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  4. Amidation of Aldehydes and Alcohols through α-Iminonitriles and a Sequential Oxidative Three-Component Strecker Reaction/Thio-Michael Addition/Alumina-Promoted Hydrolysis Process to Access β-Mercaptoamides from Aldehydes, Amines, and Thiols
 
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research article

Amidation of Aldehydes and Alcohols through α-Iminonitriles and a Sequential Oxidative Three-Component Strecker Reaction/Thio-Michael Addition/Alumina-Promoted Hydrolysis Process to Access β-Mercaptoamides from Aldehydes, Amines, and Thiols

Gualtierotti, Jean-Baptiste  
•
Schumacher, Xavier
•
Fontaine, Patrice
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2012
Chemistry - A European Journal

Mild and general alumina promoted hydrolysis conditions for converting α-iminonitriles into carboxamides have been developed. In combination with the oxidative three-component Strecker reaction, the one-pot direct amidation of aldehydes and alcohols is reported. Subsequently, an Yb(OTf)3-catalyzed Michael addition of thiols to α,β-unsaturated α-iminonitriles is reported for the synthesis of β-mercapto-α-iminonitriles. The successful integration of an oxidative Strecker reaction, thio-Michael addition, and neutral-alumina-promoted hydrolysis of β-mercapto-α-iminonitriles into a three-component one-pot process allowed us to develop the direct conversion of amines, aldehydes, and thiols into β-mercaptoamides. All of these procedures were applicable to aromatic and aliphatic amines and aldehydes

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Type
research article
DOI
10.1002/chem.201202291
Web of Science ID

WOS:000310800200032

Author(s)
Gualtierotti, Jean-Baptiste  
•
Schumacher, Xavier
•
Fontaine, Patrice
•
Masson, Géraldine
•
Wang, Qian  
•
Zhu, Jieping  
Date Issued

2012

Publisher

Wiley-Blackwell

Published in
Chemistry - A European Journal
Volume

18

Issue

46

Start page

14812

End page

14819

Subjects

multicomponent reactions

•

Strecker reaction

•

Michael addition

•

amides

•

Imino nitrile

Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
LSPN  
Available on Infoscience
November 9, 2012
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/86805
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