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Revisiting a Classic Transformation: A Lossen Rearrangement Initiated by Nitriles and 'Pseudo-Catalytic' in Isocyanate

Authors :
Sloan Ayers
Susanne Kiau
Christopher Wilbert
Neil A. Strotman
Adrian Ortiz
Scott A. Savage
Source :
The Journal of organic chemistry. 82(8)
Publication Year :
2017

Abstract

The direct conversion of a hydroxamic acid to an amine has been accomplished in a single step in the synthesis of HIV drug candidate BMS-955176. This process utilizes catalytic base and proceeds under mild conditions (CH3CN, cat. DBU, 60 °C), without the need for strong electrophiles required for typical Lossen rearrangements, and can be applied to aliphatic and aromatic hydroxamic acids. Through investigation of the kinetics of this transformation, a mechanism was revealed involving a novel initiation pathway and a self-propagation cycle. The initiation pathway involves activation of hydroxamic acid by nitriles and subsequent Lossen rearrangement to generate the corresponding isocyanate. The isocyanate functions as a “pseudo-catalyst” for this system, leading to generation of product through a second Lossen rearrangement and regeneration of a new isocyanate molecule. Thorough mechanistic understanding allowed for this highly efficient process to be implemented on a 55 kg scale in 95.5% isolated yield.

Details

ISSN :
15206904
Volume :
82
Issue :
8
Database :
OpenAIRE
Journal :
The Journal of organic chemistry
Accession number :
edsair.doi.dedup.....3ea23cc7f927e60af270877f85b08b14