Nazeri Mohammad Taghi, Ahmadi Masoomeh, Ghasemi Maryam, Shaabani Ahmad, Notash Behrouz
Department of Organic Chemistry, Shahid Beheshti University, Daneshjou Boulevard Street, Tehran, 1983969411, Iran.
Peoples' Friendship University of Russia (RUDN University), 6, Miklukho-Maklaya Street, Moscow, 117198, Russian Federation.
Org Biomol Chem. 2023 May 17;21(19):4095-4108. doi: 10.1039/d3ob00250k.
A novel and unexpected route for synthesizing pyrrole-fused dibenzoxazepines/thiazepines has been designed based on a modified Ugi reaction of cyclic imines with isocyanides and acetylenedicarboxylates under catalyst-free conditions. Mechanism investigation indicates that this process is carried out through the production of zwitterion species (Huisgen's 1,4-dipole), which is a key intermediate in the chemoselectivity of products. This Huisgen's 1,4-dipole is trapped with isocyanides and a variety of pyrrole-fused dibenzoxazepines/thiazepines are synthesized in a simple one-pot operation with high yields and chemoselectivity. This strategy opens a new route in Ugi reactions (pseudo-Joullié-Ugi reaction) for the synthesis of pyrrole-fused heterocycles as special pharmaceutical scaffolds.
基于环状亚胺与异腈和乙炔二羧酸酯在无催化剂条件下的改良Ugi反应,设计了一种新颖且意想不到的合成吡咯并二苯并恶唑嗪/噻嗪的路线。机理研究表明,该过程是通过两性离子物种(惠斯根1,4-偶极)的产生来进行的,这是产物化学选择性的关键中间体。这种惠斯根1,4-偶极被异腈捕获,通过简单的一锅操作以高产率和化学选择性合成了多种吡咯并二苯并恶唑嗪/噻嗪。该策略为作为特殊药物支架的吡咯并杂环的合成在Ugi反应(伪朱利耶-Ugi反应)中开辟了一条新路线。