99606-67-4Relevant academic research and scientific papers
Silver(I)-Catalyzed Deprenylation of Allylsulfonamide Derivatives
Inagaki, Fuyuhiko,Hira, Shisen,Mukai, Chisato
, p. 2143 - 2146 (2017)
The silver(I)-catalyzed deprenylation of sulfonamide bearing prenyl functional groups on the nitrogen atom has been developed. In this reaction, the prenyl moiety was selectively eliminated without allyl or benzyl cleavage on the nitrogen atom. In addition, geranyl was also applicable for this elimination reaction. Furthermore, sulfonamide possessing two prenyl groups underwent a double deprenylation to form the corresponding deprenylated sulfonamide. Thus, a novel reactivity between the silver cation and double bond was observed.
Synthesis of the Pyrrolidine Ring System by Radical Cyclization
Padwa, Albert,Nimmesgern, Hildegard,Wong, George S. K.
, p. 5620 - 5627 (2007/10/02)
A series of bromo-substituted allyl- and diallyl-substituted sulfonamides have been found to undergo free radical cyclization when treated with tri-n-butyltin hydride in the presence of AIBN.The regiochemical course of the cyclization depends on the nature of the substituent groups attached to the ?-bond.The stereoelectronic factors governing the cyclization reaction of these N-allylsulfonamides are even more stringent than those which occur with the simple 5-hexenyl system.This is probably related to the shorter C-N bond distance which promotes the 5-exo trigcyclization pathway.The present method provides an attractive entry to the preparation of pyrrolidines from easily available N-(2-bromoethyl)-N-allyl- and N-(2-bromopropenyl)-N-allylsulfonamides.The method represents a clear-cut example of the use of hetero-substituted radicals in C-C bond-forming processes.
