Minimizing of power loss in Li–Cd ferrite by nickel substitution for power applications
The effect of Ni substitution on the microstructure, dielectric, impedance, magnetic and power loss properties has been investigated on a series of Li 0.35–0.5 x Cd 0.3Ni x Fe 2.35–0.5 x O 4 (0.00≤ x≤0.08) ferrite prepared by citrate precursor method. Dielectric and impedance measurements have been...
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Veröffentlicht in: | Journal of magnetism and magnetic materials 2010-11, Vol.322 (22), p.3714-3719 |
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Hauptverfasser: | , , , , |
Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | The effect of Ni substitution on the microstructure, dielectric, impedance, magnetic and power loss properties has been investigated on a series of Li
0.35–0.5
x
Cd
0.3Ni
x
Fe
2.35–0.5
x
O
4 (0.00≤
x≤0.08) ferrite prepared by citrate precursor method. Dielectric and impedance measurements have been determined in the frequency range 100
Hz–10
MHz. An enhancement in permittivity was observed with Ni concentration and exhibits the maximum value of ∼7×10
3 for
x=0.02 sample. The impedance spectroscopy technique has been used to study the effect of grain and grain boundary on the electrical properties of all the samples. Power loss measurements have been carried out in the frequency range 50
kHz–5
MHz at induction condition of
B=10
mT. Power loss has been found to be quite low, less than 100
kW/m
3 up to 500
kHz, with the substitution of Ni in Li
0.35–0.5
x
Cd
0.3Ni
x
Fe
2.35–0.5
x
O
4 ferrite, which is useful for technological aspects. |
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ISSN: | 0304-8853 |
DOI: | 10.1016/j.jmmm.2010.07.033 |