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通过叠氮基-Ugi 反应与环状亚胺合成四唑衍生的有机催化剂。

Synthesis of tetrazole-derived organocatalysts via azido-Ugi reaction with cyclic ketimines.

机构信息

Department of Chemistry, Moscow State University , Leninskie Gory, Moscow 119992, Russia.

出版信息

J Org Chem. 2013 Sep 20;78(18):9214-22. doi: 10.1021/jo401428q. Epub 2013 Sep 5.

Abstract

A new route to tetrazole-derived cyclic amines based on the TMSN3-modified Ugi reaction with 2-substituted cyclic imines was elaborated. The reaction allows the direct preparation of five-, six-, and seven-membered cyclic amines substituted with a tetrazole ring, which are important types of organocatalysts. The scope and limitations of this method are discussed. In the case of the Ugi reaction with benzyl isocyanide, the N-substituted tetrazoles can be easily debenzylated under catalytic hydrogenation conditions to form NH-tetrazoles in quantitative yields. It was demonstrated that both enantiomers of tetrazole-derived cyclic amines can be prepared by resolution with tartaric acid, thereby initiating a simple route to chiral derivatives. One of the obtained chiral tetrazoles was efficiently used as an organocatalyst in the amination reaction.

摘要

基于 TMSN3 修饰的 Ugi 反应与 2-取代环状亚胺的新型路线,合成了四唑衍生的环状胺。该反应可直接制备取代有四唑环的五、六和七元环状胺,这些都是重要的有机催化剂类型。讨论了该方法的适用范围和限制条件。在与苄基异氰酸酯的 Ugi 反应中,N-取代的四唑可以在催化氢化条件下很容易地脱苄基形成定量收率的 NH-四唑。结果表明,通过酒石酸拆分可以制备出两种对映异构体的四唑衍生的环状胺,从而开辟了一种制备手性衍生物的简单途径。所得到的手性四唑之一可作为有机催化剂有效地用于胺化反应。

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