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The role of intra and intermolecular interactions on the conformational dynamics of 2-halo-1-phenylpropanols: Structure and solvent effects.

Authors :
Francisco, Camila Botin
Dourado, Fernanda Franco
Fernandes, Cleverton de Souza
Gauze, Gisele de Freitas
Basso, Ernani Abicht
Source :
Journal of Molecular Structure. Feb2025:Part 3, Vol. 1322, pN.PAG-N.PAG. 1p.
Publication Year :
2025

Abstract

• Conformational patterns of 2-halo-1-phenylpropanols determined in different solvents. • Experimental and theoretical NMR 3 J H H measurements. • Competition of stereoelectronic effects drives the conformational trends. • Contribution of hyperconjugation, C-X···π and C H···π interactions. Experimental and theoretical 3 J H H scalar coupling constants allowed the identification of the conformational landscape of erythro (e X) and threo (t X) 2-halo-1-phenylpropanols (halo = F, Cl, and Br). NMR scalar coupling constants captured dynamics of the O C-C-X dihedral and OH rotameric states, in a dynamic and solvent-dependent equilibrium. The erythro series revealed a particular halogen-dependent equilibrium, which showed different sensitivity to the media, especially in acetone, where the e F populations were completely shifted. At the same time, threo showed a highly solvent-sensitive equilibrium. NBO calculations showed the importance of electron delocalization over steric and electrostatic effects to stabilize the preferred synclinal conformer in both diastereomers. A Principal Component Analysis (PCA) on the NBO stabilization energies pointed to a complex mixture of electronic delocalization happening simultaneously. Hyperconjugative interactions are significant, but they are not the only important effect. Non-covalent interactions were also identified through NCI surfaces. Hydrogen bonds and intramolecular C-X···π and C H···π interactions were proved to act differently in the two diastereomers, affecting their equilibria in different ways. Nuclear Overhauser (NOE) NMR experiments point to an intramolecular C H···π contact, while 1H NMR of the aromatic hydrogens evidence an intermolecular effect of acetone and DMSO on the phenyl ring. DFT with explicit solvation shows a solvent shell favoring intermolecular C H···π contacts, in agreement with the experiments. This thorough analysis revealed that intra- and intermolecular factors contribute to the preference for the synclinal conformer in the studied compounds. [Display omitted] [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00222860
Volume :
1322
Database :
Academic Search Index
Journal :
Journal of Molecular Structure
Publication Type :
Academic Journal
Accession number :
181248338
Full Text :
https://doi.org/10.1016/j.molstruc.2024.140493