5(6)-anti-Substituted-2-azabicyclo[2.1.1]hexanes: A Nucleophilic Displacement Route

Title5(6)-anti-Substituted-2-azabicyclo[2.1.1]hexanes: A Nucleophilic Displacement Route
Publication TypeJournal Article
Year of Publication2009
AuthorsKrow, GR, Edupuganti, R, Gandla, D, Choudhary, A, Lin, GL, Sonnet, PE, DeBrosse, C, Ross, CW, Cannon, KC, Raines, RT
JournalJournal of Organic Chemistry
Volume74
Pagination8232-8242
Date PublishedNov
Accession NumberISI:000271113400025
Keywords2,4-methanoproline, 2-carboxy-2,4-methanopyrrolidine, acetylcholine-receptor ligands, aqueous-solution, Chemistry, Organic, conformational, dimethyl-sulfoxide, glutamic-acid analog, n-alkylation, Neighboring group participation, proline analogs, properties, rearrangement route
Abstract

Nucleophilic displacements of 5(6)-anti-bromo substituents in 2-azabicyclo[2.1.1]hexanes (methanopyrrolidines) have been accomplished. These displacements have produced 5-anti-X-6-anti-Y-difunctionalized-2-azabicyclo[2.1.1]hexanes containing bromo, fluoro, acetoxy, hydroxy, azido, imidazole, thiophenyl, and iodo substituents. Such displacements of anti-bromide ions require an amine nitrogen and tire it function of the solvent and the choice of metal salt. Reaction rates were Faster and product yields were higher in DMSO when compared to DMF and with CsOAc compared to NaOAc. Sodium or lithium salts gave products, except with NaF, where silver fluoride in nitromethane was best for Substitution by fluoride. The presence of electron-withdrawing F, OAc, N-3, Br, or SPh substituents in the 6-anti-position slows bromide displacements at the 5-anti-position.

Short TitleJ. Org. Chem.