JACS Au· 2026Q1
Asymmetric Radical-Type Clayden Rearrangement for the Synthesis of Enantiopure 1,2-Aminothiols and 1,2-Aminoalcohols
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- Q1SCImago
- 2026year
Short summary
A photoredox-catalyzed, decarboxylation-enabled asymmetric radical-type Clayden rearrangement enables the synthesis of enantiopure 1,2-aminothiols and 1,2-aminoalcohols from cysteine and serine.
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Key points
- Enantiopure 1,2-aminothiols and 1,2-aminoalcohols are synthesized from cysteine and serine.
- The method utilizes a photoredox-catalyzed, decarboxylation-enabled asymmetric radical-type Clayden rearrangement.
- The "self-regeneration of stereocenters" strategy drives stereoselective 1,4-N-to-C radical aryl migration.
- Substrates are rigid heterocyclic ureas readily derived from polar amino acids.
- Excellent diastereoselectivity is achieved with a wide range of migrating aryl groups.
AI-generated from the title and abstract; the full text is not read.
Abstract
Abstract We report herein an expedient method for the construction of enantiopure 1,2-aminothiols and 1,2-aminoalcohols starting from polar amino acids cysteine and serine via a photoredox-catalyzed, decarboxylation-enabled asymmetric radical-type Clayden rearrangement. The strategy of “self-regeneration of stereocenters (SRS)” is employed to enable the stereoselective 1,4-N-to-C radical aryl migration of heterocyclic ureas, which serve as rigid-scaffold substrates and can be readily derived from serine and cysteine. A wide range of migrating groups, including multisubstituted and heterocyclic aryls, are well tolerated and afford the aryl migration products with excellent diastereoselectivity. This strategy not only offers a practical route to enantiopure 1,2-aminothiols and 1,2-aminoalcohols but also paves a new way for asymmetric radical Truce–Smiles rearrangement, holding great potential for the construction of aryl-containing chiral building blocks.
The authors' abstract, as published at the source. JACS Au, 2026 · DOI ↗
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