Multiferroic and magnetoelectric studies on BMFO–NZFO nanocomposites

dc.contributor.author Dhanalakshmi, B.
dc.contributor.author Kollu, Pratap
dc.contributor.author Barnes, Crispin H.W.
dc.contributor.author Parvatheeswara Rao, B.
dc.contributor.author Rao, P. S.V.Subba
dc.date.accessioned 2022-03-27T06:44:48Z
dc.date.available 2022-03-27T06:44:48Z
dc.date.issued 2018-05-01
dc.description.abstract Bismuth ferrite-based multiferroic composites, x⋅Bi0.95Mn0.05FeO3 − (1 − x)⋅Ni0.5Zn0.5Fe2O4, where x takes the values of 0.2, 0.4, 0.5, 0.6 and 0.8, have been prepared by combining sol–gel autocombustion and solid-state methods. Phase identification of the samples was done by X-ray diffraction analysis. SEM–EDX measurements on the samples were used to evaluate the microstructural aspects and quantitative evaluation of the samples. Room temperature P–E loop measurements on the samples were done under the application of external electric fields in the range from 0 to 6 kV/mm at a frequency of 50 Hz to understand the ferroelectric strength of the compounds. Magnetic studies on the samples were made by M–H loop measurements in the field range of ± 10 kOe. Magnetoelectric coupling measurements were made using a dynamic lock-in test set-up. The results indicate that the mixing of nickel–zinc ferrite in Bi0.95Mn0.05FeO3, in spite of the enhanced conductivity, has produced considerable improvements in saturation magnetization while retaining the remnant ferroelectric polarization in reasonable magnitudes to obtain improved M–E coupling. Among all the composites, the composite with x = 0.5 has resulted better M–E performance.
dc.identifier.citation Applied Physics A: Materials Science and Processing. v.124(5)
dc.identifier.issn 09478396
dc.identifier.uri 10.1007/s00339-018-1820-1
dc.identifier.uri http://link.springer.com/10.1007/s00339-018-1820-1
dc.identifier.uri https://dspace.uohyd.ac.in/handle/1/10031
dc.title Multiferroic and magnetoelectric studies on BMFO–NZFO nanocomposites
dc.type Journal. Article
dspace.entity.type
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