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Synergistically activating nucleophile strategy enabled organocatalytic asymmetric P-addition of cyclic imines.


ABSTRACT: Herein, we present an attractive organocatalytic asymmetric addition of P-nucleophiles to five-membered cyclic N-sulfonyl imines facilitated by phosphonium salt catalysis, enabling the highly enantioselective synthesis of tri- and tetra-substituted cyclic phosphorus-containing benzosultams. With this protocol, various cyclic α-aminophosphonates were efficiently synthesized with high yields and exceptional enantioselectivities (up to >99% ee) under mild reaction conditions. The utility and practicality of this method were demonstrated through gram-scale reactions and straightforward elaborations. Notably, the success of this approach relies on the deliberate selection of a synergistic organocatalytic system, which helps circumvent foreseeable side effects while handling secondary phosphine oxides (SPOs). Systematic mechanistic studies, incorporating experiments and DFT calculations, have revealed the critical importance of judiciously selecting bifunctional phosphonium salt catalysts for effectively activating P-nucleophiles while stereoselectively controlling the P-attack process.

SUBMITTER: Zhang H 

PROVIDER: S-EPMC11290440 | biostudies-literature | 2024 Jul

REPOSITORIES: biostudies-literature

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Synergistically activating nucleophile strategy enabled organocatalytic asymmetric P-addition of cyclic imines.

Zhang Hongkui H   Tan Jian-Ping JP   Ren Xiaoyu X   Wang Fan F   Zheng Jia-Yan JY   He Jiajia J   Feng Yu Y   Xu Zhipeng Z   Su Zhishan Z   Wang Tianli T  

Chemical science 20240606 30


Herein, we present an attractive organocatalytic asymmetric addition of P-nucleophiles to five-membered cyclic <i>N</i>-sulfonyl imines facilitated by phosphonium salt catalysis, enabling the highly enantioselective synthesis of tri- and tetra-substituted cyclic phosphorus-containing benzosultams. With this protocol, various cyclic α-aminophosphonates were efficiently synthesized with high yields and exceptional enantioselectivities (up to >99% ee) under mild reaction conditions. The utility and  ...[more]

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