The electrochemical behavior of magnetite (Fe3O4) aggregates with submicrometric size is investigated. Specifically, cyclic voltammetry tests were performed in both acidic (pH ∼ 4.5) and alkaline (pH ∼ 12.8) solutions, exploiting a conventional three-electrode cell. In the first case, the working electrode was made of a glassy carbon substrate loaded with magnetite nanoaggregates, forming a continuous film. In a second configuration, magnetite nanoaggregates were dispersed in solution, kept under stirring, as a fluidized electrode. The latter approach showed an increase in the electrochemical response of the particles, otherwise limited by the reduced active area as in the former case. Electrochemical-atomic force microscopy (EC-AFM) invest...
International audienceEither used as nano-carriers in blood, depolluting agents in groundwaters or i...
pre-printMagnetite nanoparticles (Fe3O4) represent the most promising materials in medical applicati...
Magnetite (Fe3O4) is of both scientific and technological interest because of its fascinating magnet...
The electrochemical behavior of magnetite (Fe3O4) aggregates with submicrometric size is investigate...
Nanoparticles of magnetites (Fe3O4) are synthesized with a new process based on electro-precipitatio...
When electroactive nanomaterials are fully incorporated into an electrode structure, characterizatio...
The electrochemical behavior of oleyl-coated Fe3O4 nanoparticles synthesized by chemical co-precipit...
The voltammetry of solution-dispersed magnetite iron oxide Fe<sub>3</sub>O<sub>4</sub> nanoparticles...
The monodisperse magnetite nanoparticles are promising for use in the biomedical industry for target...
The mixed and variable valence of iron in magnetite (Fe(III)tet[Fe(II),Fe(III)]octO42–) give this...
Magnetite (Fe3O4) nanoparticles, are promising inorganic nanomaterials for future biomedical applica...
The purpose of the work was to obtain nanodispersed magnetite (Fe3O4) with fewer impurities compar-i...
International audienceNanoparticle (NP) stability in aqueous environments is dependent upon many par...
This thesis describes the synthesis, structure, morphology, and magnetic property relations of elect...
We demonstrate that changes in electrolyte composition and applied potential during aqueous electrod...
International audienceEither used as nano-carriers in blood, depolluting agents in groundwaters or i...
pre-printMagnetite nanoparticles (Fe3O4) represent the most promising materials in medical applicati...
Magnetite (Fe3O4) is of both scientific and technological interest because of its fascinating magnet...
The electrochemical behavior of magnetite (Fe3O4) aggregates with submicrometric size is investigate...
Nanoparticles of magnetites (Fe3O4) are synthesized with a new process based on electro-precipitatio...
When electroactive nanomaterials are fully incorporated into an electrode structure, characterizatio...
The electrochemical behavior of oleyl-coated Fe3O4 nanoparticles synthesized by chemical co-precipit...
The voltammetry of solution-dispersed magnetite iron oxide Fe<sub>3</sub>O<sub>4</sub> nanoparticles...
The monodisperse magnetite nanoparticles are promising for use in the biomedical industry for target...
The mixed and variable valence of iron in magnetite (Fe(III)tet[Fe(II),Fe(III)]octO42–) give this...
Magnetite (Fe3O4) nanoparticles, are promising inorganic nanomaterials for future biomedical applica...
The purpose of the work was to obtain nanodispersed magnetite (Fe3O4) with fewer impurities compar-i...
International audienceNanoparticle (NP) stability in aqueous environments is dependent upon many par...
This thesis describes the synthesis, structure, morphology, and magnetic property relations of elect...
We demonstrate that changes in electrolyte composition and applied potential during aqueous electrod...
International audienceEither used as nano-carriers in blood, depolluting agents in groundwaters or i...
pre-printMagnetite nanoparticles (Fe3O4) represent the most promising materials in medical applicati...
Magnetite (Fe3O4) is of both scientific and technological interest because of its fascinating magnet...