| Literature DB >> 30011901 |
Dmitrii V Belykh1, Lidiya I Mazaletskaya2, Nataliya I Sheludchenko3, Tatyana K Rocheva4, Irina S Khudyaeva5, Evgeny V Buravlev6, Olga V Shchukina7, Irina Yu Chukicheva8.
Abstract
This article focuses on the antiradical activity of a number of 2,6-diisobornylphenol-porphyrin conjugates with various spacers between the porphyrin and phenolic fragments in the model reaction of ethylbenzene oxidation initiated by azoisobutyric acid dinitrile. The study has shown that the electronic effects of the groups directly related to the 2,6-diisobornylphenol fragment exert the predominant influence both on the reactivity of the phenolic hydroxyl group in interaction with free radicals and on the antiradical activity of the molecule as a whole. The antiradical activity of the molecule is generally less affected by the nature of the substituents in the porphyrin macrocycle, mainly due to a change in the stoichiometric inhibition coefficient in the presence of relatively easily oxidizable groups. It was found that the length of the spacer between the porphyrin and phenolic fragments does not affect the antiradical activity of the conjugate.Entities:
Keywords: 2,6-diisobornylphenol; antiradical activity; chlorophyll derivatives; inhibited ethylbenzene oxidation; stoichiometric inhibition coefficient; tetra(meso-aryl)porphyrins
Mesh:
Substances:
Year: 2018 PMID: 30011901 PMCID: PMC6099704 DOI: 10.3390/molecules23071718
Source DB: PubMed Journal: Molecules ISSN: 1420-3049 Impact factor: 4.411
Figure 1Structure of 2,6-diisobornyl-4-methylphenol 1.
Scheme 1Synthesis of porphyrin conjugates with 2,6-diisobornylphenol.
Figure 2Structure of the conjugates 8–11.
Figure 3Dependence of induction period of inhibited ethylbenzene oxidation on the initial concentration of compounds 5, 8–10 (a) and 7, 11 (b). Temperature 333 K, Wi = 5 × 10–8 mol/L·s.
Figure 4Dependence of the initial rate of inhibited ethylbenzene oxidation on the initial concentration of compounds 5, 7–11 in the coordinates of the equation W0/W − W/W0 = fkinh[AO]0/kr0.5Wi0.5. Temperature 333 K, Wi = 5 × 10−8 mol/L·s.
The values of the stoichiometric coefficient f, the inhibition parameter fkinh, the rate constant of the reaction with the peroxy radicals ethylbenzene kinh (temperature 333 K).
| Compound |
| ||
|---|---|---|---|
|
| 1.8 | 20.7 | 11.5 |
|
| 1.7 | 2.4 | 1.4 |
|
| 1.8 | 3.3 | 1.8 |
|
| 2.0 | 10 | 5.0 |
|
| 2.3 | 11 | 4.8 |
|
| 2.2 | 29 | 13.2 |
| 11 | 2.1 | 17 | 8.1 |