An evaluation of alpha-aryl-alpha-diazodiones in tandem carbonyl ylide formation-enantioselective [3 + 2]-cycloaddition reactions is described. Such substrates were designed to allow investigation of the electronic characteristics of the dipole upon asymmetric induction. Intramolecular cycloadditions (with a tethered alkene dipolarophile) were found to occur in good to quantitative yields, with a difference in ee exhibited by the two electronically different diazodiones 8 and 9. Intermolecular cycloadditions using diazodiones 12 and 13 with DMAD and arylacetylenes 16-18 again demonstrated that electronics play a key role in determining the outcome of the cycloaddition reactions. Enantioselectivities of up to 76% were observed
A simple route to complexity: An organocatalytic 1,3-dipolar cycloaddition between azlactones and me...
Asymmetric 1,3-dipolar cycloaddition reactions between <i>N</i>-methylindoles and several cyclic car...
The 1,3-dipolar cycloaddition reactions of 2-diazocyclohexane-1,3-dione (7a; Table 1) and of alkyl d...
An evaluation of α-aryl-α-diazodiones in tandem carbonyl ylide formation−enantioselective [3 + 2]-cy...
Catalytic enantioselective tandem carbonyl ylide formation-intramolecular 1,3-dipolar cycloaddition ...
Catalytic enantioselective tandem carbonyl ylide formation-cycloaddition reactions of tert-butyl 2-d...
Catalyzed cascade reactions that generate molecular complexity rapidly and in an enantioselective ma...
Catalytic enantioselective tandem carbonyl ylide formation-cycloaddition of α-diazo-β-ketoesters 1 (...
Catalytic, enantioselective, tandem carbonyl ylide formation/cycloaddition of 2-diazo-3,6-diketoeste...
Catalytic enantioselective tandem oxidopyrylium formation - intramolecular 1,3-dipolar cycloaddition...
The synthesis and 1,3-dipolar cycloaddition reactions of unsaturated α-diazo-β,ε-diketo sulfones 7 u...
Enantiomerically pure alpha-oxo diazo compounds derived from (S)-proline were used for 1,3-dipolar c...
CONSPECTUS: Cycloaddition reactions are among the most powerful methods for the synthesis of complex...
High enantioselectivities (94–96% ee) were obtained for the inverse electron-demand 1,3-dipolar cycl...
The multicomponent 1,3-dipolar cycloaddition of different 1,2-diaza-1,3-dienes with in situ-generate...
A simple route to complexity: An organocatalytic 1,3-dipolar cycloaddition between azlactones and me...
Asymmetric 1,3-dipolar cycloaddition reactions between <i>N</i>-methylindoles and several cyclic car...
The 1,3-dipolar cycloaddition reactions of 2-diazocyclohexane-1,3-dione (7a; Table 1) and of alkyl d...
An evaluation of α-aryl-α-diazodiones in tandem carbonyl ylide formation−enantioselective [3 + 2]-cy...
Catalytic enantioselective tandem carbonyl ylide formation-intramolecular 1,3-dipolar cycloaddition ...
Catalytic enantioselective tandem carbonyl ylide formation-cycloaddition reactions of tert-butyl 2-d...
Catalyzed cascade reactions that generate molecular complexity rapidly and in an enantioselective ma...
Catalytic enantioselective tandem carbonyl ylide formation-cycloaddition of α-diazo-β-ketoesters 1 (...
Catalytic, enantioselective, tandem carbonyl ylide formation/cycloaddition of 2-diazo-3,6-diketoeste...
Catalytic enantioselective tandem oxidopyrylium formation - intramolecular 1,3-dipolar cycloaddition...
The synthesis and 1,3-dipolar cycloaddition reactions of unsaturated α-diazo-β,ε-diketo sulfones 7 u...
Enantiomerically pure alpha-oxo diazo compounds derived from (S)-proline were used for 1,3-dipolar c...
CONSPECTUS: Cycloaddition reactions are among the most powerful methods for the synthesis of complex...
High enantioselectivities (94–96% ee) were obtained for the inverse electron-demand 1,3-dipolar cycl...
The multicomponent 1,3-dipolar cycloaddition of different 1,2-diaza-1,3-dienes with in situ-generate...
A simple route to complexity: An organocatalytic 1,3-dipolar cycloaddition between azlactones and me...
Asymmetric 1,3-dipolar cycloaddition reactions between <i>N</i>-methylindoles and several cyclic car...
The 1,3-dipolar cycloaddition reactions of 2-diazocyclohexane-1,3-dione (7a; Table 1) and of alkyl d...