4.5 Article

Enhancement of initial permeability and reduction of loss factor in Zn substituted nanocrystalline Li0.35-0.5xNi0.3ZnxFe2.35-0-5xO4

期刊

JOURNAL OF MAGNETISM AND MAGNETIC MATERIALS
卷 424, 期 -, 页码 108-114

出版社

ELSEVIER
DOI: 10.1016/j.jmmm.2016.10.030

关键词

Sol-gel auto combustion; Microstructure; Permeability; Sintering temperature; Neel temperature

资金

  1. CASR of Bangladesh University of Engineering & Technology, Dhaka, Bangladesh [265(13)/31-01-2016]

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Li-Ni-Zn ferrite nano-powders with nominal compositions of Li-0.35-0.5xNi0.3ZnxFe2.35-O-0.5x(4) (x= 0.00-0.40 in steps of 0.10) were synthesized by the chemical sol-gel auto combustion technique. Disk-and toroid-shaped samples prepared from each composition have been sintered at various temperatures (1373-1573 K) for 5 h. The internal structure was characterized by X-ray diffraction (XRD), which has confirmed the formation of single phase spinel structure. The crystallite size of the as grown powder varied from 23 to 37 nm as measured using Scherrer formula. The lattice constant and theoretical density are found to increase with increasing Zn content. The Zn substitution acts as an accelerator of grain growth and uniform grain distribution in these compositions. The real part of initial permeability, relative quality factor and saturation magnetization increase with increasing Zn content for a fixed sintering temperature. As sintering temperatures increases porosity decreases, and initial permeability increases for the sample sintered up to1523 K then decrease for further increasing temperature. The maximum value of mu(/)(i)(= 254) is observed for Li-0.Ni-15(0).Zn-3(0).Fe-4(2).O-15(4) sintered at 1523 K which is more than 6 times compared to that of parent composition. The loss factor for this composition is also reduced 6 times. As a result high relative quality factor is observed in these compositions. The weakening of exchange interaction may be confirmed by increasing the lattice parameter and decreasing Neel temperature (938-663 K) as the increase of Zn content. Substitution of Zn influences the magnetic properties due to modification of cation distribution.

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