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阳离子钯(II)催化α,β-不饱和肟醚合成取代吡啶。

Cationic palladium(ii)-catalyzed synthesis of substituted pyridines from α,β-unsaturated oxime ethers.

作者信息

Yamada Takahiro, Hashimoto Yoshimitsu, Tanaka Kosaku, Morita Nobuyoshi, Tamura Osamu

机构信息

Showa Pharmaceutical University Machida Tokyo 194-8543 Japan

出版信息

RSC Adv. 2022 Aug 4;12(33):21548-21557. doi: 10.1039/d2ra03875g. eCollection 2022 Jul 21.

Abstract

An efficient method for the synthesis of multi-substituted pyridines from β-aryl-substituted α,β-unsaturated oxime ethers and alkenes Pd-catalyzed C-H activation has been developed. The method, using Pd(OAc) and a sterically hindered pyridine ligand, provides access to various multi-substituted pyridines with complete regioselectivity. Mechanistic studies suggest that the pyridine products are formed by Pd-catalyzed electrophilic C-H alkenylation of α,β-unsaturated oxime followed by aza-6π-electrocyclization. The utility of this method is showcased by the synthesis of 4-aryl-substituted pyridine derivatives, which are difficult to synthesize efficiently using previously reported Rh-catalyzed strategies with alkenes.

摘要

已开发出一种由β-芳基取代的α,β-不饱和肟醚和烯烃通过钯催化的C-H活化合成多取代吡啶的有效方法。该方法使用醋酸钯和空间位阻吡啶配体,可完全区域选择性地获得各种多取代吡啶。机理研究表明,吡啶产物是通过钯催化的α,β-不饱和肟的亲电C-H烯基化反应,然后进行氮杂-6π-电环化反应形成的。通过合成4-芳基取代的吡啶衍生物展示了该方法的实用性,使用先前报道的铑催化与烯烃的策略难以有效合成此类衍生物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cbc6/9351437/7cda25ccc95f/d2ra03875g-s1.jpg

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