Science 2010-02-19

Asymmetric cooperative catalysis of strong Brønsted acid-promoted reactions using chiral ureas.

Hao Xu, Stephan J Zuend, Matthew G Woll, Ye Tao, Eric N Jacobsen

Index: Science 327(5968) , 986-90, (2010)

Full Text: HTML

Abstract

Cationic organic intermediates participate in a wide variety of useful synthetic transformations, but their high reactivity can render selectivity in competing pathways difficult to control. Here, we describe a strategy for inducing enantioselectivity in reactions of protio-iminium ions, wherein a chiral catalyst interacts with the highly reactive intermediate through a network of noncovalent interactions. This interaction leads to an attenuation of the reactivity of the iminium ion and allows high enantioselectivity in cycloadditions with electron-rich alkenes (the Povarov reaction). A detailed experimental and computational analysis of this catalyst system has revealed the precise nature of the catalyst-substrate interactions and the likely basis for enantioinduction.


Related Compounds

Related Articles:

Degradation of the synthetic dye amaranth by the fungus Bjerkandera adusta Dec 1: inference of the degradation pathway from an analysis of decolorized products.

2011-11-01

[Biodegradation 22(6) , 1239-45, (2011)]

Fabrication of biocompatible and tumor-targeting hyaluronan nanospheres by a modified desolvation method.

2014-05-01

[J. Pharm. Sci. 103(5) , 1529-37, (2014)]

Discovery of a substituted 8-arylquinoline series of PDE4 inhibitors: structure-activity relationship, optimization, and identification of a highly potent, well tolerated, PDE4 inhibitor.

2005-12-01

[Bioorg. Med. Chem. Lett. 15(23) , 5241-6, (2005)]

Kinetics of ozone reactions with 1-naphthalene, 1,5-naphthalene and 3-nitrobenzene sulphonic acids in aqueous solutions.

2001-01-01

[Water Sci. Technol. 44(5) , 7-13, (2001)]

More Articles...