Enantioselective Diels–Alder reactions catalyzed by hydrogen bonding
- 6 April 2004
- journal article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 101 (16) , 5846-5850
- https://doi.org/10.1073/pnas.0308545101
Abstract
Like molecules of life (e.g., proteins and DNA), many pharmaceutical drugs are also asymmetric (chiral); they are not superimposable on their mirror images. One mirror image form (enantiomer) of a drug can have desirable activity, the other not. Consequently, the development of methods for the selective synthesis of one enantiomer is of great scientific and economic importance. We report here that a simple, commercially available chiral alcohol, alpha,alpha,alpha',alpha'-tetraaryl-1,3-dioxolane-4,5-dimethanol (TADDOL), catalyzes the all-carbon Diels-Alder reactions of aminosiloxydienes and substituted acroleins to afford the products in good yields and high enantioselectivities (up to 92% enantiomeric excess). It is remarkable that the reactions are promoted by hydrogen bonding, the ubiquitous "glue" that helps to keep water molecules together and holds up the 3D structures of proteins. Hydrogen bond catalysis is little used in chemical synthesis, wherein most reactions are promoted by complexes of Lewis acidic metal salts coordinated to chiral ligands. As it does for enzymes, hydrogen bonding not only organizes TADDOL into a well defined conformation, but, functioning as a Brønsted acid catalyst, it also activates the dienophile toward reaction with the diene. The gross structure of the TADDOL has been found to have a profound influence on both the rate and the enantioselectivity of the cycloadditions. These structure-function effects are rationalized by evaluating the conformation adopted by the TADDOLs in the crystal state. It is suggested that pi,pi-stacking plays an central role in the overall catalytic cycle, in particular, the enantioselective step.Keywords
This publication has 37 references indexed in Scilit:
- Asymmetric Morita−Baylis−Hillman Reactions Catalyzed by Chiral Brønsted AcidsJournal of the American Chemical Society, 2003
- Single enantiomers from a chiral-alcohol catalystNature, 2003
- Planar Chiral PHANOLs as Organocatalystsfor the Diels-Alder Reaction via Double Hydrogen-Bondingto a Carbonyl GroupSynlett, 2003
- New Strategies for Organic Catalysis: The First Highly Enantioselective Organocatalytic Diels−Alder ReactionJournal of the American Chemical Society, 2000
- Catalysis of a Diels−Alder Reaction by Amidinium IonsThe Journal of Organic Chemistry, 2000
- Altering the Stereochemistry of Allylation Reactions of Cyclic .alpha.-Sulfinyl Radicals with DiarylureasThe Journal of Organic Chemistry, 1994
- Hydrogen bond directed cocrystallization and molecular recognition properties of acyclic imidesJournal of the American Chemical Society, 1991
- Hydrogen bond-directed cocrystallization and molecular recognition properties of diarylureasJournal of the American Chemical Society, 1990
- Encoding and decoding hydrogen-bond patterns of organic compoundsAccounts of Chemical Research, 1990
- 1,8-Biphenylenediol forms two strong hydrogen bonds to the same oxygen atomJournal of the American Chemical Society, 1984