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A 4‐Hydroxypyrrolidine‐Catalyzed Mannich Reaction of Aldehydes: Control of <i>anti‐</i>Selectivity by Hydrogen Bonding Assisted by Brønsted Acids
29
Citations
102
References
2010
Year
EngineeringNatural SciencesDiversity-oriented SynthesisBrønsted AcidsAromatic Aldehyde-derived IminesOrganic ChemistryHydrogen Bonding AssistedOrganometallic CatalysisCatalysisBeta-amino AlcoholsChemistryAnti-selective Mannich ReactionSynthetic ChemistryStereoselective SynthesisAsymmetric CatalysisMannich ReactionEnantioselective SynthesisBiomolecular Engineering
An anti-selective Mannich reaction of aldehydes with N-sulfonyl imines has been developed by using a 4-hydroxypyrrolidine in combination with an external Brønsted acid. The catalyst design is based on three elements: the alpha-substituent of the pyrrolidine, the 4-hydroxy group, and the Brønsted acid, the combination of which is essential for high chemical and stereochemical efficiency. The reaction works with aromatic aldehyde-derived imines, which have rarely been employed in previously reported enamine-based anti-Mannich reactions. Additionally, both N-tosyl and N-nosyl imines can be successfully used and the Mannich adducts can be easily reduced or oxidized, and after N-deprotection the corresponding beta-amino acids and beta-amino alcohols can be obtained with good yields. The results also show that this ternary catalytic system may be practical in other enamine-based reactions.
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