AbstractIn this work, formation of iron oxide nanoparticles by mechanochemical reactions in different milling times was studied. During the mechanical milling, the solid-state displacement reaction of 3Na2CO3 + 2FeCl3.6H2O = 6NaCl + Fe2O3.6H2O + 3CO2 was induced to form iron oxide nanoparticles. A simple washing process was done to remove NaCl by-product and subsequently the particles dried at 105°C for 12h. Nanoparticles size and the mechanochemical effect were characterized by X-ray diffraction (XRD) and particle size analysis. Experimental results show that increasing the milling time can effectively reduce the nanoparticle size of Fe2O3. The average Fe2O3 nanoparticles size is about 14nm for 2h and 4nm for 5h milling process
Control over the bottom up synthesis of metal nanoparticles (NP) depends on many experimental factor...
SummarySynthesis of iron oxide nanoparticles was carried out through an environmental benign route u...
CONTROLLED GROWTH OF IRON OXIDE MAGNETIC NANOPARTICLES VIA COPRECIPITATION METHOD AND NaNO3 ADDITION...
AbstractIn this work, formation of iron oxide nanoparticles by mechanochemical reactions in differen...
In the present work, nanostructured Fe2O3 powders was prepared by mechanical milling in high energy ...
Iron–cobalt spinel oxide nanoparticles, CoxFe3−xO4 (x = 1, 2), of sizes below 10 nm have been prepar...
In recent days, the area of nanomaterial synthesis has been very attractive due to the distinguished...
603-611In recent days, the area of nanomaterial synthesis has been very attractive due to the distin...
The production of metal–ceramic nanodispersion by mechanical milling of powders through the displace...
The production of metal–ceramic nanodispersion by mechanical milling of powders through the displace...
In this study, the effect of mechanical activation on the synthesis of Fe3Al/Al2O3 nanocomposite has...
Iron oxide nanoparticles are useful particles in many fields such as medical, biomedical and environ...
We present the process of synthesis and characterization of magnetite-maghemite nanoparticles by the...
α-Fe2O3 nanoparticles have been successfully produced by the wet high-energy ball-milling method. Ph...
Control over the bottom up synthesis of metal nanoparticles (NP) depends on many experimental factor...
Control over the bottom up synthesis of metal nanoparticles (NP) depends on many experimental factor...
SummarySynthesis of iron oxide nanoparticles was carried out through an environmental benign route u...
CONTROLLED GROWTH OF IRON OXIDE MAGNETIC NANOPARTICLES VIA COPRECIPITATION METHOD AND NaNO3 ADDITION...
AbstractIn this work, formation of iron oxide nanoparticles by mechanochemical reactions in differen...
In the present work, nanostructured Fe2O3 powders was prepared by mechanical milling in high energy ...
Iron–cobalt spinel oxide nanoparticles, CoxFe3−xO4 (x = 1, 2), of sizes below 10 nm have been prepar...
In recent days, the area of nanomaterial synthesis has been very attractive due to the distinguished...
603-611In recent days, the area of nanomaterial synthesis has been very attractive due to the distin...
The production of metal–ceramic nanodispersion by mechanical milling of powders through the displace...
The production of metal–ceramic nanodispersion by mechanical milling of powders through the displace...
In this study, the effect of mechanical activation on the synthesis of Fe3Al/Al2O3 nanocomposite has...
Iron oxide nanoparticles are useful particles in many fields such as medical, biomedical and environ...
We present the process of synthesis and characterization of magnetite-maghemite nanoparticles by the...
α-Fe2O3 nanoparticles have been successfully produced by the wet high-energy ball-milling method. Ph...
Control over the bottom up synthesis of metal nanoparticles (NP) depends on many experimental factor...
Control over the bottom up synthesis of metal nanoparticles (NP) depends on many experimental factor...
SummarySynthesis of iron oxide nanoparticles was carried out through an environmental benign route u...
CONTROLLED GROWTH OF IRON OXIDE MAGNETIC NANOPARTICLES VIA COPRECIPITATION METHOD AND NaNO3 ADDITION...