Novel Small Organic Molecules for a Highly Enantioselective Direct Aldol Reaction

Novel organic molecules containing an l-proline amide moiety and a terminal hydroxyl for catalyzing direct asymmetric aldol reactions of aldehydes in neat acetone are designed and prepared. Catalyst 3d, prepared from l-proline and (1S,2S)-diphenyl-2-aminoethanol, exhibits high enantioselectivities o...

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Veröffentlicht in:Journal of the American Chemical Society 2003-05, Vol.125 (18), p.5262-5263
Hauptverfasser: Tang, Zhuo, Jiang, Fan, Yu, Luo-Ting, Cui, Xin, Gong, Liu-Zhu, Mi, Ai-Qiao, Jiang, Yao-Zhong, Wu, Yun-Dong
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Sprache:eng
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Zusammenfassung:Novel organic molecules containing an l-proline amide moiety and a terminal hydroxyl for catalyzing direct asymmetric aldol reactions of aldehydes in neat acetone are designed and prepared. Catalyst 3d, prepared from l-proline and (1S,2S)-diphenyl-2-aminoethanol, exhibits high enantioselectivities of up to 93% ee for aromatic aldehydes and up to >99% ee for aliphatic aldehydes. A theoretical study of transition structures demonstrates the important role of the terminal hydroxyl group in the catalyst in the stereodiscrimination. Our results suggest a new strategy in the design of new organic catalysts for direct asymmetric aldol reactions and related transformations because plentiful chiral resources containing multi-hydrogen bond donors, for example, peptides, might be adopted in the design.
ISSN:0002-7863
1520-5126
DOI:10.1021/ja034528q