Expanding the Clip-and-Cleave Concept: Approaching Enantioselective C-H Hydroxylations by Copper Imine Complexes Using O 2 and H 2 O 2 as Oxidants

Copper-mediated aromatic and aliphatic C-H hydroxylations using benign oxidants (O and H O ) have been studied intensively in recent years to meet the growing demand for efficient and green C-H functionalizations. Herein, we report an enantioselective variant of the so-called clip-and-cleave concept...

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Veröffentlicht in:Journal of the American Chemical Society 2024-09, Vol.146 (37), p.25689-25700
Hauptverfasser: Petrillo, Alexander, Kirchgeßner-Prado, Kevin F, Hiller, David, Eisenlohr, Kim A, Rubin, Giacomo, Würtele, Christian, Goldberg, Remy, Schatz, Dominic, Holthausen, Max C, Garcia-Bosch, Isaac, Schindler, Siegfried
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Sprache:eng
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Zusammenfassung:Copper-mediated aromatic and aliphatic C-H hydroxylations using benign oxidants (O and H O ) have been studied intensively in recent years to meet the growing demand for efficient and green C-H functionalizations. Herein, we report an enantioselective variant of the so-called clip-and-cleave concept for intramolecular ligand hydroxylations by the application of chiral diamines as directing groups. We tested the hydroxylation of cyclohexanone and 1-acetyladamantane under different oxidative conditions (Cu /O ; Cu /H O ; Cu /H O ) in various solvents. As an outstanding example, we obtained ( )-1-acetyl-2-adamantol with a yield of 37% and >99:1 enantiomeric excess from hydroxylation in acetone using Cu and O . Low-temperature stopped-flow UV-vis measurements in combination with density functional theory (DFT) computations revealed that the hydroxylation proceeds via a bis(μ-oxido) dicopper intermediate. The reaction product represents a rare example of an enantiopure 1,2-difunctionalized adamantane derivative, which paves the way for potential pharmacological studies. Furthermore, we found that 1-acetyladamantane can be hydroxylated in a one-pot reaction under air with isolated yields up to 36% and enantiomeric ratios of 96:4 using Cu /H O in MeOH.
ISSN:0002-7863
1520-5126
DOI:10.1021/jacs.4c07777