Conformational Preference of 2′-Fluoro-Substituted Acetophenone Derivatives Revealed by Through-Space 1H–19F and 13C–19F Spin–Spin Couplings

The conformational properties of 2′-fluoro-substituted acetophenone derivatives were elucidated based on Hα–F and Cα–F through-space spin–spin couplings (TS-couplings), which occur between two atoms constrained at a distance smaller than the sum of their van der Waals radii. This study revealed that...

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Veröffentlicht in:Journal of organic chemistry 2021-03, Vol.86 (6), p.4638-4645
Hauptverfasser: Otake, Chinatsu, Namba, Takuya, Tabata, Hidetsugu, Makino, Kosho, Hirano, Kiriko, Oshitari, Tetsuta, Natsugari, Hideaki, Kusumi, Takenori, Takahashi, Hideyo
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Sprache:eng
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Zusammenfassung:The conformational properties of 2′-fluoro-substituted acetophenone derivatives were elucidated based on Hα–F and Cα–F through-space spin–spin couplings (TS-couplings), which occur between two atoms constrained at a distance smaller than the sum of their van der Waals radii. This study revealed that 2′-fluoro-substituted acetophenone derivatives in solutions form exclusively s-trans conformers by analyzing their NMR spectra focused on the TS-couplings. The magnitudes of the coupling constants 5 J (Hα, F) and 4 J (Cα, F) correlate linearly with the value of the dielectric constant of the solvents. Furthermore, s-trans conformations of the two derivatives were confirmed by X-ray crystallographic analysis. These conformational preferences were consistent with the DFT calculations. The s-cis conformer, in which fluorine and oxygen atoms lie in a syn-periplanar mode, may be subject to strong repulsion between the two polar atoms and become unstable. The s-trans preference of the 2′-fluoro-substituted acetophenone derivatives may be utilized in drug design.
ISSN:0022-3263
1520-6904
DOI:10.1021/acs.joc.1c00051