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通过有机/金属双催化醛的不对称烯丙基取代构建无环全碳季碳立体中心和1,3-非相邻立体元素

Construction of Acyclic All-Carbon Quaternary Stereocenters and 1,3-Nonadjacent Stereoelements via Organo/Metal Dual Catalyzed Asymmetric Allenylic Substitution of Aldehydes.

作者信息

Dai Jun, Li Long, Ye Ronghua, Wang Shan, Wang Yingcheng, Peng Fangzhi, Shao Zhihui

机构信息

Key Laboratory of Medicinal Chemistry for Natural Resource, Ministry of Education, School of Chemical Science and Technology, Yunnan Provincial Center for Research & Development of Natural Products, State Key Laboratory for Conservation and Utilization of Bio-Resources in Yunnan, Yunnan University, Kunming, 650091, China.

School of Life Sciences, Yunnan University, Kunming, 650091, China.

出版信息

Angew Chem Int Ed Engl. 2023 May 8;62(20):e202300756. doi: 10.1002/anie.202300756. Epub 2023 Apr 7.

Abstract

A method for the asymmetric construction of functionalized acyclic all-carbon quaternary stereocenters and 1,3-nonadjacent stereoelements has been developed via organo/metal dual catalyzed asymmetric allenylic substitution of branched and linear aldehydes, by developing an unknown acyclic secondary-secondary diamine as the enabling organocatalyst. Although it is believed that secondary-secondary diamines are difficult to be used as the organocatalysts in organo/metal dual catalysis, this study demonstrates that such diamines can be successfully combined with a metal catalyst in organo/metal dual catalysis. Our study enables the asymmetric construction of two important classes of motifs which were previously difficult to access, axially chiral allene-containing acyclic all-carbon quaternary stereocenters and 1,3-nonadjacent stereoelements bearing allenyl axial chirality and central chirality, in good yields with high enantio- and diastereoselectivity.

摘要

通过开发一种未知的无环仲-仲二胺作为有效的有机催化剂,利用有机/金属双催化的支链和直链醛的不对称烯丙基取代反应,已经开发出一种用于构建官能化无环全碳季立体中心和1,3-非相邻立体元素的不对称方法。尽管人们认为仲-仲二胺很难在有机/金属双催化中用作有机催化剂,但本研究表明,这类二胺可以在有机/金属双催化中成功地与金属催化剂结合。我们的研究能够以高对映选择性和非对映选择性,高产率地不对称构建两类以前难以获得的重要基序,即含轴手性丙二烯的无环全碳季立体中心和带有烯丙基轴手性和中心手性的1,3-非相邻立体元素。

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