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基于偶氮甲酰胺的对映选择性区域发散性不对称1,2-二胺化反应。

Azocarboxamide-enabled enantioselective regiodivergent unsymmetrical 1,2-diaminations.

作者信息

Fu Yun-Dong, Zhang Han, Li Bei-Bei, Huang Lihua, Xiao Xiao, Wang Min-Can, Wei Donghui, Mei Guang-Jian

机构信息

College of Chemistry, Zhengzhou University, Zhengzhou, 450001, China.

Henan Academy of Sciences, Institute of Chemistry, Zhengzhou, 450046, China.

出版信息

Nat Commun. 2024 Nov 26;15(1):10225. doi: 10.1038/s41467-024-54598-z.

Abstract

Enantioenriched unsymmetrical vicinal diamines are important basic structural motifs. While catalytic asymmetric intermolecular 1,2-diamination of carbon-carbon double bonds represents the most straightforward approach for preparing enantioenriched vicinal-diamine-containing heterocycles, these reactions are often limited to the installation of undifferentiated amino functionalities through metal catalysis and/or the use of stoichiometric amounts of oxidants. Here, we report organocatalytic enantioselective unsymmetrical 1,2-diaminations based on the rational design of a bifunctional 1,2-diamination reagent, namely, azocarboxamides (ACAs). Under the catalysis of chiral phosphoric acid, unsymmetrical 1,2-diaminations of ACAs with various electron-rich double bonds readily occur in a regiodivergent manner. Indoles prefer dual hydrogen-bonding mode to give dearomative (4 + 2) products, and 3-vinylindoles and azlactones are inclined to undergo unsymmetrical 1,2-diamination via the (3 + 2) process. DFT calculations are performed to reveal the reaction mechanism and the origin of the regio- and enantioselectivity. Guided by computational design, we are able to reverse the regioselectivity of the dearomative unsymmetrical 1,2-diamination of indoles using Lewis acid catalysis.

摘要

对映体富集的不对称邻二胺是重要的基本结构基序。虽然碳 - 碳双键的催化不对称分子间1,2 - 二胺化是制备含对映体富集邻二胺杂环的最直接方法,但这些反应通常限于通过金属催化和/或使用化学计量的氧化剂来引入未分化的氨基官能团。在此,我们报道了基于双功能1,2 - 二胺化试剂即偶氮甲酰胺(ACA)的合理设计的有机催化对映选择性不对称1,2 - 二胺化反应。在手性磷酸催化下,ACA与各种富电子双键的不对称1,2 - 二胺化反应很容易以区域发散的方式发生。吲哚倾向于通过双氢键模式生成去芳构化的(4 + 2)产物,而3 - 乙烯基吲哚和恶唑酮则倾向于通过(3 + 2)过程进行不对称1,2 - 二胺化反应。进行密度泛函理论(DFT)计算以揭示反应机理以及区域和对映选择性的起源。在计算设计的指导下,我们能够通过路易斯酸催化逆转吲哚去芳构化不对称1,2 - 二胺化反应的区域选择性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cd42/11589106/362282efe26f/41467_2024_54598_Fig1_HTML.jpg

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