Chen Weijie, Xu Huiying, Liu Fu-Xiaomin, Chen Kaifeng, Zhou Zhi, Yi Wei
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.
Angew Chem Int Ed Engl. 2024 May 13;63(20):e202401498. doi: 10.1002/anie.202401498. Epub 2024 Apr 10.
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.
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。