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Enantio- and diastereoselective Michael addition reactions of unmodified aldehydes and ketones with nitroolefins catalyzed by a pyrrolidine sulfonamide.
Chemistry. 2006 May 24; 12(16):4321-32.C

Abstract

Chiral (S)-pyrrolidine trifluoromethanesulfonamide has been shown to serve as an effective catalyst for direct Michael addition reactions of aldehydes and ketones with nitroolefins. A wide range of aldehydes and ketones as Michael donors and nitroolefins as acceptors participate in the process, which proceeds with high levels of enantioselectivity (up to 99 % ee) and diastereoselectivity (up to 50:1 d.r.). The methodology has been employed successfully in an efficient synthesis of the potent H(3) agonist Sch 50917. In addition, a practical three-step procedure for the preparation of (S)-pyrrolidine trifluoromethanesulfonamide has been developed. The high levels of stereochemical control attending Michael addition reactions catalyzed by this pyrrolidine sulfonamide, have been investigated by using ab initio and density functional methods. Transition state structures for the rate-limiting C--C bond-forming step, corresponding to re- and si-face addition to the reactive conformation of the key enamine intermediates have been calculated. Analysis of these structures indicates that hydrogen bonding plays an important role in catalysis and that the energy barrier for si-face attack in reactions of aldehydes to form 2R,3S products is lower than that for the re-face attack leading to 2S,3R products. In contrast, the energy barrier for re-face addition is lower than that for si-face addition in reactions of ketones. The computational results, which are in good agreement with the experimental observations, are discussed in the context of the stereochemical course of these Michael addition reactions.

Authors+Show Affiliations

Department of Chemistry, University of New Mexico, Albuquerque, NM 87131-0001, USA. wwang@unm.eduNo affiliation info availableNo affiliation info availableNo affiliation info availableNo affiliation info availableNo affiliation info available

Pub Type(s)

Journal Article

Language

eng

PubMed ID

16575937

Citation

Wang, Jian, et al. "Enantio- and Diastereoselective Michael Addition Reactions of Unmodified Aldehydes and Ketones With Nitroolefins Catalyzed By a Pyrrolidine Sulfonamide." Chemistry (Weinheim an Der Bergstrasse, Germany), vol. 12, no. 16, 2006, pp. 4321-32.
Wang J, Li H, Lou B, et al. Enantio- and diastereoselective Michael addition reactions of unmodified aldehydes and ketones with nitroolefins catalyzed by a pyrrolidine sulfonamide. Chemistry. 2006;12(16):4321-32.
Wang, J., Li, H., Lou, B., Zu, L., Guo, H., & Wang, W. (2006). Enantio- and diastereoselective Michael addition reactions of unmodified aldehydes and ketones with nitroolefins catalyzed by a pyrrolidine sulfonamide. Chemistry (Weinheim an Der Bergstrasse, Germany), 12(16), 4321-32.
Wang J, et al. Enantio- and Diastereoselective Michael Addition Reactions of Unmodified Aldehydes and Ketones With Nitroolefins Catalyzed By a Pyrrolidine Sulfonamide. Chemistry. 2006 May 24;12(16):4321-32. PubMed PMID: 16575937.
* Article titles in AMA citation format should be in sentence-case
TY - JOUR T1 - Enantio- and diastereoselective Michael addition reactions of unmodified aldehydes and ketones with nitroolefins catalyzed by a pyrrolidine sulfonamide. AU - Wang,Jian, AU - Li,Hao, AU - Lou,Bihshow, AU - Zu,Liansuo, AU - Guo,Hua, AU - Wang,Wei, PY - 2006/4/1/pubmed PY - 2006/4/1/medline PY - 2006/4/1/entrez SP - 4321 EP - 32 JF - Chemistry (Weinheim an der Bergstrasse, Germany) JO - Chemistry VL - 12 IS - 16 N2 - Chiral (S)-pyrrolidine trifluoromethanesulfonamide has been shown to serve as an effective catalyst for direct Michael addition reactions of aldehydes and ketones with nitroolefins. A wide range of aldehydes and ketones as Michael donors and nitroolefins as acceptors participate in the process, which proceeds with high levels of enantioselectivity (up to 99 % ee) and diastereoselectivity (up to 50:1 d.r.). The methodology has been employed successfully in an efficient synthesis of the potent H(3) agonist Sch 50917. In addition, a practical three-step procedure for the preparation of (S)-pyrrolidine trifluoromethanesulfonamide has been developed. The high levels of stereochemical control attending Michael addition reactions catalyzed by this pyrrolidine sulfonamide, have been investigated by using ab initio and density functional methods. Transition state structures for the rate-limiting C--C bond-forming step, corresponding to re- and si-face addition to the reactive conformation of the key enamine intermediates have been calculated. Analysis of these structures indicates that hydrogen bonding plays an important role in catalysis and that the energy barrier for si-face attack in reactions of aldehydes to form 2R,3S products is lower than that for the re-face attack leading to 2S,3R products. In contrast, the energy barrier for re-face addition is lower than that for si-face addition in reactions of ketones. The computational results, which are in good agreement with the experimental observations, are discussed in the context of the stereochemical course of these Michael addition reactions. SN - 0947-6539 UR - https://www.unboundmedicine.com/medline/citation/16575937/Enantio__and_diastereoselective_Michael_addition_reactions_of_unmodified_aldehydes_and_ketones_with_nitroolefins_catalyzed_by_a_pyrrolidine_sulfonamide_ DB - PRIME DP - Unbound Medicine ER -
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