Composite Fenton nanocatalyst was prepared by water-based in situ creation of Fe3O4 nanoparticles integrated within the self-assembly 3D reduced graphene oxide (rGO) aerogel. The hybrid applied for the degradation of Acid Green 25 (AG-25) organic dye in an aqueous solution, in the presence of H2O2. By investigating the conditions that maximize the dye adsorption by the 3D composite, it was found that the pH of the solution should be adjusted between the pKa of the functional groups present on the rGO surface (carboxylic acid) and that of the dye (sulfonic acid) to promote electrostatic interactions dye-3D structure. Performed under these conditions, Fenton degradation of AG-25 in presence of H2O2 was completed in less than 30 min, including...
New reduced graphene oxide-based silver nanoparticle-containing composite hydrogels were successfu...
Functional surfaces and interfaces play a dominant role in advancing physical and chemical propertie...
In this study, the application of the core-shell Fe3O4@SiO2 nano-catalysts for fenton-like degradati...
The increasing amount of organic dye-polluted wastewater from the textile industry makes the develop...
This study reports the facile preparation and the dye removal efficiency of nanohybrids composed of ...
A new type Fenton-like catalyst was fabricated by anchoring Fe<sub>3</sub>O<sub>4</sub> nanoparticle...
Cellulose/graphene oxide (GO)/iron oxide (Fe3O4) composites were prepared by coprecipitating iron sa...
© 2018 In this work, we reported the preparation of 3D graphene/iron oxides aerogels (IO/GA) by in s...
Well-dispersed iron oxide nanoparticles supported onto graphene oxide sheets (i.e. GO-Fe3O4 nanocomp...
Fabrication of visible-light-responsive, macroscopic photo-Fenton catalysts is crucial for wastewate...
International audienceWell-dispersed iron oxide nanoparticles supported onto graphene oxide sheets (...
A magnetic ZnFe2O4–reduced graphene oxide (rGO) hybrid was successfully developed as a heterogeneous...
Water pollution has become serious environmental problem nowadays. Advanced oxidation processes (AOP...
This paper aims to study the chemical degradation of Brilliant Green in water via photo-Fenton (H2O2...
In this study, hematite graphene oxide (αFe2O3-GO) powder nanocomposites and thin-film hematite grap...
New reduced graphene oxide-based silver nanoparticle-containing composite hydrogels were successfu...
Functional surfaces and interfaces play a dominant role in advancing physical and chemical propertie...
In this study, the application of the core-shell Fe3O4@SiO2 nano-catalysts for fenton-like degradati...
The increasing amount of organic dye-polluted wastewater from the textile industry makes the develop...
This study reports the facile preparation and the dye removal efficiency of nanohybrids composed of ...
A new type Fenton-like catalyst was fabricated by anchoring Fe<sub>3</sub>O<sub>4</sub> nanoparticle...
Cellulose/graphene oxide (GO)/iron oxide (Fe3O4) composites were prepared by coprecipitating iron sa...
© 2018 In this work, we reported the preparation of 3D graphene/iron oxides aerogels (IO/GA) by in s...
Well-dispersed iron oxide nanoparticles supported onto graphene oxide sheets (i.e. GO-Fe3O4 nanocomp...
Fabrication of visible-light-responsive, macroscopic photo-Fenton catalysts is crucial for wastewate...
International audienceWell-dispersed iron oxide nanoparticles supported onto graphene oxide sheets (...
A magnetic ZnFe2O4–reduced graphene oxide (rGO) hybrid was successfully developed as a heterogeneous...
Water pollution has become serious environmental problem nowadays. Advanced oxidation processes (AOP...
This paper aims to study the chemical degradation of Brilliant Green in water via photo-Fenton (H2O2...
In this study, hematite graphene oxide (αFe2O3-GO) powder nanocomposites and thin-film hematite grap...
New reduced graphene oxide-based silver nanoparticle-containing composite hydrogels were successfu...
Functional surfaces and interfaces play a dominant role in advancing physical and chemical propertie...
In this study, the application of the core-shell Fe3O4@SiO2 nano-catalysts for fenton-like degradati...