International Journal For Multidisciplinary Research

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A Widely Indexed Open Access Peer Reviewed Multidisciplinary Bi-monthly Scholarly International Journal

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Synthesis of Nickel Ferrite and Cobalt doped Nickel Ferrites of NixCo1−xFe2O4(x =0,0.2,0.4,0.6,0.8, 1.0) of single-phase well-crystallized Nano sized particles by hydrothermal method

Author(s) Dr. Laveena Manjulatha Latha
Country India
Abstract The synthesis and characterization of Ni ferrite Co doped - nanomaterials. NixCo1−xFe2O4(x =0,0.2,0.4,0.6,0.8, 1.0) Research can explore different synthetic routes such as sol-gel, co-precipitation, hydrothermal, and microwave-assisted methods to achieve nano sized Co-Ni ferrite Co- doped particles with controlled properties. advanced characterization techniques such as X-ray diffraction (XRD), transmission electron microscopy (TEM), and magnetic measurements can provide insights into the crystal structure, morphology, and magnetic properties of Ni ferrite Co- doped nanomaterials. Tuning magnetic properties: Co-Ni ferrite Co doped - nanomaterials exhibit superior magnetic properties such as high saturation magnetization, coercivity, and magnetic anisotropy, which can be tuned by controlling the dopant concentration, particle size, and synthesis conditions. Research explore the effect of these parameters on the magnetic properties of Ni ferrite Co- doped nanomaterials and optimize them for specific applications. Application-specific studies Ni ferrite Co- doped nanomaterials have shown great potential in various applications such as magnetic data storage, microwave devices, sensors, and catalysis. Future work can focus on the application-specific studies of Ni ferrite Co doped - nanomaterials to underst and their performance in real-life scenarios.
Keywords Ni ferrite Co doped – nanomaterials, sol-gel, co-precipitation, hydrothermal, X-ray diffraction (XRD), transmission electron microscopy (TEM),
Field Physics > Nano Technology / Nuclear
Published In Volume 2, Issue 6, November-December 2020
Published On 2020-11-20

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