Iron oxide nanoparticles were incorporated to form composite microspheres of SiO2 and Fe2O3 for magnetic separation of the particles after adsorption or photochemical decomposition. Economic material, sodium silicate, was purified by ion exchange to prepare aqueous silicic acid solution, followed by mixing with iron oxide nanoparticles. Resulting aqueous dispersion was emulsified, and composite microspheres of SiO2 and Fe2O3 was formed from the emulsion droplets as micro-reactors during heating. Removal of methylene blue using the composite microspheres was performed by batch adsorption process. Synthesis of composite microspheres of silica containing Fe2O3 and TiO2 nanoparticles was also possible, the particles could be separated using mag...
Activated sericite was used as a solid matrix for control over the size of iron oxide nanoparticles ...
A novel type of porous magnetic microsphere (Fe3O4@HCP) was firstly synthesized just via one-step Fr...
In this paper, we report a novel synthesis and selective bioseparation of the composite of Fe3O4 mag...
Iron oxide nanoparticles were incorporated to form composite microspheres of SiO2 and Fe2O3 for magn...
Hypothesis A green approach for producing magnetic photocatalysts via direct agglomeration of commer...
The core shell materials containg titania can improve the properties of the core including chemical,...
The removal of organic pollutants has become an increasingly important environmental concern. In rec...
The severe water pollution from effluent dyes threatens human health. This study created pH-magnetic...
Magnetic silica nanospheres with immobilized metal ligands were prepared for the separation of prote...
In this work, the silica-coated magnetic field-sensitive iron nanoparticles (Si-gamma Fe2O3) were su...
In this work, magnetic nanoparticles based on magnetite were successfully prepared via rapid microwa...
In order to improve the dispersion of nano-TiO2 particles and enhance its self-cleaning properties, ...
Mesoporous materials with well-defined pore size and structure have applications in a wide range of ...
Magnetic composite microspheres consisting of a SiO2-coated Fe3O4 core, an ordered TiO2 hierarchical...
Superparamagnetic nanocomposite microparticles, compromised of magnetite nanoparticles in a silica m...
Activated sericite was used as a solid matrix for control over the size of iron oxide nanoparticles ...
A novel type of porous magnetic microsphere (Fe3O4@HCP) was firstly synthesized just via one-step Fr...
In this paper, we report a novel synthesis and selective bioseparation of the composite of Fe3O4 mag...
Iron oxide nanoparticles were incorporated to form composite microspheres of SiO2 and Fe2O3 for magn...
Hypothesis A green approach for producing magnetic photocatalysts via direct agglomeration of commer...
The core shell materials containg titania can improve the properties of the core including chemical,...
The removal of organic pollutants has become an increasingly important environmental concern. In rec...
The severe water pollution from effluent dyes threatens human health. This study created pH-magnetic...
Magnetic silica nanospheres with immobilized metal ligands were prepared for the separation of prote...
In this work, the silica-coated magnetic field-sensitive iron nanoparticles (Si-gamma Fe2O3) were su...
In this work, magnetic nanoparticles based on magnetite were successfully prepared via rapid microwa...
In order to improve the dispersion of nano-TiO2 particles and enhance its self-cleaning properties, ...
Mesoporous materials with well-defined pore size and structure have applications in a wide range of ...
Magnetic composite microspheres consisting of a SiO2-coated Fe3O4 core, an ordered TiO2 hierarchical...
Superparamagnetic nanocomposite microparticles, compromised of magnetite nanoparticles in a silica m...
Activated sericite was used as a solid matrix for control over the size of iron oxide nanoparticles ...
A novel type of porous magnetic microsphere (Fe3O4@HCP) was firstly synthesized just via one-step Fr...
In this paper, we report a novel synthesis and selective bioseparation of the composite of Fe3O4 mag...