complex compounds from simple starting materials.

摘要

金属催化的饱和羰基β-C-H 功能化通过脱氢去饱和被证明是简化有价值的β取代羰基合成的有力工具。在这里,我们报告了铜催化的饱和酮的脱氢γ-C(sp)-H 氨化,该反应引发了饱和酮、胺和 N-取代马来酰亚胺的三组分偶联,构建了多取代苯胺。本文所提出的方案使直链和α-支链的丁酮能够与广泛的胺和各种 N-取代马来酰亚胺偶联,以中等到优异的收率得到多种四取代或五取代苯胺,具有良好的官能团耐受性。机理研究支持,这种酮的脱氢γ-C(sp)-H 氨化是由酮的α,β-脱氢去饱和引发的,该反应使相邻的γ-C(sp)-H 键活化以进行功能化。这种α,β-脱氢去饱和引发的级联序列为饱和酮的远程 C(sp)-H 功能化开辟了新途径,并有可能使复杂化合物能够从简单的起始原料快速合成。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3a33/6695438/d6c7e7dfece4/41467_2019_11624_Fig1_HTML.jpg

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