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铁(II)酞菁催化重氮化合物与伯胺的同二聚化和串联双胺化反应:一锅法构建取代的2,3-二氨基丁二腈

Iron(II) Phthalocyanine-Catalyzed Homodimerization and Tandem Diamination of Diazo Compounds with Primary Amines: Access to Construct Substituted 2,3-Diaminosuccinonitriles in One-Pot.

作者信息

Wang Gang, Yuan Jia-Li, Zhou Rong, Zou Huai-Bo

机构信息

Department of Chemistry & Bioengineering, Yichun Key Laboratory of Applied Chemistry, Key Laboratory of Jiangxi University for Applied Chemistry & Chemical Biology, Yichun University, Yichun 336000, China.

出版信息

J Org Chem. 2024 Jun 7;89(11):7718-7726. doi: 10.1021/acs.joc.4c00376. Epub 2024 May 23.

Abstract

We herein first report the homodimerization and tandem diamination of diazo compounds with primary amines catalyzed by the iron(II) phthalocyanine (PcFe(II)), which can construct one C-C bond and two C-N bonds within 20 min in one-pot. Compared to the traditional metal-catalyzed N-H insertion reaction between amines with diazo reagents, the developed reaction almost does not generate the N-H insertion product, but the homodimerization/tandem diamination product. The proposed mechanism studies indicate that primary amines play a crucial role in the homocoupling of diazo compounds via dimerization of iron(III)-acetonitrile radical generated from the reaction between diazoacetonitrile with PcFe(II) coordinated by bis(amines); the β-hydride elimination is involved, and then, the attack of primary amines toward the carbon atoms on the formed C-C bond is followed. Moreover, this novel reaction can be used to effectively prepare substituted 2,3-diaminosuccinonitriles with high yields and even up to >99:1 d.r., encouragingly these products contain both 1,2-diamines and succinonitrile motifs, which are two classes of important organic compounds with significant applications in many yields. This reaction is also suitable for the gram-scale preparation of 2,3-bis(phenylamino)succinonitrile () with a yield of 84%. Therefore, the developed reaction represents a new type of transformation.

摘要

我们在此首次报道了由铁(II)酞菁(PcFe(II))催化的重氮化合物与伯胺的同二聚化和串联双胺化反应,该反应能在20分钟内一锅构建一个C-C键和两个C-N键。与传统的金属催化的胺与重氮试剂之间的N-H插入反应相比,所开发的反应几乎不生成N-H插入产物,而是生成同二聚化/串联双胺化产物。所提出的机理研究表明,伯胺在重氮化合物的均偶联中起着关键作用,这是通过双(胺)配位的PcFe(II)与重氮乙腈反应生成的铁(III)-乙腈自由基的二聚作用实现的;涉及β-氢消除,然后是伯胺对形成的C-C键上碳原子的进攻。此外,这种新颖的反应可用于高效制备取代的2,3-二氨基丁二腈,产率高,甚至高达>99:1的非对映体比例,令人鼓舞的是,这些产物同时含有1,2-二胺和丁二腈基序,它们是两类重要的有机化合物,在许多领域有重要应用。该反应也适用于克级制备2,3-双(苯氨基)丁二腈(),产率为84%。因此,所开发的反应代表了一种新型的转化反应。

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