Ten 4-acyloxy-L-prolines were screened as catalysts at loadings of 2–0.1 mol-% for the direct asymmetric aldol reaction in water by using variable amounts of water. Among them, a new catalyst, the L-proline carrying a trans-4-(2,2-diphenylacetoxy)group, and a catalyst previously synthesized by us, the L-proline carrying a trans-(4-phenylbutanoyloxy)group, were found to be excellent catalysts for the aldol reaction between cyclohexanone or cyclopentanone and substituted benzaldehydes when employed in only 1 and 0.5 mol-%,respectively, at room temperature without additives. For such catalysts, high turnover numbers were obtained, which are among the highest values obtained for enamine organocatalysis. Finally, these catalysts can be synthesized by direct O-acylation from inexpensive molecules and successfully used in scaled-up reactions.
GIACALONE, F., GRUTTADAURIA, M., AGRIGENTO, P., LO MEO, P., NOTO, R. (2010). Advances towards highly active and stereoselective simple and cheap proline-based organocatalysts. EUROPEAN JOURNAL OF ORGANIC CHEMISTRY, -, 5696-5704 [10.1002/ejoc.201000913].
Advances towards highly active and stereoselective simple and cheap proline-based organocatalysts
GIACALONE, Francesco;GRUTTADAURIA, Michelangelo;AGRIGENTO, Paola;LO MEO, Paolo Maria Giuseppe;NOTO, Renato
2010-01-01
Abstract
Ten 4-acyloxy-L-prolines were screened as catalysts at loadings of 2–0.1 mol-% for the direct asymmetric aldol reaction in water by using variable amounts of water. Among them, a new catalyst, the L-proline carrying a trans-4-(2,2-diphenylacetoxy)group, and a catalyst previously synthesized by us, the L-proline carrying a trans-(4-phenylbutanoyloxy)group, were found to be excellent catalysts for the aldol reaction between cyclohexanone or cyclopentanone and substituted benzaldehydes when employed in only 1 and 0.5 mol-%,respectively, at room temperature without additives. For such catalysts, high turnover numbers were obtained, which are among the highest values obtained for enamine organocatalysis. Finally, these catalysts can be synthesized by direct O-acylation from inexpensive molecules and successfully used in scaled-up reactions.File | Dimensione | Formato | |
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