Catalytic asymmetric heterogeneous aziridination of styrene using CuHY: effect of nitrene donor on enantioselectivity

Citation
S. Taylor et al., Catalytic asymmetric heterogeneous aziridination of styrene using CuHY: effect of nitrene donor on enantioselectivity, J CHEM S P2, (9), 2001, pp. 1714-1723
Citations number
40
Categorie Soggetti
Physical Chemistry/Chemical Physics
Journal title
JOURNAL OF THE CHEMICAL SOCIETY-PERKIN TRANSACTIONS 2
ISSN journal
1472779X → ACNP
Issue
9
Year of publication
2001
Pages
1714 - 1723
Database
ISI
SICI code
1472-779X(200109):9<1714:CAHAOS>2.0.ZU;2-A
Abstract
The copper-catalysed aziridination of styrene with copper-exchanged zeolite Y (CuHY) and copper(II) triflate (trifluoromethanesulfonate) (Cu(OTf)(2)) as catalysts is described in detail. Two nitrene donors, [N-(p-tolylsulfbny l)-imino)]phenyliodinane (PhI=NTs) and [N-(p-nitrophenylsulfonyl)imino]phen yliodinane (PhI=NNs) are compared. Modification of the catalyst with bis(ox azolines) affords enantioselective catalysts and a range of chiral bis(oxaz olines) has been studied. The ratio of nitrene donor to styrene is shown to bean important factor controlling, both the yield and ee of aziridine form ed. The best results are obtained with PhI=NNs;ee, greater than or equal to 90%, together with high yields (greater than or equal to 85%), can readily be achieved with this nitrene donor using acetonitrile as solvent. Additio n of the nitrene donor over a period of time, rather than all at the start of the reaction, is shown to enhance the yield of the aziridine but the ee is significantly decreased for both the homogeneous and the heterogeneous c atalysts. Experiments in which the breakdown products of the nitrene donor, iodobenzene and the corresponding sulfonamide, are added at the start of t he reaction show that a complex interplay exists at the copper active site between the reactants, products, chiral modifier and the solvent. However, the heterogeneous catalyst, CuHY, is found to give enhanced enantioselectio n for a range of bis(oxazolines) compared to the homogeneous catalyst, and the effect is considered to be due to the confinement of the catalyst withi n the micropores of the zeolite.