Ferrous sulfate based low temperature synthesis and magnetic properties of nickel ferrite nanostructures
-
Add time:08/16/2019 Source:sciencedirect.com
We report a simple, low temperature and surfactant free co-precipitation method for the preparation of nickel ferrite nanostructures using ferrous sulfate as the iron precursor. The products obtained from this method were compared for their physical properties with nickel ferrites produced through conventional co-precipitation and hydrothermal methods which used ferric nitrate as the iron precursor. X-ray diffraction analysis confirmed the synthesis of single phase inverse spinel nanocrystalline nickel ferrites at temperature as low as 110 °C in the low temperature method. Electron microscopy analysis on the samples revealed the formation of nearly spherical nanostructures in the size range of 20–30 nm which are comparable to other conventional methods. Vibrating sample magnetometer measurements showed the formation of superparamagnetic particles with high magnetic saturation 41.3 emu/g which corresponds well with conventional synthesis methods. The spontaneous synthesis of the nickel ferrite nanoparticles by the low temperature synthesis method was attributed to the presence of 0.808 kJ mol−1 of excess Gibbs free energy due to ferrous sulfate precursor.
We also recommend Trading Suppliers and Manufacturers of FERRIC SULFATE NONAHYDRATE (cas 13520-56-4). Pls Click Website Link as below: cas 13520-56-4 suppliers
Prev:Sorption of uranium(VI) onto hydrous ferric oxide-modified zeolite: Assessment of the effect of pH, contact time, temperature, selected cations and anions on sorbent interactions
Next:Synthesis, structural characterization and DFT calculation on a square-planar Ni(II) complex of a compartmental Schiff base ligand) - 【Back】【Close 】【Print】【Add to favorite 】
- Related Information
- Sorption of uranium(VI) onto hydrous ferric oxide-modified zeolite: Assessment of the effect of pH, contact time, temperature, selected cations and anions on sorbent interactions08/15/2019
- The effect of sulfate contents on the surface properties of iron–manganese doped sulfated zirconia catalysts08/14/2019
- Removal As(V) by sulfated mesoporous Fe–Al bimetallic adsorbent: Adsorption performance and uptake mechanism08/13/2019
- Tough hydrogel based on covalent crosslinking and ionic coordination from ferric iron and negative carboxylic groups08/12/2019
- Fe(III):S(-II) concentration ratio controls the pathway and the kinetics of pyrite formation during sulfidation of ferric hydroxides08/11/2019
- Interaction of tannic acid with ferric iron to assist 2,4,6-trichlorophenol catalytic decomposition and reuse of ferric sludge as a source of iron catalyst in Fenton-based treatment08/10/2019
- Sonolytic degradation of pesticide metazachlor in water: The role of dissolved oxygen and ferric sludge in the process intensification08/09/2019
-
Health and Chemical more >


