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来自环丙烯酮的杂环化合物。

Heterocycles from cyclopropenones.

作者信息

Aly Ashraf A, Hassan Alaa A, Mostafa Sara M, Mohamed Asmaa H, Osman Esraa M, Nayl AbdElAziz A

机构信息

Chemistry Department, Faculty of Science, Minia University El-Minia 61519 Egypt

Department of Chemistry, College of Science, Jouf University P. O. Box 2014 Sakaka Aljouf Saudi Arabia

出版信息

RSC Adv. 2022 Jun 24;12(29):18615-18645. doi: 10.1039/d2ra03011j. eCollection 2022 Jun 22.

Abstract

Great attention has been paid to cyclopropenones as they are present in many natural sources. Various synthesized cyclopropenone derivatives also show a wide range of biological activities. The cyclopropenone derivatives undergo a variety of reactions such as ring-opening reactions, isomerization reactions, C-C coupling reactions, C-H activation, cycloaddition reactions, thermal and photo-irradiation reactions, and acid-base-catalyzed reactions under the influence of various chemical reagents (electrophiles, nucleophiles, radicals, and organometallics) and external forces (heat and light). Many previous reviews have dealt with the chemistry and reactions of cyclopropenones. However and to the best of our knowledge, the utility of cyclopropenones in the synthesis of heterocycles has not been reported before. Therefore, it would be interesting to shed light on this new topic. The present review article provides, for the first time, a comprehensive compilation of synthetic methods for the synthesis of various heterocyclic ring systems, as a significant family in the field of organic chemistry.

摘要

环丙烯酮因其存在于许多天然来源中而受到了极大关注。各种合成的环丙烯酮衍生物也表现出广泛的生物活性。在各种化学试剂(亲电试剂、亲核试剂、自由基和有机金属化合物)和外力(热和光)的影响下,环丙烯酮衍生物会发生多种反应,如开环反应、异构化反应、碳 - 碳偶联反应、碳 - 氢活化、环加成反应、热和光辐射反应以及酸碱催化反应。许多先前的综述都涉及环丙烯酮的化学和反应。然而,据我们所知,环丙烯酮在杂环合成中的应用此前尚未见报道。因此,阐明这个新课题将会很有趣。本综述文章首次全面汇编了用于合成各种杂环体系的合成方法,杂环体系是有机化学领域中的一个重要类别。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/aaf3/9229296/de36c10ff4d6/d2ra03011j-f1.jpg

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