Issue 22, 2022

Highly efficient synthesis of enantioenriched β-hydroxy α-amino acid derivatives via Ir-catalyzed dynamic kinetic asymmetric hydrogenation

Abstract

Asymmetric hydrogenation of aryl α-dibenzylamino β-ketoesters and α-dibenzylamino aromatic ketone catalyzed by the Ir/f-phamidol catalytic system through dynamic kinetic resolution was achieved. Asymmetric reduction of aryl α-dibenzylamino β-ketoesters proceeded smoothly to provide the corresponding chiral aryl β-hydroxy α-amino derivatives with excellent diastereo- and enantioselectivities (>99/1 dr, up to >99% ee). The dibenzyl protecting group was easily removed by performing a 10% Pd(OH)2-catalyzed hydrogenation under 5 atm of H2 at room temperature to furnish the syn-aryl β-hydroxy α-amino acid, which is an important drug candidate. A gram-scale experiment demonstrated the synthetic utility of this approach. In addition, the α-dibenzylamino aromatic ketone was hydrogenated to the amino alcohol product with excellent enantioselectivity and a high turnover number (S/C up to 10 000). After deprotection of the dibenzyl group, the chiral amino alcohol can serve as a useful scaffold for chiral ligands or auxiliaries in the field of asymmetric synthesis.

Graphical abstract: Highly efficient synthesis of enantioenriched β-hydroxy α-amino acid derivatives via Ir-catalyzed dynamic kinetic asymmetric hydrogenation

Supplementary files

Article information

Article type
Research Article
Submitted
14 Jul 2022
Accepted
05 Sep 2022
First published
23 Sep 2022

Org. Chem. Front., 2022,9, 6247-6251

Highly efficient synthesis of enantioenriched β-hydroxy α-amino acid derivatives via Ir-catalyzed dynamic kinetic asymmetric hydrogenation

B. He, J. Song, C. Yin, G. Chen and X. Zhang, Org. Chem. Front., 2022, 9, 6247 DOI: 10.1039/D2QO01121B

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