Effect of co-substitution of Zn2+/Zr4+ on Surface Morphology, Structure and Magnetic Properties of BaZnxZrxFe12-2xO19

The effect of co-doping of Zn2+/Zr4+ ions on surface morphology, structure and magnetic properties of BaZnxZrxFe12-2xO19 (x=0.00, 0.20,0.40,0.60,0.80, 1.00) synthesized using Pechini method has been investigated. XRD data reveals that the samples are phase pure and have no intermittent phase. The c/...

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Veröffentlicht in:Journal of physics. Conference series 2020-05, Vol.1531 (1)
Hauptverfasser: Godara, Sachin Kumar, Kaur, Supinder, Kaur, Varinder, Sood, Ashwani Kumar, singh, Mandeep, Pushkarna, Ishita, Bhadu, Gopala Ram, Chaudhari, Jayesh C.
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container_title Journal of physics. Conference series
container_volume 1531
creator Godara, Sachin Kumar
Kaur, Supinder
Kaur, Varinder
Sood, Ashwani Kumar
singh, Mandeep
Pushkarna, Ishita
Bhadu, Gopala Ram
Chaudhari, Jayesh C.
description The effect of co-doping of Zn2+/Zr4+ ions on surface morphology, structure and magnetic properties of BaZnxZrxFe12-2xO19 (x=0.00, 0.20,0.40,0.60,0.80, 1.00) synthesized using Pechini method has been investigated. XRD data reveals that the samples are phase pure and have no intermittent phase. The c/a parameter is
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XRD data reveals that the samples are phase pure and have no intermittent phase. The c/a parameter is &lt;3.98 for all samples implying that they are M-type hexaferrites. The grain size increases with an increase in the composition of Zn2+/Zr4+ dopant seen using FE-SEM micrographs. The local crystal structure distortion with increasing Zn2+/Zr4+ dopant composition is confirm by Raman measurements. M vs H plots reveal that all the samples shows magnetic ordering. The highest Ms value has been noticed to be 68.43 emu/g in x=0.20 sample. The Hc value varies from 5350 Oe to 763 Oe with increase in dopant concentration. 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subjects Composition
Crystal structure
Dopants
Grain size
M-type hexaferrites
Magnetic properties
Magnetic recording
Morphology
Pechini method
Photomicrographs
X-ray diffraction
title Effect of co-substitution of Zn2+/Zr4+ on Surface Morphology, Structure and Magnetic Properties of BaZnxZrxFe12-2xO19
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