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首页> 外文期刊>Synthesis: International Journal of Methods in Synthetic Organic Chemistry >Recent advances in transition-metal-catalyzed [2+2+2]-cyclo(co) trimerization reactions
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Recent advances in transition-metal-catalyzed [2+2+2]-cyclo(co) trimerization reactions

机译:过渡金属催化[2 + 2 + 2] -cyclo(CO)三聚氰化反应的最近进展

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Transition-metal-catalyzed [2+2+2] cyclo(co)trimerization reactions are a powerful methodology to synthesize various complex multi-substituted (poly)cyclic molecules in a single step with optimal atom efficiency. Ever since the discovery, the reaction has been plagued by issues concerning regio- and chemoselectivity. Over the last decades many advances have been made to overcome these issues by, for example, employing regio-directing groups or tethering the reaction partners together in an intramolecular approach. These solutions, however, have certain limitations. Nowadays, it is also possible to synthesize chiral molecules by performing an asymmetric transition-metal-catalyzed [2+2+2]-cyclo(co)trimerization reaction. This review focuses on the recent advances in mechanistic insight, solving the regioselectivity issue, synthesis of chiral molecules and alternative approaches for the synthesis of substituted benzenes, pyridines and 2-pyridones. In addition, recent applications in areas such as total synthesis of natural products are also described, demonstrating that the transition-metal-catalyzed [2+2+2]-cyclo(co)trimerization reaction is a powerful tool and a welcome addition to the chemist's synthetic toolbox'. 1 Introduction 2 Synthesis of Benzene Derivatives 2.1 Mechanistic Insight 2.2 Regioselectivity 2.3 Synthesis of Chiral Systems 2.4 Other [2+2+2] Approaches 2.5 Synthesis of (Iso)quinolines 3 Synthesis of Pyridine Derivatives 3.1 Mechanistic Insight 3.2 Regioselectivity 3.3 Synthesis of Chiral Systems 4 Synthesis of Pyridone Derivatives 4.1 Mechanistic Insight 4.2 Regioselectivity 4.3 Synthesis of Chiral Systems 5 Applications 6 Future Directions 7 Conclusion.
机译:过渡金属催化的[2 + 2 + 2]环(共)三聚反应是一个功能强大的方法来合成各种复杂的多取代的(聚)环状分子中具有最佳效率原子的单个步骤。自从发现,反应已经由有关区域选择性和化学选择性的问题所困扰。在过去的十年中已经取得许多进展通过克服这些问题,例如,使用区域 - 指导组或分子内的办法圈养的反应合作伙伴一起。这些解决方案,但有一定的局限性。如今,它也有可能通过执行不对称过渡金属催化的[2 + 2 + 2] - 环(共)三聚反应来合成的手性分子。这次审查的重点在机械性的认识的最新进展,解决区域选择性问题,手性分子和取代的苯,吡啶和2-吡啶酮的合成替代方法的合成。此外,在区域如天然产物的总合成最近的应用还描述,表明过渡金属催化的[2 + 2 + 2] - 环(共)三聚反应是一种强大的工具,一个值得欢迎的除了化学家的合成工具箱”。苯衍生物的1个介绍2合成2.1机理的Insight 2.2区域选择性2.3手性的合成系统2.4其他[2 + 2 + 2]方法中的2.5合成(异)喹啉吡啶类化合物的合成3 3.1机理的Insight 3.2区域选择性3.3手性系统4的合成吡啶酮衍生物4.1机理的Insight 4.2 4.3区域选择性的手性体系的合成5个应用程序6个未来方向7结论的合成。

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