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Mechanistic Insights in Gold-Stabilized Nonclassical Carbocations: Gold-Catalyzed Rearrangement of 3-Cyclopropyl Propargylic Acetates

机译:黄金稳定的非经典碳正离子的机理见解:3-环丙基丙炔基乙酸酯的金催化重排。

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摘要

The reaction of 3-cyclopropyl propargylic carboxylates with Au(I) and Au(III) catalysts affords selectively 5-(E)-alkylidenecyclopentenyl acetates via [3,3]-sigmatropic rearrangement of the carboxylic moiety followed by cyclopropyl ring opening and cyclization. DFT calculations have been performed, supporting a two-step no-intermediate mechanism along the cyclization coordinate. The stereoselective formation of the exocyclic alkenes is kinetically controlled in the first of these events. Although stereospecific in nature through a gold-stabilized nonclassical carbocation, the chirality transfer in these cyclopentannu-lations is not complete. Computational and experimental evidence is provided for a Au-promoted cyclopropyl ring opening/epimerization/ring closure in both cis- and trans-cyclopropyl settings, which competes with the cyclization event, thus eroding the stereochemical information transfer. When tertiary acetates were used, products of both 1,2- and 1,3-acyloxy migration processes could be isolated, supporting the competitive coexistence of these two pathways along the reaction profile, as suggested also by DFT calculations.
机译:3-环丙基炔丙基羧酸盐与Au(I)和Au(III)催化剂的反应通过羧基部分的[3,3]-σ重排,然后环丙基开环和环化,选择性地提供了5-(E)-亚烷基环戊烯基乙酸酯。已执行DFT计算,支持沿着环化坐标的两步式无中间机制。在这些事件的第一个过程中,动力学控制了环外烯烃的立体选择性形成。尽管通过金稳定的非经典碳正离子在本质上具有立体定向性,但在这些环戊环上的手性转移并不完整。计算和实验证据提供了在顺式和反式环丙基环境中Au促进的环丙基开环/表观异构化/环闭合,与环化反应竞争,从而侵蚀了立体化学信息传递。当使用乙酸叔叔酯时,可以分离出1,2-和1,3-酰氧基迁移过程的产物,从而支持这两种途径沿着反应谱的竞争性共存,这也是DFT计算所表明的。

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  • 来源
    《Journal of the American Chemical Society》 |2010年第13期|p.4720-4730|共11页
  • 作者单位

    Organic Chemistry Institute, University of Zuerich, CH-8057, Zuerich, Switzerland;

    Dpto. de Quimica Organica, Universidad del Pat's Vasco, Apartado 1072, 20080 San Sebastian, Spain;

    Organic Chemistry Institute, University of Zuerich, CH-8057, Zuerich, Switzerland;

    Shanghai Givaudan Ltd., Fragrances, 298 Li Shi Zhen Road, 201203, People's Republic of China;

    Organic Chemistry Institute, University of Zuerich, CH-8057, Zuerich, Switzerland;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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