The multifunctional properties of spinel ferrites can be effectively tailored through Ni substitution, particularly in systems where cation redistribution and electron hopping mechanisms govern the structural, optical, electrical, and magnetic responses. In this work, Cu₀.₇Mg₀.₃₋ₓNiₓFe₁.₇Cr₀.₃O₄ CMFC ferrites (0.05 ≤ x...
A. Moustafa, A. A. Ward, A. Mabied et al.· Scientific Reports· 0 citations
Cation substitution provides an effective route for tailoring the magnetic and rheological properties of spinel ferrite ferrofluids. In this work, Zn₀.₄Fe₂.₆O₄ (ZFO), Mn₀.₄Fe₂.₆O₄ (MFO), and Co₀.₄Fe₂.₆O₄ (CFO) nanoparticles were synthesized under identical conditions and dispersed in kerosene to investigate the influen...
Arjun Singh· Natural Resources for Human...· 0 citations
Spinel ferrites are valued for their tunable electrical and magnetic properties. Rare-earth substitution, such as with La3+, is known to modify their cation distribution and magnetic interaction. In this study, LaxNi1-xFe2O4 nanoparticles (x = 0.0, 0.5, 0.7, and 0.9) were synthesized via the sol-gel method. Their prope...
Awattif A. Mohammed, F. Noori· Baghdad Science Journal· 0 citations
Bi0.8Ba0.2FeO3 nanoparticles were synthesized using the sol–gel method. X-ray diffraction (XRD) analysis confirmed that the material crystallizes in a tetragonal structure with the P4/mmm space group. This structural transformation plays an important role in the microstructural distortion and phase modification of the...
E. M. Benali, M. Graça, E. Dhahri et al.· Materials· 0 citations
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