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铑(II)催化的通过炔基环庚三烯去羧基化的烯烃炔基环丙烷化反应。

Rh(II)-Catalyzed Alkynylcyclopropanation of Alkenes by Decarbenation of Alkynylcycloheptatrienes.

机构信息

Institute of Chemical Research of Catalonia (ICIQ), Barcelona Institute of Science and Technology, Avenida Països Catalans 16, 43007 Tarragona, Spain.

Departament de Química Analítica i Química Orgànica, Universitat Rovira i Virgili, C/Marcel·lí Domingo s/n, 43007 Tarragona, Spain.

出版信息

J Am Chem Soc. 2021 Jul 21;143(28):10760-10769. doi: 10.1021/jacs.1c05422. Epub 2021 Jul 8.

Abstract

Alkynylcyclopropanes have found promising applications in both organic synthesis and medicinal chemistry but remain rather underexplored due to the challenges associated with their preparation. We describe a convenient two-step methodology for the alkynylcyclopropanation of alkenes, based on the rhodium(II)-catalyzed decarbenation of 7-alkynyl cycloheptatrienes. The catalytic system employed circumvents a fundamental problem associated with these substrates, which usually evolve via 6--dig cyclization or ring-contraction pathways under metal catalysis. This unique performance unlocks a rapid access to a diverse library of alkynylcyclopropanes (including derivatives of complex drug-like molecules), versatile intermediates that previously required much lengthier synthetic approaches. Combining experiments and DFT calculations, the complete mechanistic picture for the divergent reactivity of alkynylcycloheptatrienes under metal catalysis has been unveiled, rationalizing the unique selectivity displayed by rhodium(II) complexes.

摘要

炔丙基环丙烷由于其制备方面的挑战,尽管在有机合成和药物化学中具有广阔的应用前景,但仍未得到充分的研究。我们描述了一种方便的两步法,用于烯烃的炔丙基环丙烷化反应,该方法基于铑(II)催化的 7-炔丙基环庚三烯的脱羧反应。所采用的催化体系规避了与这些底物相关的一个基本问题,这些底物通常在金属催化下通过 6--二氢环化或环收缩途径进行反应。这种独特的性能为快速获得各种炔丙基环丙烷文库(包括复杂药物样分子的衍生物)提供了可能,这些化合物是以前需要更长的合成途径才能得到的多功能中间体。通过实验和 DFT 计算相结合,揭示了金属催化下炔丙基环庚三烯的不同反应性的完整机理,合理地解释了铑(II)配合物所表现出的独特选择性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a645/8299462/be8ef1a0fe15/ja1c05422_0001.jpg

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