Please use this identifier to cite or link to this item: http://10.1.7.192:80/jspui/handle/123456789/10980
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dc.contributor.authorChauhan, Chetna C.-
dc.contributor.authorGupta, Tanuj M.-
dc.contributor.authorNandotaria, Reshma A.-
dc.contributor.authorGor, Abhishek A.-
dc.contributor.authorSandhu, Charanjeet Singh-
dc.contributor.authorJotania, Kanti R.-
dc.contributor.authorJotania, Rajshree B.-
dc.date.accessioned2022-03-14T10:08:56Z-
dc.date.available2022-03-14T10:08:56Z-
dc.date.issued2021-
dc.identifier.urihttp://10.1.7.192:80/jspui/handle/123456789/10980-
dc.description.abstractM-type, Ba0.4Pb0.6Fe12-xCoxO19 (x = 0.00, 0.10, 0.20, 0.30, 0.40) hexaferrites, synthesized using citrate gel auto combustion method, and heated at 950 °C, 4 h for lossless applications. XRD analysis shows the development of the M-phase, along with PbM and hematite. The microstructural analysis reveals the stacking clusters of hexagonally shaped platelets. TEM image and SAED pattern of x = 0.3 composition shows polycrystalline nature and formed particles observed to fused with neighbouring particles. M − H loops of all samples reveal hard magnetic behaviour and possess multi-domain structure. The maximum saturation magnetization of 55.427 A m2/kg is observed in x = 0.10 composition and coercivity of prepared hexaferrites was found to vary from 0.058 T to 0.390 T. The cobalt substitution has a strong influence on the dielectric properties of prepared hexaferrites. The value of ac conductivity increases with cobalt substitution from x = 0.00 to x = 0.10, and followed by a reduction from x = 0.10 to x = 0.40. The same trend is observed for the dielectric constant. The low value of loss tangent for all compositions shows apt scope for lossless application.en_US
dc.publisherScience Directen_US
dc.titleStructural, morphological, magnetic hysteresis and dielectric properties of cobalt substituted barium–lead hexagonal ferrites for technological applicationsen_US
dc.typeFaculty Papersen_US
Appears in Collections:Faculty Papers, EC

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