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Highly enantioselective aldol reactions between acetaldehyde and activated acyclic ketones catalyzed by chiral primary amines.
Chemistry. 2013 May 27; 19(22):7143-50.C

Abstract

Highly enantioselective cross-aldol reactions between acetaldehyde and activated acyclic ketones are reported for the first time. Various acyclic ketones, such as saturated and unsaturated keto esters, reacted with acetaldehyde in the presence of a chiral primary amine and a Brønsted acid to afford optically enriched tertiary alcohols in good yields and with excellent enantioselectivities. Trifluoromethyl ketones were tolerable under the reaction conditions, thereby affording the trifluoromethyl carbinol in good-to-excellent yields and enantioselectivities. Structural modification of the chiral amines from the same chiral source switched the stereoselectivity of the products. The utility of aldol chemistry was demonstrated in the brief synthesis of functionally enriched δ-lactones. Theoretical calculations on the transition-state structure indicated that the protonated tertiary amine could effectively activate the carbonyl group of a keto ester to promote the addition process through hydrogen-bonding interaction and, simultaneously, provide an appropriate attacking pattern for the approach of the keto ester to the enamine, which is formed from acetaldehyde and the chiral catalyst, on a particular face, resulting in high enantioselectivity.

Authors+Show Affiliations

Chemical Synthesis and Pollution Control, Key Laboratory of Sichuan Province and College of Chemistry and Chemical Engineering, China West Normal University, Nanchong 637000, PR China.No affiliation info availableNo affiliation info availableNo affiliation info availableNo affiliation info availableNo affiliation info availableNo affiliation info available

Pub Type(s)

Journal Article

Language

eng

PubMed ID

23559455

Citation

Deng, Yu-Hua, et al. "Highly Enantioselective Aldol Reactions Between Acetaldehyde and Activated Acyclic Ketones Catalyzed By Chiral Primary Amines." Chemistry (Weinheim an Der Bergstrasse, Germany), vol. 19, no. 22, 2013, pp. 7143-50.
Deng YH, Chen JQ, He L, et al. Highly enantioselective aldol reactions between acetaldehyde and activated acyclic ketones catalyzed by chiral primary amines. Chemistry. 2013;19(22):7143-50.
Deng, Y. H., Chen, J. Q., He, L., Kang, T. R., Liu, Q. Z., Luo, S. W., & Yuan, W. C. (2013). Highly enantioselective aldol reactions between acetaldehyde and activated acyclic ketones catalyzed by chiral primary amines. Chemistry (Weinheim an Der Bergstrasse, Germany), 19(22), 7143-50. https://doi.org/10.1002/chem.201300478
Deng YH, et al. Highly Enantioselective Aldol Reactions Between Acetaldehyde and Activated Acyclic Ketones Catalyzed By Chiral Primary Amines. Chemistry. 2013 May 27;19(22):7143-50. PubMed PMID: 23559455.
* Article titles in AMA citation format should be in sentence-case
TY - JOUR T1 - Highly enantioselective aldol reactions between acetaldehyde and activated acyclic ketones catalyzed by chiral primary amines. AU - Deng,Yu-Hua, AU - Chen,Jin-Quan, AU - He,Long, AU - Kang,Tai-Ran, AU - Liu,Quan-Zhong, AU - Luo,Shi-Wei, AU - Yuan,Wei-Chen, Y1 - 2013/04/04/ PY - 2013/02/06/received PY - 2013/4/6/entrez PY - 2013/4/6/pubmed PY - 2013/4/6/medline SP - 7143 EP - 50 JF - Chemistry (Weinheim an der Bergstrasse, Germany) JO - Chemistry VL - 19 IS - 22 N2 - Highly enantioselective cross-aldol reactions between acetaldehyde and activated acyclic ketones are reported for the first time. Various acyclic ketones, such as saturated and unsaturated keto esters, reacted with acetaldehyde in the presence of a chiral primary amine and a Brønsted acid to afford optically enriched tertiary alcohols in good yields and with excellent enantioselectivities. Trifluoromethyl ketones were tolerable under the reaction conditions, thereby affording the trifluoromethyl carbinol in good-to-excellent yields and enantioselectivities. Structural modification of the chiral amines from the same chiral source switched the stereoselectivity of the products. The utility of aldol chemistry was demonstrated in the brief synthesis of functionally enriched δ-lactones. Theoretical calculations on the transition-state structure indicated that the protonated tertiary amine could effectively activate the carbonyl group of a keto ester to promote the addition process through hydrogen-bonding interaction and, simultaneously, provide an appropriate attacking pattern for the approach of the keto ester to the enamine, which is formed from acetaldehyde and the chiral catalyst, on a particular face, resulting in high enantioselectivity. SN - 1521-3765 UR - https://www.unboundmedicine.com/medline/citation/23559455/Highly_enantioselective_aldol_reactions_between_acetaldehyde_and_activated_acyclic_ketones_catalyzed_by_chiral_primary_amines_ L2 - https://doi.org/10.1002/chem.201300478 DB - PRIME DP - Unbound Medicine ER -