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具有通用硅基导向基团的二聚锰催化炔烃的氢烯基化反应

Dimeric Manganese-Catalyzed Hydroalkenylation of Alkynes with a Versatile Silicon-Based Directing Group.

作者信息

Pang Yubo, Chen Shuai, Han Jie, Zhu Chengjian, Zhao Chuan-Gang, Xie Jin

机构信息

State Key Laboratory of Coordination Chemistry, Jiangsu Key Laboratory of Advanced Organic Materials, Chemistry and Biomedicine Innovation Center (ChemBIC), School of Chemistry and Chemical Engineering, Nanjing University, Nanjing, 210023, China.

Green Catalysis Center, and College of Chemistry, Zhengzhou University, Zhengzhou, Henan, 450001, China.

出版信息

Angew Chem Int Ed Engl. 2023 Aug 1;62(31):e202306922. doi: 10.1002/anie.202306922. Epub 2023 Jun 23.

Abstract

Herein, we present a manganese-catalyzed, branched-selective hydroalkenylation of terminal alkynes, under mild conditions through facile installation of a versatile silanol as a removable directing group. With an alkenyl boronic acid as the coupling partner, this reaction produces stereodefined (E,E)-1,3-dienes with high regio-, chemo- and stereoselectivity. The protocol features mild reaction conditions such as room temperature and an air atmosphere, while maintaining excellent functional group compatibility. The resulting 1,3-dienesilanol products serve as versatile building blocks, as the removal of the silanol group allows for the synthesis of both branched terminal 1,3-dienes for downstream coupling reactions, as well as stereoselective construction of linear (E,E)-1,3-dienes and (E,E,E)- or (E,E,Z)-1,3,5-trienes. In addition, a Diels-Alder cycloaddition can smoothly and selectively deliver silicon-containing pentasubstituted cyclohexene derivatives. Mechanistic investigations, in conjunction with DFT calculations, suggest a bimetallic synergistic activation model to account for the observed enhanced catalytic efficiency and good regioselectivity.

摘要

在此,我们展示了一种锰催化的末端炔烃的支链选择性氢烯基化反应,该反应在温和条件下通过简便地引入一种通用的硅醇作为可去除的导向基团来实现。以烯基硼酸作为偶联伙伴,该反应能以高区域选择性、化学选择性和立体选择性生成立体定向的(E,E)-1,3-二烯。该方法具有温和的反应条件,如室温及空气氛围,同时保持了优异的官能团兼容性。所得的1,3-二烯硅醇产物是通用的构建模块,因为硅醇基团的去除既允许合成用于下游偶联反应的支链末端1,3-二烯,也能立体选择性地构建线性(E,E)-1,3-二烯和(E,E,E)-或(E,E,Z)-1,3,5-三烯。此外,狄尔斯-阿尔德环加成反应能够顺利且选择性地生成含硅的五取代环己烯衍生物。机理研究结合密度泛函理论计算表明,存在一种双金属协同活化模型来解释所观察到的催化效率提高和良好的区域选择性。

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