543681-05-6Relevant articles and documents
Erratum: "enantioselective protonation of prochiral enolates in the asymmetric synthesis of (S)-naproxen": [Tetrahedron Lett. 44 (2003) 2023] (Tetrahedron Letters (2003) 44 (2023) DOI: 10.1016/S0040-4039(03)00217-X)
Melgar-Fernández, Roberto,Juaristi, Eusebio
, p. 1221 - 1222 (2005)
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Increased enantioselectivity in the addition of diethylzinc to benzaldehyde by the use of chiral ligands containing the α-phenylethylamino group in combination with achiral ligands
Munoz-Muniz, Omar,Juaristi, Eusebio
, p. 3781 - 3785 (2007/10/03)
Chiral ligands (S,S)-1, (S,S)-2, (S,S)-3, (S)-4, (S)-5, (S,S)-6, (S,S)-7, and (S,S)-8 turned out to be effective promoters in the enantioselective addition of diethylzinc to benzaldehyde. Interestingly, diamine (S,S)-3 and amino alcohols (S)-5 and (S,S)-7 induce the preferential formation of carbinol (R)-10 (unlike stereoinduction) whereas amido analogues (S,S)-2, (S)-4, and (S,S)-6 favor (S)-10 (like stereoinduction). Molecular modeling at the semiempirical PM3 level provided a reasonable interpretation based on conformational effects in the corresponding transition structures. Combinations of chiral ligands 1-8 with an achiral, flexible ligand (9) gave rise to an activated catalytic system that resulted in faster and higher yielding reactions. Furthermore, substantial increases in the observed enantiomeric excesses of product 10 confirmed the relevant role of achiral bis-(sulfonamide) 9 as activator and "chiral environment amplifier".