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Asymmetric Catalysis Special Feature Part I: Asymmetric catalysis in complex target synthesis

机译:不对称催化的特殊功能I:复杂目标合成中的不对称催化

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摘要

This article describes three distinct strategies by which stereochemically complex molecules are synthesized and the ways asymmetric catalysis can impact on all three. The development of general methods to prepare synthetically useful building blocks leads to an expanded “chiral pool” of potential starting materials for asymmetric synthesis. The possibility of discovering new reactions to access new types of building blocks is particularly attractive and serves to help define the frontiers of the field. Asymmetric catalysis can also be applied to diastereoselective synthesis such that the stereochemistry of the catalyst, and not that of the substrate, determines the relative configuration of the product. Finally, in reactions where multiple stereocenters are generated simultaneously or in tandem, catalyst and substrate control can operate in a complementary manner to achieve one of many possible stereochemical outcomes selectively.
机译:本文介绍了三种不同的策略,通过这些策略可以合成立体化学复杂的分子,以及不对称催化作用对所有这三种方法的影响。制备合成上有用的结构单元的通用方法的发展导致潜在的用于不对称合成的原料的“手性库”扩大。发现访问新类型的构建块的新反应的可能性特别有吸引力,并且有助于定义该领域的前沿。不对称催化也可以用于非对映选择性合成,以使催化剂的立体化学而不是底物的立体化学决定产物的相对构型。最后,在同时或串联产生多个立体中心的反应中,催化剂和底物的控制可以互补的方式进行,以选择性地实现许多可能的立体化学结果之一。

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