Electrochemical analysis has been widely used to assess activities of reductant antioxidants, but the mechanistic factors that determine reducing ability and their corresponding correlations remain to be explored further. In the present paper, the reactivity of a selection of phenolic compounds in anodic oxidation was investigated by cyclic voltammetry (CV). The effects of electron-donation ability, deprotonation equilibrium, stability of radicals and chemical hardness on reducing capacity were studied by computational chemistry methods and multiple linear regression analysis. The results suggested that all these factors made significant contributions to reducing potency although electron-donation ability of the parent molecule plays the mo...
The reactions of antioxidants with superoxide radical were studied by cyclic voltammetry (CV)—...
Antioxidant activity of a number of small (low molecular weight) natural compounds found in spices, ...
The activity-structure relationships (ASR) of phenolic compounds as hydroxyl-radical scavengers have...
We have investigated the electrochemical oxidation of a number natural phenolics ( salicylic acid, m...
International audienceThe reactivities of different phenols and polyphenols versus superoxide ion (O...
We have investigated the electrochemical oxidation of a number natural phenolics (salicylic acid, m-...
A study of the anodic reactions of phenols was made using the techniques of voltammetry, coulometry,...
Reported discrepancies have confused the understanding of the molecular mechanisms of antioxidant re...
Electrochemical assay has been employed recently to study the activity of antioxidants; however, the...
Phenolic compounds are known antioxidants and show inconsistent antioxidant activities depending on ...
AbstractThe electrochemical oxidation of phenol, resorcinol and pyrogallol was investigated in sulfu...
Predicting antioxidant activity in a given system is undoubtedly the "holy grail" of the academic an...
The electrochemical oxidation of selected <i>tert</i>-butylated phenols 2,6-di-<i>tert</i>-butyl-4-m...
Electrochemical oxidation of some p-substituted phenols (p-nitrophenol, p-hydroxybenzaldehyde, pheno...
446 pagesOrganic molecules are capable of diverse redox chemistries. This capability has traditional...
The reactions of antioxidants with superoxide radical were studied by cyclic voltammetry (CV)—...
Antioxidant activity of a number of small (low molecular weight) natural compounds found in spices, ...
The activity-structure relationships (ASR) of phenolic compounds as hydroxyl-radical scavengers have...
We have investigated the electrochemical oxidation of a number natural phenolics ( salicylic acid, m...
International audienceThe reactivities of different phenols and polyphenols versus superoxide ion (O...
We have investigated the electrochemical oxidation of a number natural phenolics (salicylic acid, m-...
A study of the anodic reactions of phenols was made using the techniques of voltammetry, coulometry,...
Reported discrepancies have confused the understanding of the molecular mechanisms of antioxidant re...
Electrochemical assay has been employed recently to study the activity of antioxidants; however, the...
Phenolic compounds are known antioxidants and show inconsistent antioxidant activities depending on ...
AbstractThe electrochemical oxidation of phenol, resorcinol and pyrogallol was investigated in sulfu...
Predicting antioxidant activity in a given system is undoubtedly the "holy grail" of the academic an...
The electrochemical oxidation of selected <i>tert</i>-butylated phenols 2,6-di-<i>tert</i>-butyl-4-m...
Electrochemical oxidation of some p-substituted phenols (p-nitrophenol, p-hydroxybenzaldehyde, pheno...
446 pagesOrganic molecules are capable of diverse redox chemistries. This capability has traditional...
The reactions of antioxidants with superoxide radical were studied by cyclic voltammetry (CV)—...
Antioxidant activity of a number of small (low molecular weight) natural compounds found in spices, ...
The activity-structure relationships (ASR) of phenolic compounds as hydroxyl-radical scavengers have...