University of Michigan, Department of Chemistry, Willard Henry Dow Laboratory, 930 North University Avenue, Ann Arbor, Michigan 48109, United States.
Cornell University, Department of Chemistry and Chemical Biology, 253 East Avenue, Ithaca, New York 14850, United States.
Chem Rev. 2021 Aug 11;121(15):9359-9406. doi: 10.1021/acs.chemrev.0c01096. Epub 2021 Jun 16.
This Review describes the development of strategies for carbonyl-olefin metathesis reactions relying on stepwise, stoichiometric, or catalytic approaches. A comprehensive overview of currently available methods is provided starting with Paternò-Büchi cycloadditions between carbonyls and alkenes, followed by fragmentation of the resulting oxetanes, metal alkylidene-mediated strategies, [3 + 2]-cycloaddition approaches with strained hydrazines as organocatalysts, Lewis acid-mediated and Lewis acid-catalyzed strategies relying on the formation of intermediate oxetanes, and protocols based on initial carbon-carbon bond formation between carbonyls and alkenes and subsequent Grob-fragmentations. The Review concludes with an overview of applications of these currently available methods for carbonyl-olefin metathesis in complex molecule synthesis. Over the past eight years, the field of carbonyl-olefin metathesis has grown significantly and expanded from stoichiometric reaction protocols to efficient catalytic strategies for ring-closing, ring-opening, and cross carbonyl-olefin metathesis. The aim of this Review is to capture the status quo of the field and is expected to contribute to further advancements in carbonyl-olefin metathesis in the coming years.
这篇综述描述了依赖逐步、计量或催化方法的羰基-烯烃复分解反应策略的发展。从羰基与烯烃之间的 Paternò-Büchi 环加成反应开始,综述了目前可用方法的全面概述,随后是所得恶唑烷的断裂、金属碳烯介导的策略、使用应变肼作为有机催化剂的[3+2]-环加成方法、基于形成中间体恶唑烷的路易斯酸介导和路易斯酸催化策略,以及基于羰基和烯烃之间初始碳-碳键形成以及随后的 Grob 断裂的方案。该综述以这些目前可用的方法在复杂分子合成中用于羰基-烯烃复分解的应用概述结束。在过去的八年中,羰基-烯烃复分解领域有了显著的发展,并从计量反应方案扩展到了用于闭环、开环和交叉羰基-烯烃复分解的有效催化策略。本综述的目的是捕捉该领域的现状,并有望为未来几年羰基-烯烃复分解的进一步发展做出贡献。