A simple and cost-effective chemical co-precipitation of aqueous ferrous and ferric salts was used to synthesis controlled size of magnetite iron oxide nanoparticles. The titration reactions between the aqueous Fe2+/Fe3+ salt solutions were controlled by an autotitrator unit with continuous addition of 1 M sodium hydroxide under different heating temperatures from 30 up to 80 degrees C in oxidising atmosphere. Then, further investigation on the degree of crystallinity of magnetite iron oxide nanoparticles was conducted by altering the concentration of Fe2+/Fe3+ ions in the ratio of 1:1, 1:1.25, 1:1.5 and 1:2. The resultant magnetite iron oxide nanoparticles were characterised by using X-ray diffraction, field emission scanning electron micr...
\u3cp\u3e In-situ precipitation method is widely used and reported in th...
Iron oxide phase orientation were highly influenced by solution pH, crystalline structure, purity, s...
The current studies deals with the science on atomic scale i.e. nanotechnology which is a multidisci...
Magnetite nanoparticles were precipitated from a pure aqueous ferrous salt solution in an air atmosp...
The nano-scale magnetite iron oxide particles have been synthesised by a facile precipitation method...
We report the effect of initial pH and temperature of iron salt solutions on formation of magnetite ...
AbstractAn innovative quantitative synthetic method for preparing magnetite nanoparticles was achiev...
87-90Nano-sized crystallites of iron oxide were synthesized by cost effective co-precipitation meth...
In-situ precipitation method is widely used and reported in the literature for the synthesis of iron...
Magnetite (Fe3O4) nanoparticles have been synthesized using the chemical coprecipitation method. The...
Nanoparticles of Fe3O4 were synthesized by co-precipitation in an aqueous solution containing ferr...
Magnetic nanoparticles (MNPs) of iron oxide (Fe3O4) represent the most promising materials in many a...
In the present investigation, influence of the synthesis conditions on the morphology, phase purity ...
The ferromagnetic properties of magnetite (Fe3O4) were influenced by the nanoparticle size, hence im...
Nanoparticles of Fe3O4 were synthesized by co-precipitation in an aqueous solution containing ferr...
\u3cp\u3e In-situ precipitation method is widely used and reported in th...
Iron oxide phase orientation were highly influenced by solution pH, crystalline structure, purity, s...
The current studies deals with the science on atomic scale i.e. nanotechnology which is a multidisci...
Magnetite nanoparticles were precipitated from a pure aqueous ferrous salt solution in an air atmosp...
The nano-scale magnetite iron oxide particles have been synthesised by a facile precipitation method...
We report the effect of initial pH and temperature of iron salt solutions on formation of magnetite ...
AbstractAn innovative quantitative synthetic method for preparing magnetite nanoparticles was achiev...
87-90Nano-sized crystallites of iron oxide were synthesized by cost effective co-precipitation meth...
In-situ precipitation method is widely used and reported in the literature for the synthesis of iron...
Magnetite (Fe3O4) nanoparticles have been synthesized using the chemical coprecipitation method. The...
Nanoparticles of Fe3O4 were synthesized by co-precipitation in an aqueous solution containing ferr...
Magnetic nanoparticles (MNPs) of iron oxide (Fe3O4) represent the most promising materials in many a...
In the present investigation, influence of the synthesis conditions on the morphology, phase purity ...
The ferromagnetic properties of magnetite (Fe3O4) were influenced by the nanoparticle size, hence im...
Nanoparticles of Fe3O4 were synthesized by co-precipitation in an aqueous solution containing ferr...
\u3cp\u3e In-situ precipitation method is widely used and reported in th...
Iron oxide phase orientation were highly influenced by solution pH, crystalline structure, purity, s...
The current studies deals with the science on atomic scale i.e. nanotechnology which is a multidisci...