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Synthesis of Highly Functionalized Decalins via Metallacycle-Mediated Cross-Coupling

机译:通过金属环介导的交叉偶联合成高度官能化的萘烷

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摘要

Bridged bicyclic metallacyclopentenes generated from the [4+2] cycloaddition of metallacyclopentadienes with alkenes have been proposed as reactive intermediates in the course of [2+2+2] annulation reactions. Recently a collection of alkoxide-directed Ti-mediated [2+2+2] annulation reactions have been discovered for the synthesis of densely functionalized hydrindanes, where the bridged bicyclic metallacyclopentenes from intramolecular [4+2] were treated as fleeting intermediates en route to cyclohexadiene products by formal cheletropic extrusion of Ti(Oi-Pr)2. In studies aimed at understanding the course of these organometallic cascade reactions it was later discovered that these bridged bicyclic intermediates can be trapped by various elimination processes. Here, we have realized metallacycle-mediated annulation reactions for the assembly of angularly substituted decalins – structural motifs that are ubiquitous in natural products and molecules of pharmaceutical relevance. In addition to defining the basic annulation reaction we have discovered a surprising stability associated with the complex organometallic intermediates generated in the course of this coupling process and document here the ability to control the fate of this species. Ligand-induced cheletropic extrusion of the titanium center delivers cyclohexadiene-containing products, while several distinct protonation events have been identified to realize polycyclic products that contain three new stereocenters (one of which is the angular quaternary center that is a hallmark of alkoxide-directed titanium-mediated [2+2+2] annulation reactions). Examples of this metallacycle-mediated annulation reaction are provided to demonstrate that a range of stereodefined fused bicyclo[4.4.0]-decanes are accessible, including those that contain aromatic and aliphatic substituents, and an empirical model is presented to accompany the observations made.
机译:已提出由金属环戊二烯与烯烃的[4 + 2]环加成反应生成的桥联双环金属环戊烯作为[2 + 2 + 2]环化反应过程中的反应中间体。最近,已经发现了一组醇盐指导的钛介导的[2 + 2 + 2]环化反应,用于合成高密度官能化的氢化丙烷,其中分子内[4 + 2]形成的桥连双环金属环戊烯被视为转瞬即逝的中间体, Ti(Oi-Pr)2的正式化学挤出法制备环己二烯产品。在旨在理解这些有机金属级联反应过程的研究中,后来发现这些桥连的双环中间体可以通过各种消除方法捕获。在这里,我们已经实现了金属环介导的环化反应,用于组装有角度的十氢化萘-天然产物和与药物相关的分子中普遍存在的结构基序。除了定义基本的环状反应之外,我们还发现了与偶联过程中生成的复杂有机金属中间体相关的惊人稳定性,并在此证明了控制该物种命运的能力。配体诱导的钛中心的亲向挤出可提供含环己二烯的产物,同时已鉴定出几种不同的质子化事件,以实现包含三个新的立体中心的多环产物(其中一个是角四元中心,这是烷氧基化钛的标志-介导的[2 + 2 + 2]环空反应)。提供了这种由金属环介导的环化反应的例子,以证明可获得一系列立体定义的稠合双环[4.4.0]-癸烷,包括那些包含芳香族和脂肪族取代基的癸烷,并提供了经验模型与所做的观察相伴随。

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  • 期刊名称 other
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  • 年(卷),期 -1(137),20
  • 年度 -1
  • 页码 6624–6628
  • 总页数 11
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