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新世纪唑金属茂环戊二烯的进展。

Progress of Azametallacyclopentadienes in the New Century.

机构信息

Beijing National Laboratory for Molecular Sciences (BNLMS), State Key Laboratory of Rare Earth Materials Chemistry and, Applications & Key Laboratory of Bioorganic Chemistry and, Molecular Engineering of Ministry of Education, College of Chemistry and Molecular Engineering, Peking University, Beijing, 100871, P. R. China.

出版信息

Chemistry. 2023 May 11;29(27):e202204079. doi: 10.1002/chem.202204079. Epub 2023 Mar 27.

Abstract

As the key intermediates in metal-promoted/catalyzed C-C bond coupling reactions of nitriles and alkynes, azametallacyclopentadienes, M(N=CR -CR =CR ), are an important class of azametallacycles. Although the first authentic azametallacyclopentadienes were documented in 1986, their chemistry towards solid-state structures, intrinsic reactivity, and synthetic application was rarely investigated for a long time. At the beginning of this century, seminal works about the applications of azametallacyclopentadienes in the synthesis of heterocycles, including multi-substituted pyridines, isoquinolines, furans, and pyrroles were reported. Subsequently, a series of new complexes with this motif, namely the Group 4, aluminum, actinide, and rare-earth azametallacyclopentadienes were isolated and structurally characterized. Among them, the rare-earth azametallacyclopentadiene expresses high reactivity towards unsaturated molecules, such as nitriles, isocyanides, and Mo(CO) to provide novel fused metallacycles. In this Concept, we reviewed the advances in the preparation, reactivity, and synthetic application of azametallacyclopentadienes in the past twenty years.

摘要

作为腈和炔烃的金属促进/催化 C-C 键偶联反应的关键中间体,氮杂金属环戊二烯,M(N=CR -CR =CR ),是一类重要的氮杂金属环。尽管第一类真正的氮杂金属环戊二烯在 1986 年就有文献记载,但它们在固态结构、固有反应性和合成应用方面的化学性质在很长一段时间内都很少被研究。本世纪初,关于氮杂金属环戊二烯在杂环合成中的应用的开创性工作,包括多取代吡啶、异喹啉、呋喃和吡咯的合成得到了报道。随后,一系列具有该结构的新型配合物,即第 4 族、铝、锕系元素和稀土金属氮杂金属环戊二烯被分离并进行了结构表征。其中,稀土金属氮杂金属环戊二烯对不饱和分子(如腈、异氰化物和 Mo(CO))表现出高反应性,可提供新型稠合金属环。在本综述中,我们回顾了过去二十年中氮杂金属环戊二烯的制备、反应性和合成应用方面的进展。

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