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手性锇(II)/Salox 物种实现对映选择性γ-C(sp)-H 酰胺化:配体设计和反应开发的综合实验与计算验证

Chiral Osmium(II)/Salox Species Enabled Enantioselective γ-C(sp)-H Amidation: Integrated Experimental and Computational Validation For the Ligand Design and Reaction Development.

作者信息

Chen Weijie, Xu Huiying, Liu Fu-Xiaomin, Chen Kaifeng, Zhou Zhi, Yi Wei

机构信息

the Fifth Affiliated Hospital, Guangzhou Municipal and Guangdong Provincial Key Laboratory of Molecular Target & Clinical Pharmacology, the NMPA and State Key Laboratory of Respiratory Disease, School of Pharmaceutical Sciences, Guangzhou Medical University, Guangzhou, Guangdong, 511436, China.

出版信息

Angew Chem Int Ed Engl. 2024 May 13;63(20):e202401498. doi: 10.1002/anie.202401498. Epub 2024 Apr 10.

Abstract

Herein, multiple types of chiral Os(II) complexes have been designed to address the appealing yet challenging asymmetric C(sp)-H functionalization, among which the Os(II)/Salox species is found to be the most efficient for precise stereocontrol in realizing the asymmetric C(sp)-H amidation. As exemplified by the enantioenriched pyrrolidinone synthesis, such tailored Os(II)/Salox catalyst efficiently enables an intramolecular site-/enantioselective C(sp)-H amidation in the γ-position of dioxazolone substrates, in which benzyl, propargyl and allyl groups bearing various substituted forms are well compatible, affording the corresponding chiral γ-lactam products with good er values (up to 99 : 1) and diverse functionality (>35 examples). The unique performance advantage of the developed chiral Os(II)/Salox system in terms of the catalytic energy profile and the chiral induction has been further clarified by integrated experimental and computational studies.

摘要

在此,已设计了多种类型的手性Os(II)配合物来解决引人关注但具有挑战性的不对称C(sp)-H官能化问题,其中发现Os(II)/Salox物种在实现不对称C(sp)-H酰胺化的精确立体控制方面效率最高。以对映体富集的吡咯烷酮合成为例,这种定制的Os(II)/Salox催化剂能够有效地在二恶唑酮底物的γ位实现分子内位点/对映选择性C(sp)-H酰胺化,其中带有各种取代形式的苄基、炔丙基和烯丙基具有良好的兼容性,可提供具有良好对映体比例值(高达99:1)和多种官能团的相应手性γ-内酰胺产物(超过35个实例)。通过综合实验和计算研究,进一步阐明了所开发的手性Os(II)/Salox体系在催化能量分布和手性诱导方面的独特性能优势。

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