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Stereospecific nickel-catalyzed [4+2] heteroannulation of alkynes with aminophosphanes.


ABSTRACT: Enantioenriched phosphorus compounds play crucial roles in many fields ranging from catalyst to materials science to drug development. Despite advances in the construction of phosphacycles, incorporation of a P-chirogenic center into heterocycles remains challenging. Here, we report an effective method for the preparation of phosphacycles through nickel-catalyzed [4+2] heteroannulation of internal alkynes with aminophosphanes derived from o-haloanilines. Notably, chiral 2-λ5-phosphaquinolines can be prepared from P-stereogenic substrates via NH/PH tautomeric equilibrium without loss of stereochemical integrity. The strategy is found to exhibit a broad scope in terms of both reaction components, enabling modular construction of libraries of 2-λ5-phosphaquinolines with different steric and electronic properties for fine-tuning photophysical properties, where some of these compounds showed distinct fluorescence with high quantum yields. A series of mechanistic studies further shed light on the pathway of the heteroannulation and reasons for stereospecificity.

SUBMITTER: Huang R 

PROVIDER: S-EPMC9839338 | biostudies-literature | 2023 Jan

REPOSITORIES: biostudies-literature

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Stereospecific nickel-catalyzed [4+2] heteroannulation of alkynes with aminophosphanes.

Huang Ronghui R   Wang Minyan M   Deng Hong H   Xu Jingkai J   Yan Hong H   Zhao Yue Y   Shi Zhuangzhi Z  

Science advances 20230113 2


Enantioenriched phosphorus compounds play crucial roles in many fields ranging from catalyst to materials science to drug development. Despite advances in the construction of phosphacycles, incorporation of a P-chirogenic center into heterocycles remains challenging. Here, we report an effective method for the preparation of phosphacycles through nickel-catalyzed [4+2] heteroannulation of internal alkynes with aminophosphanes derived from <i>o</i>-haloanilines. Notably, chiral 2-λ5-phosphaquinol  ...[more]

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