Synlett
DOI: 10.1055/a-2689-5455
Letter

Bis(acetoxy)iodobenzene-Mediated Direct Transformation of α-Amino Acids into Nitriles

1   Biomass Oligosaccharides Engineering Technology Research Center of Anhui Province, School of Chemistry and Materials Engineering, Fuyang Normal University, Fuyang, Anhui 236037, P. R. China (Ringgold ID: RIN118409)
,
Shuangshuang Li
1   Biomass Oligosaccharides Engineering Technology Research Center of Anhui Province, School of Chemistry and Materials Engineering, Fuyang Normal University, Fuyang, Anhui 236037, P. R. China (Ringgold ID: RIN118409)
,
Mengyu Gao
1   Biomass Oligosaccharides Engineering Technology Research Center of Anhui Province, School of Chemistry and Materials Engineering, Fuyang Normal University, Fuyang, Anhui 236037, P. R. China (Ringgold ID: RIN118409)
› Author Affiliations

The authors gratefully acknowledge the Key Program of Educational Commission of Anhui Province of China (2023AH050414), Anhui Provincial Quality Engineering Project for Graduate Education (2024lhpysfjd063) for support.


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Abstract

A novel bis(acetoxy)iodobenzene (PIDA)–mediated decarboxylative cyanation of α-amino acids to nitriles was developed using aqueous ammonia. Optimized conditions (CH₃CN/aqueous ammonia = 10/1, 2.5 equiv PIDA) afforded model compound 4-methylphenylacetonitrile in 87% yield. The method demonstrates broad substrate scope for both natural and unnatural amino acids bearing electronically diverse substituents (electron-donating and -withdrawing groups), yielding products in up to 92% yield with insensitivity to electronic effects. Gram-scale synthesis of 4-methylphenylacetonitrile (85% yield) confirmed the method’s scalability.

Supplementary Material



Publication History

Received: 02 August 2025

Accepted after revision: 18 August 2025

Article published online:
09 September 2025

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