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吲哚的合成通过 2,3-二锌吲哚的环化形成和区域选择性亲电捕获。

Indole Synthesis via Cyclative Formation of 2,3-Dizincioindoles and Regioselective Electrophilic Trapping.

机构信息

Department of Chemistry and Molecular Technology Innovation Chair, The University of Tokyo , 7-3-1 Hongo, Bunkyo-ku, Tokyo 113-0033, Japan.

出版信息

J Am Chem Soc. 2017 Jan 11;139(1):23-26. doi: 10.1021/jacs.6b10061. Epub 2016 Dec 28.

Abstract

Upon zincation of two acidic protons attached to the nitrogen and the sp-carbon atoms, a N-protected 2-ethynylaniline cyclizes to a 2,3-dizincioindole at 120 °C. Driven by the energy gain due to formation of two C-Zn bonds, this reaction occurs smoothly without side reactions, although this transformation is intrinsically endothermic in its bare anionic form. The resulting dizinc intermediate can be functionalized with one or two different electrophiles either inter- or intramolecularly on either C or C selectively, depending on the choice of catalyst and the electrophiles. This conversion of 2-ethynylaniline to 2,3-dimetalloindole can be applied to an expeditious synthesis of indenoindolone and benzodipyrrole derivatives, which are compounds of interest for medicinal chemistry and materials science, respectively.

摘要

当氮原子和 sp 碳原子上连接的两个质子被锌化时,N 保护的 2-乙炔基苯胺在 120°C 下环化成 2,3-二锌吲哚。由于形成两个 C-Zn 键而获得的能量,尽管这种转化在其裸露的阴离子形式下本质上是吸热的,但该反应还是顺利进行,没有副反应。所得的二锌中间体可以通过一个或两个不同的亲电试剂进行官能化,无论是在 C 还是 C 上,无论是在分子内还是分子间,这取决于催化剂和亲电试剂的选择。2-乙炔基苯胺到 2,3-二金属吲哚的这种转化可以应用于吲哚并吲哚酮和苯并二吡咯衍生物的快速合成,它们分别是药物化学和材料科学领域感兴趣的化合物。

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