Realization of structural transformation for the enhancement of magnetic and magneto capacitance effect in BiFeO3– CoFe2O4 ceramics for energy storage application
Author
dc.contributor.author
Muneeswaran, Muniyandi
Author
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Akbari Fakhrabadi, Ali
Author
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Gracia Pinilla, Miguel Ángel
Author
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Denardin, Juliano C.
Author
dc.contributor.author
Venkatesan Giridharan, Nambi
Admission date
dc.date.accessioned
2021-12-15T11:27:41Z
Available date
dc.date.available
2021-12-15T11:27:41Z
Publication date
dc.date.issued
2021
Cita de ítem
dc.identifier.citation
Scientific Reports (2021) 11:2265
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Identifier
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10.1038/s41598-021-81867-4
Identifier
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https://repositorio.uchile.cl/handle/2250/183231
Abstract
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In this study, (1 − x) BFO-xCFO (CFO, x = 0.00, 0.05, 0.10 and 0.30) ceramics were synthesized
by a solid-state reaction method; their compositions were driven by structural, microstructural,
vibrational, electrical, magnetic properties; their enhanced magneto capacitance (MC) effect have
also been carried out. Reitveld refinement studies of X-ray diffraction data shows compositiondriven
structural phase transformation from rhombohedral (R3c) to tetragonal (P4mm). Two
phonon scattering Raman modes were observed for the higher wavenumber which supports the
crystal structural transition in the BFO-CFO. Ferroelectric polarization shows that the polarization
increased with increasing CFO concentration, which describes the changes of the polar symmetry
of the crystal structure from rhombohedral (R3c) to tetragonal (P4mm). In Further, the maximum
efficiency of energy density (η = 68.65%), reversible energy density of 0.138 J/cm3 and the strong
magneto capacitance was observed in 0.9BFO-0.1CFO, which belongs to the morphotropic phase
boundary (MPB) region near to the BiFeO3-
rich region. The magnetic response analysis has shown, the
saturation magnetization (
Ms) values of 83 emu/gm and 139 emu/gm for pure CFO and 0.7BFO-0.3CFO
composite, respectively, and their magnetic behaviours were also confirmed with Arrott–Belov–
Kouvel (ABK) plot.
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Patrocinador
dc.description.sponsorship
Comision Nacional de Investigacion Cientifica y Tecnologica (CONICYT)
CONICYT FONDECYT 3180055
Aparece en contenido como:FONDECYT, Government of Chile
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Lenguage
dc.language.iso
en
es_ES
Publisher
dc.publisher
Nature
es_ES
Type of license
dc.rights
Attribution-NonCommercial-NoDerivs 3.0 United States
Realization of structural transformation for the enhancement of magnetic and magneto capacitance effect in BiFeO3– CoFe2O4 ceramics for energy storage application