2007
DOI: 10.1002/ejoc.200700586
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Hydrophobically Directed Aldol Reactions: Polystyrene‐Supported L‐Proline as a Recyclable Catalyst for Direct Asymmetric Aldol Reactions in the Presence of Water

Abstract: A simple synthetic methodology for the preparation of a polystyrene-supported L-proline material is reported, and this material has been used as catalyst in direct asymmetric aldol reactions between several ketones and arylaldehydes to furnish aldol products in high yields and stereoselectivities. Screening of solvents showed that these reactions take place only in the presence of water or methanol, at lower levels of conversion in the latter case. This solvent effect, coupled with the observed high stereosele… Show more

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Cited by 154 publications
(67 citation statements)
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“…Aldols 1a,b, 3-7a,b and enone 2 [17] are known products [18,19] and their NMR spectra agreed with reported data.…”
Section: Methodssupporting
confidence: 89%
“…Aldols 1a,b, 3-7a,b and enone 2 [17] are known products [18,19] and their NMR spectra agreed with reported data.…”
Section: Methodssupporting
confidence: 89%
“…This polymeric organocatalyst (10 mol%) was used in the aldol reaction between cyclohexanone (2 equiv.) with different aromatic aldehydes in a small amount of water as solvent, affording mainly aldols anti-4 in good chemical yields, and excellent diastereo-and enantioselectivities (71-98%, 84-92% de, 90-98% ee) [61,62]. Using other cyclic ketones as nucleophiles, similar results were found, acetone giving low yields.…”
Section: Aqueous Aldol Reactions With Supported Organocatalystssupporting
confidence: 64%
“…In this context, we started a research project in order to find new organocatalysts, structurally simple, which are able to catalyze the asymmetric aldol reaction in water in low amounts (< 10 mol%) without the need of additives. In the last years our efforts have been devoted to the investigation of new recyclable proline-derived organocatalysts [18] and to the elucidation of some mechanistic aspects of pro- line-catalyzed reactions. [19] From a green chemistry point of view such studies are interesting because the direct aldol reaction is atomically economic, a low amount of an organocatalyst can be employed and the reaction medium is water.…”
Section: Introductionmentioning
confidence: 99%