The hydroxyl radical (·OH) is a powerful oxidant that is produced in a wide range of environments via the Fenton reaction (Fe2+ + H2O2 → Fe3+ + ·OH + OH-). The reactants are formed from the reduction of Fe3+ and O2, which may be promoted by organic reductants, such as hydroquinones. The aim of this study was to investigate the extent of ·OH formation in reactions between 2,6-dimethoxyhydroquinone (2,6-DMHQ) and iron oxide nanoparticles. We further compared the reactivities of ferrihydrite and goethite and investigated the effects of the O2 concentration and pH on the generation of ·OH. The main finding was that the reactions between 2,6-DMHQ and iron oxide nanoparticles generated substantial amounts of ·OH under certain conditions via paral...
Fe(II)-catalyzed ferrihydrite transformation under anoxic conditions has been intensively studied, w...
AbstractTransition metal ions, especially iron, appear to be important mediators of oxidative damage...
A wide range of nanoparticles (NPs) have been found to generate free radicals in biological systems....
Hydroquinones are important mediators of electron transfer reactions in soils with a capability to r...
Abstract- The kinetics of hydroquinone oxidation by aqueous suspensions ofpure hematite and goethite...
Iron oxides and oxyhydroxides are common and important materials in the environment, and they stron...
To better understand the oxidative reactivity of iron oxides in the fate of contaminants in acidic e...
Despite the biogeochemical significance of the interactions between natural organic matter (NOM) and...
Abstract--A kinetic study of the oxidation of hydroquinone byaqueous uspensions ofhausmannite at pH ...
In the past decades, extensive efforts have been devoted to the mechanistic understanding of various...
Hydroxyl groups are the cornerstone species driving catalytic reactions on mineral nanoparticles of ...
The Fenton reaction, the Fe-catalyzed conversion of hydrogen peroxide to reactive oxygen species (RO...
Organic pollution has become a critical issue worldwide due to the increasing input and persistence ...
This thesis studies the interaction between free radical species and supported noble metal nanoparti...
Quinones are toxicological substances in inhalable particulate matter (PM). The mechanisms by which ...
Fe(II)-catalyzed ferrihydrite transformation under anoxic conditions has been intensively studied, w...
AbstractTransition metal ions, especially iron, appear to be important mediators of oxidative damage...
A wide range of nanoparticles (NPs) have been found to generate free radicals in biological systems....
Hydroquinones are important mediators of electron transfer reactions in soils with a capability to r...
Abstract- The kinetics of hydroquinone oxidation by aqueous suspensions ofpure hematite and goethite...
Iron oxides and oxyhydroxides are common and important materials in the environment, and they stron...
To better understand the oxidative reactivity of iron oxides in the fate of contaminants in acidic e...
Despite the biogeochemical significance of the interactions between natural organic matter (NOM) and...
Abstract--A kinetic study of the oxidation of hydroquinone byaqueous uspensions ofhausmannite at pH ...
In the past decades, extensive efforts have been devoted to the mechanistic understanding of various...
Hydroxyl groups are the cornerstone species driving catalytic reactions on mineral nanoparticles of ...
The Fenton reaction, the Fe-catalyzed conversion of hydrogen peroxide to reactive oxygen species (RO...
Organic pollution has become a critical issue worldwide due to the increasing input and persistence ...
This thesis studies the interaction between free radical species and supported noble metal nanoparti...
Quinones are toxicological substances in inhalable particulate matter (PM). The mechanisms by which ...
Fe(II)-catalyzed ferrihydrite transformation under anoxic conditions has been intensively studied, w...
AbstractTransition metal ions, especially iron, appear to be important mediators of oxidative damage...
A wide range of nanoparticles (NPs) have been found to generate free radicals in biological systems....