191329-62-1Relevant academic research and scientific papers
Copper/silver-cocatalyzed conia-ene reaction of linear β-alkynic β-ketoesters
Deng, Chen-Liang,Song, Ren-Jie,Guo, Sheng-Mei,Wang, Zhi-Qiang,Li, Jin-Heng
, p. 5111 - 5114 (2008/03/27)
A novel and general copper/silver catalytic system has been developed for the Conia-ene intramolecular reaction of linear β-alkynic β-ketoesters. In the presence of (CuOTf)2·C 6H6 and AgSbF6 (or AgOAc), a variety of the linear β-alkynic β-ketoesters selectively underwent the Conia-ene intramolecular reaction in moderate to good yields.
Synthesis of 2,5-disubstituted furans via palladium-catalyzed annulation of alkyl 3-oxo-6-heptynoates
Cacchi, Sandro,Fabrizi, Giancarlo,Moro, Leonardo
, p. 5327 - 5332 (2007/10/03)
The reaction of the readily available alkyl 3-oxo-6-heptynoates with aryl halides in the presence of K2CO3 and catalytic amounts of Pd(PPh3)4 at 100 °C provides a valuable new route to 2,5-disubstituted furans 3. Most probably, the furan ring is generated through an annulation reaction promoted by δ-arylpalladium complexes generated in situ and involving the nucleophilic attack of the ketonic oxygen across the carbon-carbon triple bond coordinated to palladium, followed by the base-catalyzed isomerization of the resultant stereoisomeric 2,5-dialkylidenetetrahydrofuran intermediates 4 and 5. The reaction is highly chemoselective. No evidence was obtained of carboannulation products. The reaction temperature has proven to be crucial for the success of the methodology. The K2CO3:alkyne ratio also affects the reaction outcome. The highest yields of furan derivatives have been obtained with aryl halides containing electron-withdrawing substituents, very likely because the higher acidity of the methylene protons of 4 and 5 favors the isomerization step. Extension of the methodology to methyl 3-oxo-7- substituted-6-heptynoates leads to the formation of 2,5-disubstituted furans containing a branched side chain. The presence of an alkyl substituent on the C-2 of the staring alkyne, however, seems to prevent the isomerization step. Treatment of ethyl 2-methyl-3-oxo-6-heptynoate under our standard conditions produced in fact the 2,5-dialkylidene derivative 5p in 42% yield, and no evidence of the corresponding furan derivative was attained.
