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用于多样化氮杂环合成的烯酰胺的过渡金属催化串联反应

Transition Metal-Catalyzed Tandem Reactions of Ynamides for Divergent N-Heterocycle Synthesis.

作者信息

Hong Feng-Lin, Ye Long-Wu

机构信息

State Key Laboratory of Physical Chemistry of Solid Surfaces, Key Laboratory of Chemical Biology of Fujian Province, and College of Chemistry and Chemical Engineering, Xiamen University, Xiamen 361005, China.

State Key Laboratory of Organometallic Chemistry, Shanghai Institute of Organic Chemistry, Chinese Academy of Sciences, Shanghai 200032, China.

出版信息

Acc Chem Res. 2020 Sep 15;53(9):2003-2019. doi: 10.1021/acs.accounts.0c00417. Epub 2020 Sep 1.

Abstract

ConspectusYnamides are electron-rich heteroatom-substituted alkynes with a C-C triple bond directly attached to the amide group. Importantly, this amide group is able to impose an electronic bias, thus resulting in the highly regioselective attack of this polarized alkyne by a large variety of nucleophiles. Over the past two decades, catalytic reactions of ynamides have experienced dramatic developments, especially those catalyzed by transition metals. As a result, ynamides have been widely applied to the rapid and efficient assembly of versatile structurally complex N-containing molecules, especially in an atom-economic and stereoselective way.On the basis of newly developed ynamide preparations and new alkyne transformations, we first developed oxidation-initiated tandem reactions of ynamides such as zinc-catalyzed ynamide oxidation/C-H functionalization and copper-catalyzed ynamide oxidation/carbene metathesis, leading to divergent synthesis of isoquinolones, β-carbolines, and pyrrolo[3,4-]quinolin-1-ones. Importantly, this protocol represents the first non-noble-metal-catalyzed intermolecular oxidation of alkynes by -oxide type oxidants, and the related overoxidation could be dramatically inhibited in this non-noble-metal catalysis. Then, we achieved gold-catalyzed amination-initiated tandem reactions of ynamides via α-imino gold carbenes for efficient construction of various 2-aminoindoles, 3-amino-β-carbolines, and 2-aminopyrroles, where two new types of nitrene transfer reagents (benzyl azides and isoxazoles) were discovered. In particular, the use of isoxazoles as nitrene transfer reagents for atom-economic generation of α-imino metal carbenes has also been elegantly exploited by Hashmi, Liu, and many other groups, providing ready access to a wide range of functionalized N-heterocycles. Moreover, we revealed that donor/donor copper carbenes could be generated via copper-catalyzed diyne cyclization under mild conditions. These novel copper carbenes could undergo asymmetric C-H insertion, cyclopropanation, and formal [3 + 2] cycloaddition to produce diverse chiral polycyclic pyrroles with good to excellent enantioselectivities. Thus, this strategy may open new avenues in catalytic asymmetric reaction of ynamides, which remain largely unexplored and deserve more attention. Meanwhile, we also accomplished the efficient and practical synthesis of medium-sized lactams by yttrium-catalyzed cascade cyclization of allyl alcohol-tethered ynamides and the combination of radical chemistry based on visible-light photoredox catalysis with ynamide chemistry for divergent synthesis of useful 2-benzhydrylindoles and 3-benzhydrylisoquinolines.In this Account, we describe a panoramic picture of our recent contributions since 2015 to the development and application of ynamide chemistry in organic synthesis via transition metal-catalyzed tandem reactions by focusing on the tetrafunctionalization of ynamides. These studies provide not only efficient and attractive methods for divergent synthesis of valuable N-heterocycles but also some new insights into the exploration of alkyne chemistry and metal carbene chemistry.

摘要

综述

烯炔酰胺是富电子的、杂原子取代的炔烃,其碳 - 碳三键直接连接到酰胺基团上。重要的是,该酰胺基团能够产生电子偏置,从而导致这种极化炔烃受到多种亲核试剂的高度区域选择性进攻。在过去的二十年中,烯炔酰胺的催化反应经历了显著的发展,尤其是那些由过渡金属催化的反应。因此,烯炔酰胺已被广泛应用于快速高效地构建结构多样的含氮分子,特别是以原子经济和立体选择性的方式。

基于新开发的烯炔酰胺制备方法和新的炔烃转化反应,我们首先开发了烯炔酰胺的氧化引发串联反应,如锌催化的烯炔酰胺氧化/C - H官能化反应和铜催化的烯炔酰胺氧化/卡宾复分解反应,从而实现了异喹啉酮、β - 咔啉和吡咯并[3,4 - ]喹啉 - 1 - 酮的多样化合成。重要的是,该方案代表了首例由 - 氧化物型氧化剂介导的非贵金属催化的炔烃分子间氧化反应,并且在这种非贵金属催化中相关的过氧化反应能够被显著抑制。然后,我们通过α - 亚氨基金卡宾实现了金催化的烯炔酰胺胺化引发串联反应,用于高效构建各种2 - 氨基吲哚、3 - 氨基 - β - 咔啉和2 - 氨基吡咯,在此过程中发现了两种新型的氮宾转移试剂(苄基叠氮化物和异恶唑)。特别地,Hashmi、Liu以及许多其他研究团队也巧妙地利用异恶唑作为氮宾转移试剂以原子经济的方式生成α - 亚氨基金属卡宾,从而能够方便地合成多种官能化的氮杂环化合物。此外,我们还发现供体/供体铜卡宾可以通过铜催化的二炔环化反应在温和条件下生成。这些新型铜卡宾能够进行不对称C - H插入、环丙烷化反应以及形式上的[3 + 2]环加成反应,从而以良好到优异的对映选择性生成各种手性多环吡咯。因此,该策略可能为烯炔酰胺的催化不对称反应开辟新的途径,而这一领域在很大程度上尚未得到充分探索,值得更多关注。同时,我们还通过钇催化的烯丙醇连接的烯炔酰胺的串联环化反应以及基于可见光光氧化还原催化的自由基化学与烯炔酰胺化学相结合的方法,实现了中-sized内酰胺的高效实用合成,用于多样化合成有用的2 - 二苯甲基吲哚和3 - 二苯甲基异喹啉。

在本综述中,我们通过关注烯炔酰胺的四官能化反应,全景式地描述了自2015年以来我们在过渡金属催化的串联反应中对烯炔酰胺化学在有机合成中的发展和应用所做出的近期贡献。这些研究不仅为有价值的氮杂环化合物的多样化合成提供了高效且有吸引力的方法,同时也为炔烃化学和金属卡宾化学的探索提供了一些新的见解。

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