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Influence of catecholic ring torsion on hydroxyflavones Cover

Influence of catecholic ring torsion on hydroxyflavones

Open Access
|Jun 2020

Abstract

Systematic quantum chemical investigation of quercetin and selected eight mono- and bihydroxyflavonols is presented. Structural analysis based on the Density Functional Theory showed that the energetically preferred conformation of flavonols substituted at the C5 and C3 atoms by a hydroxyl group is stabilised via intramolecular hydrogen bonds occurring between the (C4)O···HO(3 or 5) atomic pairs. Depending on the hydroxyl group positions, energetically preferred torsional orientation of the phenyl ring with respect to the planar benzo-γ-pyrone moiety changed from 0 to 180 degrees. Gas-phase electron transitions were investigated using the time-dependent DFT treatment. The dependence of maximal wavelengths on the torsional deformation of the phenyl ring is of a similar shape, i.e. minima observed for the perpendicular orientation and maxima for the planar one. Shape and energies of the Highest Occupied (HOMO) and Lowest Unoccupied (LUMO) Molecular Orbitals were compared. The obtained theoretical results were compared with available experimental data.

DOI: https://doi.org/10.2478/acs-2020-0008 | Journal eISSN: 1339-3065 | Journal ISSN: 1337-978X
Language: English
Page range: 49 - 55
Published on: Jun 29, 2020
Published by: Slovak University of Technology in Bratislava
In partnership with: Paradigm Publishing Services
Publication frequency: 2 issues per year
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© 2020 Martin Michalík, Monika Biela, Denisa Cagardová, Vladimír Lukeš, published by Slovak University of Technology in Bratislava
This work is licensed under the Creative Commons Attribution 4.0 License.