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首页> 外文期刊>Heterocycles: An International Journal for Reviews and Communications in Heterocyclic Chemistry >SYNTHESES OF HETEROCYCLES VIA ALKYNE CYCLOADDITIONS CATALYZED BY CYCLOPENTADIENYLRUTHEN1UM-TYPE COMPLEXES
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SYNTHESES OF HETEROCYCLES VIA ALKYNE CYCLOADDITIONS CATALYZED BY CYCLOPENTADIENYLRUTHEN1UM-TYPE COMPLEXES

机译:环戊二烯二酮-钌1um型配合物催化的炔烃环化反应合成杂环

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摘要

-Transition-metal catalysis not only simplifies molecular assemblies by reducing the synthetic steps but also decreases waste production, thus accomplishing an efficient and environmentally benign synthesis of heterocycles. Ruthenium catalysis has made significant progress in the past decades, and its application to heterocycle synthesis has become one of the major research topics. In particular, organoruthenium complexes with a cyclopentadienyl-type ligand have been successfully utilized in various carbon-carbon and carbon-heteroatom bond formations. This review extensively surveys the synthetic methods of five-and six-membered heterocycles via the ruthenium-catalyzed cycloadditions of alkynes with other unsaturated compounds. The applications of the ruthenium-catalyzed heterocycle synthesis are also briefly outlined.
机译:-过渡金属催化不仅通过减少合成步骤简化了分子组装,而且减少了废物产生,从而实现了杂环的高效和环境友好的合成。在过去的几十年中,钌催化已经取得了重大进展,其在杂环合成中的应用已成为主要的研究课题之一。特别是,具有环戊二烯基型配体的有机钌配合物已成功用于各种碳-碳和碳-杂原子键的形成中。这篇综述广泛地综述了五元和六元杂环的合成方法,这些方法是通过炔烃与其他不饱和化合物的钌催化的环加成反应。还简要概述了钌催化的杂环合成的应用。

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