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Asymmetric Rhodium-Catalyzed Allylic Substitution Reactions: Discovery, Development and Applications to Target-Directed Synthesis

机译:不对称铑催化的烯丙基取代反应:发现,开发和应用于靶向的合成

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摘要

The transition metal-catalyzed allylic substitution reaction is a particularly versatile method for the construction of carbon carbon and carbon heteroatom bonds. In this regard, the rhodium-catalyzed variant has emerged as a powerful method for the regioselective and stereospecific allylic substitution of chiral nonracemic secondary and tertiary allylic carbonates with a variety of carbon- and heteroatom-based nucleo philes. In addition, recent developments have made the analogous enantioselective process possible using prochiral nucleophiles with achiral allylic electrophiles, which represents a significant advance in this area. In this Perspective, the discovery, development and applications of these conceptually orthogonal strategies to target directed synthesis are discussed, with a particular emphasis given to those methods developed in our laboratory.
机译:过渡金属催化的烯丙基取代反应是用于构建碳碳和碳杂原子键的特别通用的方法。 在这方面,铑催化变体作为具有各种基于碳和杂原子的核心群的手性诺崩期二次和叔烯丙基碳酸酯的区域选择性和立体特异性烯丙基酯的强大方法。 此外,最近的发展使使用具有促胰烯族亲核试剂的促血清核试剂能够进行类似的对映选择性的方法,这代表该区域的显着进展。 在这种观点中,讨论了这些概念上正交策略对目标定向合成的发现,开发和应用,特别强调我们实验室中开发的这些方法。

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