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Synthesisof Highly Oxygenated Carbocycles by StereoselectiveCoupling of Alkynes to 13- and 14-Dicarbonyl Systems

机译:合成立体选择性制备高氧含量的摩托车炔烃与13-和14-二羰基体系的偶联

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摘要

Densely substituted and highly oxygenated carbocycles are challenging targets for synthesis. In particular, those possessing numerous contiguous, fully substituted carbon atoms (i.e., tertiary alcohols and quaternary centers) are often not accessible in a direct fashion, necessitating the strategic decoupling of ring-formation from the establishment of functionality about the system. Here, we describe an approach to the construction of highly oxygenated mono-, di-, and polycyclic carbocycles from the reaction of disubstituted alkynes with β- or γ-dicarbonyl systems. These processes embrace a variant of metallacycle-mediated annulation chemistry where initial alkyne–carbonyl coupling is followed by a second, now intramolecular, stereoselective C–C bond-forming event. In addition to revealing the basic reactivity pattern in intermolecular settings, we demonstrate that this class of reactivity is quite powerful in a fully intramolecular context and, when terminated by a stereoselective oxidation process, can be used to generate polycyclic systems containing a fullysubstituted and highly oxygenated five-membered ring.
机译:取代度高和氧化程度高的碳环化合物是合成的挑战性目标。特别是,具有许多连续的,完全取代的碳原子(即,叔醇和季中心)的那些通常不能以直接的方式获得,这使得必须将环的形成与系统的功能性建立战略性的脱钩。在这里,我们描述了一种通过双取代炔烃与β-或γ-二羰基系统反应来构建高度氧化的单环,双环和多环碳环的方法。这些过程包括金属环介导的环化反应的一种变体,其中最初的炔烃-羰基偶联随后是第二个分子内立体选择性CC键形成事件。除了揭示分子间环境中的基本反应模式外,我们还证明此类反应在分子内完全存在的情况下是非常强大的,并且当被立体选择性氧化过程终止时,可用于生成含有完全分子的多环系统。取代且高度氧化的五元环。

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