Author/Authors :
Guohua Liu and Deming Liu، نويسنده , , Wei-Jun Tang، نويسنده , , Qing-Hua Fan، نويسنده ,
Abstract :
Three types of new chiral BINOL ligands (, and ) bearing dendritic wedges have been synthesized through coupling reaction between 3-hydroxymethyl-2,2′-bis(methoxymethyl)-1,1′-binaphthol (), 6,6′-dihydroxymethyl-2,2′-bis(methoxymethyl)-1,1′-binaphthol (), 6-hydroxymethyl-2,2′-bis(methoxymethyl)-1,1′-binaphthol () and Fréchet-type polyether dendritic benzyl bromide, followed by deprotection of methoxymethyl groups by iPrOH/HCl, respectively. These new ligands obtained were assessed in enantioselective Lewis acid-catalyzed addition of diethylzinc to benzaldehyde. Compared to the enantioselectivity observed with dendrimer bearing the dendritic wedges at 3,3′-positions of the binaphthyl backbone, higher enantioselectivity for all these ligands was observed. Difference in the effect of linking positions and generations on enantioselectivity and/or activity for all three kinds of dendritic ligand-derived catalysts was observed. Among these dendritic ligands, /Ti(IV) catalyst with the dendritic wedges at 6,6′-positions of BINOL gave the highest enantioselectivity (up to 87% ee).
Keywords :
Alkylation , BINOL , chiral dendrimer , Asymmetric catalysis