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Regioselective synthesis of spirocyclic pyrrolines via a palladium-catalyzed Narasaka-Heck/C-H activation/[4 + 2] annulation cascade reaction.


ABSTRACT: A novel palladium-catalyzed spirocyclization through sequential Narasaka-Heck cyclization, C-H activation and [4 + 2] annulation has been developed. In this reaction, cheap and readily available 2-chlorobenzoic acid or ethyl phenylpropiolate was employed as the C2 insertion unit to react with γ,δ-unsaturated oxime ester. The key step in this transformation is the regioselective insertion of the C2 synthon into the spiro-palladacycle intermediate that is formed by the δ-C-H activation process, thereby efficiently assembling a series of spirocyclic pyrrolines with high regiocontrol. Furthermore, density functional theory (DFT) calculations and control experiments were performed to gain some insights into the reaction mechanism.

SUBMITTER: Wei WX 

PROVIDER: S-EPMC9159093 | biostudies-literature | 2022 Jun

REPOSITORIES: biostudies-literature

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Regioselective synthesis of spirocyclic pyrrolines <i>via</i> a palladium-catalyzed Narasaka-Heck/C-H activation/[4 + 2] annulation cascade reaction.

Wei Wan-Xu WX   Kong Xiangtao X   Jiao Rui-Qiang RQ   Li Xue-Song XS   Wang Cui-Tian CT   Li Yuke Y   Liang Yong-Min YM  

Chemical science 20220506 21


A novel palladium-catalyzed spirocyclization through sequential Narasaka-Heck cyclization, C-H activation and [4 + 2] annulation has been developed. In this reaction, cheap and readily available 2-chlorobenzoic acid or ethyl phenylpropiolate was employed as the C2 insertion unit to react with γ,δ-unsaturated oxime ester. The key step in this transformation is the regioselective insertion of the C2 synthon into the spiro-palladacycle intermediate that is formed by the δ-C-H activation process, th  ...[more]

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