Heterocycle synthesis via radical addition-cyclization of oxime ethers

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Abstract

Oxime ethers connected by a tether to aldehydes or ketones efficiently cyclized via stannyl radical addition-cyclization to give a new entry to heterocyclic amino alcohols. The Sml2-induced radical cyclization was found to be effective for preparing cyclic trans-amino alcohols. These radical reactions provide a novel method for the synthesis of (-)-balanol, aminocyclitols, 1-deoxynojirimycin. 2-substituted 5-amino-4-piperidinol, and nucleoside analogs. The sulfanyl radical addition-cyclization-elimination reaction was developed, which was successfully applied to the synthesis of (-)-kainic acid. The sulfanyl radical addition-cyclization of oxime ethers gave a method for synthesis of rigidified cyclic β-amino acids. The carbon radical addition-cyclization reaction of substrates having two different radical acceptors such as acrylate and aldoxime ether moieties proceeded even in aqueous media via a diastereoselective tandem C-C bond-forming process, providing a method for asymmetric synthesis of γ-butyrolactones and γamino acids.

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Miyabe, H., Miyata, O., & Naito, T. (2002). Heterocycle synthesis via radical addition-cyclization of oxime ethers. Yuki Gosei Kagaku Kyokaishi/Journal of Synthetic Organic Chemistry, 60(11 SPEC.), 1087–1094. https://doi.org/10.5059/yukigoseikyokaishi.60.1087

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