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Asymmetric Henry Reaction of 2-Acylpyridine N-Oxides Catalyzed by a Ni-Aminophenol Sulfonamide Complex: An Unexpected Mononuclear Catalyst.


ABSTRACT: The asymmetric Henry reaction of 2-acylpyridine N-oxide remains a challenge as N-oxides generally act as competitive catalyst inhibitors or displace activating ligands. A novel variable yield (up to 99%) asymmetric Henry reaction of 2-acypyridine N-oxides catalyzed by a Ni-aminophenol sulfonamide complex with good to excellent enantioselectivity (up to 99%) has been developed. Mechanistic studies suggest that the unique properties of the electron-pairs of N-oxides for complexation with Ni makes the unexpected mononuclear complex, rather than the previously reported dinuclear complex, the active species.

SUBMITTER: Liu M 

PROVIDER: S-EPMC6514737 | biostudies-literature | 2019 Apr

REPOSITORIES: biostudies-literature

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Asymmetric Henry Reaction of 2-Acylpyridine <i>N</i>-Oxides Catalyzed by a Ni-Aminophenol Sulfonamide Complex: An Unexpected Mononuclear Catalyst.

Liu Mouxiong M   Gui Dongdong D   Deng Ping P   Zhou Hui H  

Molecules (Basel, Switzerland) 20190414 8


The asymmetric Henry reaction of 2-acylpyridine <i>N</i>-oxide remains a challenge as <i>N</i>-oxides generally act as competitive catalyst inhibitors or displace activating ligands. A novel variable yield (up to 99%) asymmetric Henry reaction of 2-acypyridine <i>N</i>-oxides catalyzed by a Ni-aminophenol sulfonamide complex with good to excellent enantioselectivity (up to 99%) has been developed. Mechanistic studies suggest that the unique properties of the electron-pairs of <i>N</i>-oxides for  ...[more]

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