Energetic and electronic computation of the two-hydrogen atom donation process in catecholic and non-catecholic anthocyanidins

Ali, Hussein; Ali, Isra H.;

Abstract


Antioxidant activity of anthocyanidins is greatly affected by the 3-hydroxyl group and/or a catecholic moiety. The two-hydrogen atom donation process is frequently used to explain the high antioxidant activity of polyphenolic compounds leading to the formation of stable diketones e.g. 1,2-quinones. Thermodynamic parameters, HOMO and spin density were computed to identify the favoured path, either through the 3-hydroxyl group or through the catecholic moiety in a series of catecholic and non-catecholic 3-oxy- (and deoxy)-anthocyanidins. DFT calculations showed that the donation process in non-catecholic anthocyanidins depended on the substituents on ring B. Anthocyanidins with 3′,5′-diOMe groups showed donation through 3,4′-OH or, otherwise, through 3,5-OH groups. Catecholic 3-oxyanthocyanidins, on the other hand, showed donation through the 3,4′-OH path rather than the catecholic path (4′,3′-path). The 3,4′-path was favoured by the formation of planar 3-radicals in the first step and the stabilization of 4′-radicals in the second step by H-bonding with the 3′-OH group.


Other data

Title Energetic and electronic computation of the two-hydrogen atom donation process in catecholic and non-catecholic anthocyanidins
Authors Ali, Hussein ; Ali, Isra H.
Keywords Anthocyanidins;Bond dissociation energy;Catechols;DFT calculations;Diradical formation;Radical stabilization
Issue Date 15-Mar-2018
Journal Food Chemistry 
Volume 243
Start page 145
End page 150
ISSN 03088146
DOI 10.1016/j.foodchem.2017.09.120
PubMed ID 29146321
Scopus ID 2-s2.0-85030165643

Attached Files

File Description SizeFormat Existing users please Login
35 Energetic and electronic computation3.pdf596.49 kBAdobe PDF    Request a copy
Recommend this item

Similar Items from Core Recommender Database

Google ScholarTM

Check



Items in Ain Shams Scholar are protected by copyright, with all rights reserved, unless otherwise indicated.