International audienceNanostructured Fe3O4 particles were obtained through hydrogen thermal reduction of alpha-Fe2O3 particles synthesized via an ionic liquid assisted hydrothermal process. The morphology and microstructure of the nano-sized Fe3O4 particles were characterized by using X-ray diffraction, N-2 physisorption, transmission electron microscopy, and temperature-programmed reduction. As-prepared magnetite samples show microcube, nanosphere, and porous nanorod morphologies. Activity of the nanostructures was evaluated for the Fenton reaction, using phenol as model molecule. While commercial Fe3O4 presents very limited activity, rod-type nanostructure exhibited exceptional activity toward phenol removal under mild conditions; 98% phe...
Abstract Morphologically controlled synthesis of ferric oxide nano/micro particles has been carried ...
Clay minerals, as abundant natural resources, are among the most suitable supporting materials for n...
A magnetite-loaded mesocellular carbonaceous material, Fe3O4/MSU-F-C, exhibited superior activity as...
Water pollution has become serious environmental problem nowadays. Advanced oxidation processes (AOP...
The oxidation-precipitation method was used for the synthesis of Fe3O4/AC. The characterization of t...
Fe3O4 nanocrystals with five different morphologies (i.e., nanospheres, nanorods, nanocubes, nano-oc...
Iron oxide nanoparticles, with size ranging from 50 to 100 nm, were synthesized by a solvothermal me...
In this study, magnetite nanoparticles (Fe3O4 NPs) were synthesized using Baccaurea ramiflora leaf e...
Polymorphous transformation of rod-shaped gamma-Fe2O3 was applied to fabricate Fe3O4/Fe2O3 nanorods....
Fe3O4–poly(3,4-ethylene-dioxythiophene) (PEDOT) core-shell nanoparticles as heterogeneous Fenton ca...
In this work, reactive iron nanoparticles dispersed in a carbon matrix were produced by the controll...
The synthesis of effective and recyclable Fenton-like catalyst is still a key factor for advanced ox...
Copyright © 2013 Zhihui Xu et al. This is an open access article distributed under the Creative Comm...
Clay minerals, as abundant natural resources, are among the most suitable supporting materials for n...
Clay minerals, as abundant natural resources, are among the most suitable supporting materials for n...
Abstract Morphologically controlled synthesis of ferric oxide nano/micro particles has been carried ...
Clay minerals, as abundant natural resources, are among the most suitable supporting materials for n...
A magnetite-loaded mesocellular carbonaceous material, Fe3O4/MSU-F-C, exhibited superior activity as...
Water pollution has become serious environmental problem nowadays. Advanced oxidation processes (AOP...
The oxidation-precipitation method was used for the synthesis of Fe3O4/AC. The characterization of t...
Fe3O4 nanocrystals with five different morphologies (i.e., nanospheres, nanorods, nanocubes, nano-oc...
Iron oxide nanoparticles, with size ranging from 50 to 100 nm, were synthesized by a solvothermal me...
In this study, magnetite nanoparticles (Fe3O4 NPs) were synthesized using Baccaurea ramiflora leaf e...
Polymorphous transformation of rod-shaped gamma-Fe2O3 was applied to fabricate Fe3O4/Fe2O3 nanorods....
Fe3O4–poly(3,4-ethylene-dioxythiophene) (PEDOT) core-shell nanoparticles as heterogeneous Fenton ca...
In this work, reactive iron nanoparticles dispersed in a carbon matrix were produced by the controll...
The synthesis of effective and recyclable Fenton-like catalyst is still a key factor for advanced ox...
Copyright © 2013 Zhihui Xu et al. This is an open access article distributed under the Creative Comm...
Clay minerals, as abundant natural resources, are among the most suitable supporting materials for n...
Clay minerals, as abundant natural resources, are among the most suitable supporting materials for n...
Abstract Morphologically controlled synthesis of ferric oxide nano/micro particles has been carried ...
Clay minerals, as abundant natural resources, are among the most suitable supporting materials for n...
A magnetite-loaded mesocellular carbonaceous material, Fe3O4/MSU-F-C, exhibited superior activity as...