Chemistry - A European Journal · 2012 · 77 citations · 78 references
Asymmetric CatalysisFluorine Conformational EffectEngineeringBiochemistryNatural SciencesConformational StudyOrganic ChemistryLow Energy ConformersCatalysisChemistryEnantioselective CatalysisHeterocycle ChemistryNatural Product SynthesisFluorinated Cinchona AlkaloidsControlling Internal RotationEnantioselective SynthesisBiomolecular EngineeringC9 Position
The C9 position of cinchona alkaloids functions as a molecular hinge, with internal rotations around the C8-C9 (τ(1)) and C9-C4' (τ(2)) bonds giving rise to four low energy conformers (1; anti-closed, anti-open, syn-closed, and syn-open). By substituting the C9 carbinol centre by a configurationally defined fluorine substituent, a fluorine-ammonium ion gauche effect (σ(C-H) → σ(C-F)*; F(δ-)⋅⋅⋅N(+)) encodes for two out of the four possible conformers (2). This constitutes a partial solution to the long-standing problem of governing internal rotations in cinchonium-based catalysts relying solely on a fluorine conformational effect.
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