Polyfunctionalized beta-lactams were prepared with high stereoselectivity in an efficient manner. A palladium-catalyzed [2+2] carbonylative cycloaddition of allyl bromide with heteroaryliden-anilines afforded 2-azetidinones N-phenyl substituted, with an heteroaryl moiety linked at the C-4 carbon, and an alkenyl group at the C-3 carbon. The C-3 and the C-4 positions could be further functionalized inserting alkyl and hydroxyl groups in the azetidinone ring, through the generation of a stable azetidinyl anion then captured by various electrophiles
Palladium-catalyzed cyclocarbonylation of N-heteroaryl-N-homoallyl amines led to γ- and δ-lactams wi...
Conrotatory ring closure of 1-halo-3-aza-4-alkyl-1,3-dienes in refluxing toluene gives rise to 3-hal...
none4Beta-Lactam compounds are really “evergreen” molecules. Beside bicyclic beta-lactam substrates ...
Novel polyfunctionalized N-alkyl-beta-lactams were prepared with high stereoselectivity in an effici...
A novel and efficient synthetic method for preparing in high stereoselectivity beta-lactams poly-fun...
Alkenyl-β-lactams, obtained by palladium-catalyzed [2+2] cycloaddition of imines with allyl halides...
Novel 3,4-diaryl beta-lactams were prepared with high stereoselectivity in an efficient manner by a ...
The [2+2] carbonylative cycloaddition of N-cx-aza-heteroaryl substituted imines with allyl bromide l...
The [2+2] carbonylative cycloaddition of N-alfa-aza-heteroaryl substituted imines with allyl bromide...
The BF3. OEt2 or LiClO4 catalyzed hetero Diels-Alder reaction of 1-methoxy-3-(trimethylsilyloxy)-1,3...
beta-Lactams represent flexible building blocks suitable for the preparation of a large variety of n...
β-Lactams represent versatile building blocks in heterocyclic chemistry. This chapter covers recent ...
Differently substituted 4-(silylmethyl)-2-azetidinones were prepared starting form the corresponding...
The palladium-catalyzed benzylamine attack to a particular allylic moiety, the 3-alkenyl-3-bromo-aze...
A stereocontrolled approach to novel highly functionalized 3,4-disubstituted azetidin-2-ones and β2,...
Palladium-catalyzed cyclocarbonylation of N-heteroaryl-N-homoallyl amines led to γ- and δ-lactams wi...
Conrotatory ring closure of 1-halo-3-aza-4-alkyl-1,3-dienes in refluxing toluene gives rise to 3-hal...
none4Beta-Lactam compounds are really “evergreen” molecules. Beside bicyclic beta-lactam substrates ...
Novel polyfunctionalized N-alkyl-beta-lactams were prepared with high stereoselectivity in an effici...
A novel and efficient synthetic method for preparing in high stereoselectivity beta-lactams poly-fun...
Alkenyl-β-lactams, obtained by palladium-catalyzed [2+2] cycloaddition of imines with allyl halides...
Novel 3,4-diaryl beta-lactams were prepared with high stereoselectivity in an efficient manner by a ...
The [2+2] carbonylative cycloaddition of N-cx-aza-heteroaryl substituted imines with allyl bromide l...
The [2+2] carbonylative cycloaddition of N-alfa-aza-heteroaryl substituted imines with allyl bromide...
The BF3. OEt2 or LiClO4 catalyzed hetero Diels-Alder reaction of 1-methoxy-3-(trimethylsilyloxy)-1,3...
beta-Lactams represent flexible building blocks suitable for the preparation of a large variety of n...
β-Lactams represent versatile building blocks in heterocyclic chemistry. This chapter covers recent ...
Differently substituted 4-(silylmethyl)-2-azetidinones were prepared starting form the corresponding...
The palladium-catalyzed benzylamine attack to a particular allylic moiety, the 3-alkenyl-3-bromo-aze...
A stereocontrolled approach to novel highly functionalized 3,4-disubstituted azetidin-2-ones and β2,...
Palladium-catalyzed cyclocarbonylation of N-heteroaryl-N-homoallyl amines led to γ- and δ-lactams wi...
Conrotatory ring closure of 1-halo-3-aza-4-alkyl-1,3-dienes in refluxing toluene gives rise to 3-hal...
none4Beta-Lactam compounds are really “evergreen” molecules. Beside bicyclic beta-lactam substrates ...