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Colloids and Surfaces A: Physicochemical and Engineering Aspects(1)
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scopus(3)
Engineering iron oxide nanocatalysts by a microwave-assisted polyol method for the magnetically induced degradation of organic pollutants
ArticleAbstract: Advanced oxidation processes constitute a promising alternative for the treatment of wastewater contPalabras claves:Acid orange 8, Adsorption, Advanced oxidation process, Iron oxide nanoparticles, Magnetic induction heating, Methylene blue, microwave synthesis, organic dyes, wastewaterAutores:Alvaro Gallo-Cordova, Mazarío E., Ovejero J.G., Puerto Morales M., Tartaj P., Veintemillas-Verdaguer S.Fuentes:scopusMaximizing the adsorption capacity of iron oxide nanocatalysts for the degradation of organic dyes
ArticleAbstract: Advanced oxidation processes can counteract the hazardous effects of polluted effluents in a highlyPalabras claves:Adsorption, Advanced Oxidation Processes, Fenton reaction, Iron oxide nanoparticles, Magnetic induction heating, Magnetic nanocatalyst, organic dyesAutores:Alvaro Gallo-Cordova, Díaz-Ufano C., Puerto Morales M., Sáez R., Santiandreu L., Torralvo Fernández M.J., Veintemillas-Verdaguer S.Fuentes:scopusUnravelling an amine-regulated crystallization crossover to prove single/multicore effects on the biomedical and environmental catalytic activity of magnetic iron oxide colloids
ArticleAbstract: Elucidation of reaction mechanisms in forming nanostructures is relevant to obtain robust and affordPalabras claves:Classical crystallization, Colloidal nanocrystals, Enzyme Immobilization, FENTON, hyperthermia, Mesocrystals, Non-classical crystallization, Oriented attachment, photo-FentonAutores:Alvaro Gallo-Cordova, Cuya J., Jeyadevan B., Ovejero J.G., Pablo-Sainz-Ezquerra A.M., Puerto Morales M., Tartaj P., Veintemillas-Verdaguer S.Fuentes:scopus