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Controlled partial transfer hydrogenation of quinolines by cobalt-amido cooperative catalysis.


ABSTRACT: Catalytic hydrogenation or transfer hydrogenation of quinolines was thought to be a direct strategy to access dihydroquinolines. However, the challenge is to control the chemoselectivity and regioselectivity. Here we report an efficient partial transfer hydrogenation system operated by a cobalt-amido cooperative catalyst, which converts quinolines to 1,2-dihydroquinolines by the reaction with H3N·BH3 at room temperature. This methodology enables the large scale synthesis of many 1,2-dihydroquinolines with a broad range of functional groups. Mechanistic studies demonstrate that the reduction of quinoline is controlled precisely by cobalt-amido cooperation to operate dihydrogen transfer from H3N·BH3 to the N=C bond of the substrates.

SUBMITTER: Pang M 

PROVIDER: S-EPMC7060234 | biostudies-literature | 2020 Mar

REPOSITORIES: biostudies-literature

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Controlled partial transfer hydrogenation of quinolines by cobalt-amido cooperative catalysis.

Pang Maofu M   Chen Jia-Yi JY   Zhang Shengjie S   Liao Rong-Zhen RZ   Tung Chen-Ho CH   Wang Wenguang W  

Nature communications 20200306 1


Catalytic hydrogenation or transfer hydrogenation of quinolines was thought to be a direct strategy to access dihydroquinolines. However, the challenge is to control the chemoselectivity and regioselectivity. Here we report an efficient partial transfer hydrogenation system operated by a cobalt-amido cooperative catalyst, which converts quinolines to 1,2-dihydroquinolines by the reaction with H<sub>3</sub>N·BH<sub>3</sub> at room temperature. This methodology enables the large scale synthesis of  ...[more]

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