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具有轴向和点手性的对映异构体:合成与应用。

Atropisomers with Axial and Point Chirality: Synthesis and Applications.

机构信息

Key Laboratory of Organosilicon Chemistry and Material Technology of Ministry of Education and Key Laboratory of Organosilicon Material Technology of Zhejiang Province, College of Materials, Chemistry and Chemical Engineering, Hangzhou Normal University, No. 2318, Yuhangtang Road, Hangzhou 311121, P. R. China.

出版信息

Acc Chem Res. 2022 Sep 20;55(18):2545-2561. doi: 10.1021/acs.accounts.2c00417. Epub 2022 Sep 9.

Abstract

Enantiopure atropisomers have become increasingly important in asymmetric synthesis and catalysis, pharmaceutical science, and material science since the discovery of inherent features of axial chirality originating from rotational restriction. Despite the advances made in this field to date, it remains highly desirable to construct structurally diverse atropisomers with potentially useful functions. We propose superposition to match axial and point chirality as a potentially useful strategy to access structurally complex and diverse building blocks for organic synthesis and pharmaceutical science because merging atropisomeric backbones with one or more extra chiral elements can topologically broaden three-dimensional environments to create complex scaffolds with multiple tunable parameters. Over the past decade, we have successfully implemented a strategic design for the superposition of axial and point chirality to develop a series of enantiopure atropisomers and have utilized the synergistic functions of these molecules to enhance chirality transfer in various catalytic asymmetric transformations.In this Account, we present several novel atropisomers with superposed axial and point chirality developed in our laboratory. In our studies, this superposition strategy was used to design and synthesize both biaryl and non-biaryl atropisomers from commercially available chiral sources. Consequently, these atropisomers were used to demonstrate the importance of the synergetic functions of axial and point chirality in specific enantioselective reactions. For example, aromatic amide-derived atropisomers, simplified as Xing-Phos arrays, were broadly employed in Ag-catalyzed [3 + 2] cycloaddition by a series of reactions of aldiminoesters with activated alkenes and imines, as well as being used as chiral solvating agents for the discrimination of optically active mandelic acid derivatives. Considering the powerful potential of non-biaryl atropisomers for asymmetric catalysis, we also explored the transition-metal-catalyzed enantioselective construction of a novel backbone of non-biaryl atropisomers (Ar-alkene, Ar-N axis) bearing both axial and point chirality for the design and synthesis of chiral ligands and functional molecules.The studies presented herein are expected to stimulate further research efforts on the development of functional atropisomers by superposition of matching axial and point chirality. In addition to tunable electron and stereohindrance effects, the synergy between matching chiral elements of axial/point chirality and functional groups is proven to be a special function that cannot be ignored for promoting reactivity and chirality-transfer efficiency in enantioselective synthesis. Consequently, our novel types of scaffolds with superposed axial and point chirality that are capable of versatile coordination with various metal catalysts in asymmetric catalysis highlight the power of the superposition of matching axial and point chirality for the construction of synthetically useful atropisomers.

摘要

对映纯的轴手性化合物在手性合成和催化、药物科学和材料科学中变得越来越重要,自从发现源自旋转限制的轴手性的固有特征以来。尽管迄今为止在这一领域取得了进展,但构建具有潜在有用功能的结构多样的轴手性化合物仍然是非常可取的。我们提出了叠加匹配轴手性和点手性作为一种潜在有用的策略,以获得用于有机合成和药物科学的结构复杂和多样的构建块,因为将轴手性骨架与一个或多个额外的手性元素合并可以拓扑地拓宽三维环境,从而创建具有多个可调参数的复杂支架。在过去的十年中,我们成功地实施了轴向和点手性叠加的战略设计,以开发一系列对映纯的轴手性化合物,并利用这些分子的协同功能增强各种催化不对称转化中的手性转移。在本报告中,我们介绍了我们实验室开发的几种具有叠加轴手性和点手性的新型轴手性化合物。在我们的研究中,该叠加策略用于从商业上可用的手性源设计和合成联芳基和非联芳基轴手性化合物。因此,这些轴手性化合物用于证明轴向和点手性的协同功能在特定对映选择性反应中的重要性。例如,简化为 Xing-Phos 阵列的芳酰胺衍生的轴手性化合物被广泛用于 Ag 催化的[3+2]环加成反应,反应是通过一系列反应进行的,包括亚胺与活化的烯烃的反应,以及作为手性溶剂用于区分光学活性扁桃酸衍生物。考虑到非联芳基轴手性化合物在不对称催化中的强大潜力,我们还探索了过渡金属催化的非联芳基轴手性化合物(Ar-alkene,Ar-N 轴)的新型骨架的对映选择性构建,该骨架具有轴向和点手性,用于设计和合成手性配体和功能分子。本文所述的研究有望激发通过匹配的轴向和点手性的叠加来开发功能轴手性化合物的进一步研究。除了可调的电子和立体阻碍效应之外,轴向/点手性匹配手性元素与功能基团之间的协同作用被证明是一种特殊功能,对于促进手性合成中的反应性和手性转移效率是不可忽视的。因此,我们具有叠加匹配的轴向和点手性的新型骨架类型能够与各种金属催化剂进行多功能配位,突出了匹配的轴向和点手性的叠加在构建合成有用的轴手性化合物方面的强大功能。

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