Magnetite nanorods were successfully synthesized from ferric chloride (FeCl3) and diamine hydrate (H4N2·H2O) reagents via a simple, mild reduction–oxidization hydrothermal process in the presence of polyethylene glycol. The magnetite nanorods were characterized by X-ray diffraction, Mössbauer spectroscopy, and magnetization measurements. The nanorods exhibit a ferromagnetic behavior with a high saturation magnetization (90.5 emu/g), a little lower than that of the corresponding bulk material (92 emu/g). The mechanism for the improved magnetic properties of the magnetite nanorods is discussed based on the oriented growth of particles
By carefully controlling the reaction conditions, nanowires of Fe3O4 are directly acquired from nano...
This paper presents the development and optimization of the synthesis of magnetic nanoparticles comp...
Hydrophilic magnetite particles for biological applications were synthesized by hydrothermal method ...
Nanopowders of single-crystalline rod-like magnetite have been synthesized in a glycerol-water syste...
Magnetite with an aspect ratio of 10:1 was prepared by a seeding growth approach with a 0.35 T magne...
A solvothermal process was designed to synthesize magnetite (Fe<sub>3</sub>O<sub>4</sub>) nanorods u...
The ferromagnetic properties of magnetite (Fe3O4) were influenced by the nanoparticle size, hence im...
One-dimensional (1D) nanostructures have attracted extensive attention due to their novel magnetic p...
Chemically induced shape transformations of isotropic seeds, comprised of iron oxyhydroxides and iro...
Uniform alpha-Fe2O3 nanorods with high aspect ratios were synthesized in large scale by a simple and...
Single-crystals of MnFe2O4 nanorods with an average diameter of 20 nm and length of 250 nm were synt...
International audienceIron oxide nanoparticles have received remarkable attention in different appli...
Three simple capping molecules (urea, 3-aminopropanol, and polyethylene glycol) with different funct...
In this work, we present a simple and efficient method for pure phase magnetite (Fe3O4) nanoparticle...
We present an innovative approach to the production of single-crystal iron oxide nanorings employing...
By carefully controlling the reaction conditions, nanowires of Fe3O4 are directly acquired from nano...
This paper presents the development and optimization of the synthesis of magnetic nanoparticles comp...
Hydrophilic magnetite particles for biological applications were synthesized by hydrothermal method ...
Nanopowders of single-crystalline rod-like magnetite have been synthesized in a glycerol-water syste...
Magnetite with an aspect ratio of 10:1 was prepared by a seeding growth approach with a 0.35 T magne...
A solvothermal process was designed to synthesize magnetite (Fe<sub>3</sub>O<sub>4</sub>) nanorods u...
The ferromagnetic properties of magnetite (Fe3O4) were influenced by the nanoparticle size, hence im...
One-dimensional (1D) nanostructures have attracted extensive attention due to their novel magnetic p...
Chemically induced shape transformations of isotropic seeds, comprised of iron oxyhydroxides and iro...
Uniform alpha-Fe2O3 nanorods with high aspect ratios were synthesized in large scale by a simple and...
Single-crystals of MnFe2O4 nanorods with an average diameter of 20 nm and length of 250 nm were synt...
International audienceIron oxide nanoparticles have received remarkable attention in different appli...
Three simple capping molecules (urea, 3-aminopropanol, and polyethylene glycol) with different funct...
In this work, we present a simple and efficient method for pure phase magnetite (Fe3O4) nanoparticle...
We present an innovative approach to the production of single-crystal iron oxide nanorings employing...
By carefully controlling the reaction conditions, nanowires of Fe3O4 are directly acquired from nano...
This paper presents the development and optimization of the synthesis of magnetic nanoparticles comp...
Hydrophilic magnetite particles for biological applications were synthesized by hydrothermal method ...