ALTHOUGH it has been known for a long time that phenols inhibit the autoxidation of many organic substances, the exact nature of the inhibition process is still not completely understood 1. Most experimental evidence suggests that the reaction involves a straightforward abstraction of the phenolic hydrogen by the substrate peroxy radicals to give a hydroperoxide and a comparatively unreactive phenoxy radical: However, several workers have shown that replacement of the phenolic hydrogen by deuterium has either no effect, or else only a comparatively small effect ( 3c 0-60 per cent) on the rate of this reaction 1-3. It has therefore been suggested that the rate-determining step involves the prior formation of a complex between the peroxy radi...
The reactions of peroxyl radicals are at the center of the oxidative degradation of essentially all ...
A kinetic study of the hydrogen atom abstraction reactions from propanal (PA) and 2,2-dimethylpropan...
The kinetic isotope effect of the reactions OH + CH<sub>3</sub>OCH<sub>3</sub> (DME) and OH + CD<sub...
Rate constants have been measured in nonaqueous media for hydrogen atom abstraction by the phenoxyl ...
The rate constants, k5, for abstraction by peroxyl radicals of the phenolic hydrogens from a number ...
A kinetic study on hydrogen abstraction from strong hydrogen bond acceptors such as DMSO, HMPA, and...
A kinetic study on hydrogen abstraction from strong hydrogen bond acceptors such as DMSO, HMPA, and ...
A kinetic study on hydrogen abstraction from strong hydrogen bond acceptors such as DMSO, HMPA, and ...
none5noThe reactions of alkylperoxyl radicals with phenols have remained difficult to investigate in...
ABSTRACT: A time-resolved kinetic study of the hydrogen atom abstraction reactions from phenol by th...
The kinetics of reactions of the phthalimide N-oxyl radical (PINO) with a series of activated phenol...
The kinetics of reactions of the phthalimide N-oxyl radical (PINO) with a series of activated phenol...
Hydrogen peroxide exalts the reactivity of aqueous ozone by reasons that remain obscure. Should H_2O...
The chain transfer constants (C[lowered s]) of nineteen phenols with poly-(methyl methacrylate) radi...
The kinetics of reactions of the phthalimide N-oxyl radical (PINO) with a series of activated phenol...
The reactions of peroxyl radicals are at the center of the oxidative degradation of essentially all ...
A kinetic study of the hydrogen atom abstraction reactions from propanal (PA) and 2,2-dimethylpropan...
The kinetic isotope effect of the reactions OH + CH<sub>3</sub>OCH<sub>3</sub> (DME) and OH + CD<sub...
Rate constants have been measured in nonaqueous media for hydrogen atom abstraction by the phenoxyl ...
The rate constants, k5, for abstraction by peroxyl radicals of the phenolic hydrogens from a number ...
A kinetic study on hydrogen abstraction from strong hydrogen bond acceptors such as DMSO, HMPA, and...
A kinetic study on hydrogen abstraction from strong hydrogen bond acceptors such as DMSO, HMPA, and ...
A kinetic study on hydrogen abstraction from strong hydrogen bond acceptors such as DMSO, HMPA, and ...
none5noThe reactions of alkylperoxyl radicals with phenols have remained difficult to investigate in...
ABSTRACT: A time-resolved kinetic study of the hydrogen atom abstraction reactions from phenol by th...
The kinetics of reactions of the phthalimide N-oxyl radical (PINO) with a series of activated phenol...
The kinetics of reactions of the phthalimide N-oxyl radical (PINO) with a series of activated phenol...
Hydrogen peroxide exalts the reactivity of aqueous ozone by reasons that remain obscure. Should H_2O...
The chain transfer constants (C[lowered s]) of nineteen phenols with poly-(methyl methacrylate) radi...
The kinetics of reactions of the phthalimide N-oxyl radical (PINO) with a series of activated phenol...
The reactions of peroxyl radicals are at the center of the oxidative degradation of essentially all ...
A kinetic study of the hydrogen atom abstraction reactions from propanal (PA) and 2,2-dimethylpropan...
The kinetic isotope effect of the reactions OH + CH<sub>3</sub>OCH<sub>3</sub> (DME) and OH + CD<sub...