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轴手性选择性催化

Atroposelective catalysis.

作者信息

Schmidt Tanno A, Hutskalova Valeriia, Sparr Christof

机构信息

Department of Chemistry, University of Basel, Basel, Switzerland.

出版信息

Nat Rev Chem. 2024 Jul;8(7):497-517. doi: 10.1038/s41570-024-00618-x. Epub 2024 Jun 18.

Abstract

Atropisomeric compounds-stereoisomers that arise from the restricted rotation about a single bond-have attracted widespread attention in recent years due to their immense potential for applications in a variety of fields, including medicinal chemistry, catalysis and molecular nanoscience. This increased interest led to the invention of new molecular motors, the incorporation of atropisomers into drug discovery programmes and a wide range of novel atroposelective reactions, including those that simultaneously control multiple stereogenic axes. A diverse set of synthetic methodologies, which can be grouped into desymmetrizations, (dynamic) kinetic resolutions, cross-coupling reactions and de novo ring formations, is available for the catalyst-controlled stereoselective synthesis of various atropisomer classes. In this Review, we generalize the concepts for the catalyst-controlled stereoselective synthesis of atropisomers within these categories with an emphasis on recent advancements and underdeveloped atropisomeric scaffolds beyond stereogenic C(sp)-C(sp) axes. We also discuss more complex systems with multiple stereogenic axes or higher-order stereogenicity.

摘要

阻转异构化合物——由于围绕单键的旋转受限而产生的立体异构体——近年来因其在包括药物化学、催化和分子纳米科学在内的各种领域的巨大应用潜力而受到广泛关注。这种兴趣的增加导致了新型分子马达的发明、将阻转异构体纳入药物发现计划以及各种各样的新型阻转选择性反应,包括那些同时控制多个立体发生轴的反应。有多种合成方法可用于催化剂控制的各种阻转异构体类别的立体选择性合成,这些方法可分为去对称化、(动态)动力学拆分、交叉偶联反应和从头环化反应。在本综述中,我们概括了这些类别中催化剂控制的阻转异构体立体选择性合成的概念,重点是近期的进展以及除了立体发生C(sp)-C(sp)轴之外尚未充分开发的阻转异构支架。我们还讨论了具有多个立体发生轴或高阶立体异构性的更复杂系统。

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