848194-80-9Relevant academic research and scientific papers
Catalytic asymmetric nitro-Mannich reactions with a Yb/K heterobimetallic catalyst
Nitabaru, Tatsuya,Kumagai, Naoya,Shibasaki, Masakatsu
experimental part, p. 1280 - 1290 (2010/06/13)
A catalytic asymmetric nitro-Mannich (aza-Henry) reaction with rare earth metal/alkali metal heterobimetallic catalysts is described. A Yb/K heterobimetallic catalyst assembled by an amide-based ligand promoted the asymmetric nitro-Mannich reaction to afford enantioenriched anti-β- nitroamines in up to 86% ee. Facile reduction of the nitro functionality allowed for efficient access to optically active 1,2-diamines.
Asymmetric aza-Henry reaction under phase transfer catalysis: An experimental and theoretical study
Gomez-Bengoa, Enrique,Linden, Anthony,Lopez, Rosa,Mugica-Mendiola, Idoia,Oiarbide, Mikel,Palomo, Claudio
supporting information; experimental part, p. 7955 - 7966 (2009/02/01)
An efficient catalytic asymmetric aza-Henry reaction under phase transfer conditions is presented. The method is based on the reaction of the respective nitroalkane with α-amido sulfones effected by CsOH·H2O base in toluene as solvent and in the presence of cinchone-derived ammonium catalysts. This direct aza-Henry reaction presents as interesting features its validity for both nonenolizable and enolizable aldehyde-derived azomethines and the tolerance of nitroalkanes, other than nitromethane, for the production of β-nitroamines. The synthetic value of the methodology described is demonstrated by providing (a) a direct route for the asymmetric synthesis of differently substituted 1,2-diamines and (b) a new asymmetric synthesis of γ-amino α,β-unsaturated esters through a catalytic, highly enantioselective formal addition of functionalized alkenyl groups to azomethines. Finally, a preferred TS that nicely fits the observed enantioselectivity has been identified. Most remarkable, an unusual hydrogen bond pattern for the catalyst-nitrocompound-imine complex is predicted, where the catalyst OH group interacts with the NO2 group of the nitrocompound.
Highly enantioselective thiourea-catalyzed nitro-mannich reactions
Yoon, Tehshik P.,Jacobsen, Eric N.
, p. 466 - 468 (2007/10/03)
(Chemical Equation Presented) Approaching "privileged" status? A new and highly effective enantioselective catalyst for the nitro-Mannich reaction was identified by modification of thioureabased Strecker catalysts (see scheme). Products are obtained in hi
