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通过四配位硼介导的动态动力学不对称交叉偶联构建C-B轴手性

Construction of C-B axial chirality via dynamic kinetic asymmetric cross-coupling mediated by tetracoordinate boron.

作者信息

Yang Kai, Mao Yanfei, Zhang Zhihan, Xu Jie, Wang Hao, He Yong, Yu Peiyuan, Song Qiuling

机构信息

Key Laboratory of Molecule Synthesis and Function Discovery, Fujian Province University, College of Chemistry at Fuzhou University, Fuzhou, Fujian, 350108, China.

Department of Chemistry and Shenzhen Grubbs Institute, Guangdong Provincial Key Laboratory of Catalysis, Southern University of Science and Technology, Shenzhen, Guangdong, 518055, China.

出版信息

Nat Commun. 2023 Jul 24;14(1):4438. doi: 10.1038/s41467-023-40164-6.

Abstract

Catalytic dynamic kinetic asymmetric transformation (DyKAT) provides a powerful tool to access chiral stereoisomers from racemic substrates. Such transformation has been widely employed on the construction of central chirality, however, the application in axial chirality remains underexplored because its equilibrium of substrate enantiomers is limited to five-membered metalacyclic intermediate. Here we report a tetracoordinate boron-directed dynamic kinetic asymmetric cross-coupling of racemic, configurationally stable 3-bromo-2,1-azaborines with boronic acid derivatives. A series of challenging C-B axially chiral compounds were prepared with generally good to excellent enantioselectivities. Moreover, this transformation can also be extended to prepare atropisomers bearing adjacent C-B and C-C diaxes with excellent diastereo- and enantio-control. The key to the success relies on the rational design of a reversible tetracoordinate boron intermediate, which is supported by theoretical calculations that dramatically reduces the rotational barrier of the original C-B axis and achieves the goal of DyKAT.

摘要

催化动态动力学不对称转化(DyKAT)为从外消旋底物获得手性立体异构体提供了一种强大的工具。这种转化已被广泛应用于构建中心手性,然而,由于底物对映体的平衡仅限于五元金属环中间体,其在轴手性方面的应用仍未得到充分探索。在此,我们报道了一种由四配位硼导向的外消旋、构型稳定的3-溴-2,1-氮杂硼烷与硼酸衍生物的动态动力学不对称交叉偶联反应。制备了一系列具有挑战性的C-B轴手性化合物,其对映选择性通常良好至优异。此外,这种转化还可扩展用于制备具有相邻C-B和C-C双轴的阻转异构体,具有出色的非对映和对映控制。成功的关键在于合理设计一种可逆的四配位硼中间体,这得到了理论计算的支持,该计算显著降低了原始C-B轴的旋转势垒并实现了DyKAT的目标。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/069c/10366327/bbc3537c384c/41467_2023_40164_Fig1_HTML.jpg

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