A method for remote radical C–H alkynylation at unactivated sites is reported. C–Hfunctionalization proceeds via 1,5-hydrogen atom transfer (HAT) to amidyl radicals that are generated via an addition/fragmentation reaction. The readily installed N-allylsulfonyl moiety is used as a precursor of the N-centered radical. Unactivated secondary and tertiary as well as selected primary C–H bonds can be functionalized
New compounds, synthesis and use thereof in the treatment of pain
申请人:LACER, S.A.
公开号:EP2530072A1
公开(公告)日:2012-12-05
The present invention relates to a compound of formula (I), or pharmaceutically acceptable, stereoisomers, salts or solvates thereof
to methods for its synthesis, and use in the treatment of pain.
[EN] NEW COMPOUNDS, SYNTHESIS AND USE THEREOF IN THE TREATMENT OF PAIN<br/>[FR] NOUVEAUX COMPOSÉS, LEUR SYNTHÈSE ET LEUR UTILISATION DANS LE TRAITEMENT DE LA DOULEUR
申请人:LACER SA
公开号:WO2012164055A2
公开(公告)日:2012-12-06
The present invention relates to a compound of formula (I), or pharmaceutically acceptable, stereoisomers, salts or solvates thereof to methods for its synthesis, and use in the treatment of pain and to a method of treatment of pain using the compounds of formula (I).
Site-Selective Remote Radical C−H Functionalization of Unactivated C−H Bonds in Amides Using Sulfone Reagents
作者:Yong Xia、Lin Wang、Armido Studer
DOI:10.1002/anie.201807455
日期:2018.9.24
A general and practical strategy for remote site‐selective functionalization of unactivated aliphatic C−H bonds in various amides by radical chemistry is introduced. C−H bond functionalization is achieved by using the readily installed N‐allylsulfonyl moiety as an N‐radical precursor. The in situ generated N‐radical engages in intramolecular 1,5‐hydrogen atom transfer to generate a translocated C radical