Structural Microstructural and Electrical Transport Studies of Ba(Fe0.25Eu0.25Nb0.5)O3

The complex multifunctional ceramic Ba(Fe0.25Eu0.25Nb0.5)O3 (BFEN) has been synthesized. The structural studies show two iso-structured phases related with BFN and BEN co-exists in the compound. The high dielectric constant and low dielectric loss of the compound below 575 K promises industrial appl...

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Main Authors: Devang D. Shah, P.K. Mehta, C.J. Panchal
Format: Article
Language:English
Published: Sumy State University 2013-05-01
Series:Журнал нано- та електронної фізики
Subjects:
Online Access:http://jnep.sumdu.edu.ua/download/numbers/2013/2/articles/jnep_2013_V5_02022.pdf
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author Devang D. Shah
P.K. Mehta
C.J. Panchal
author_facet Devang D. Shah
P.K. Mehta
C.J. Panchal
author_sort Devang D. Shah
collection DOAJ
description The complex multifunctional ceramic Ba(Fe0.25Eu0.25Nb0.5)O3 (BFEN) has been synthesized. The structural studies show two iso-structured phases related with BFN and BEN co-exists in the compound. The high dielectric constant and low dielectric loss of the compound below 575 K promises industrial applications. The activation energies obtained from the Arrhenius analysis of dc conductivity supports possible ferroelectric transition at elevated temperatures. Thus the desirable properties of two different compounds viz. multiferroic properties of BFN and high quality factor of BEN are successfully incorporated in a single compound.
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publisher Sumy State University
record_format Article
series Журнал нано- та електронної фізики
spelling doaj-art-b4c47f7474114c57a2c536cc53dd87212025-08-20T02:02:40ZengSumy State UniversityЖурнал нано- та електронної фізики2077-67722013-05-0152020221Structural Microstructural and Electrical Transport Studies of Ba(Fe0.25Eu0.25Nb0.5)O3Devang D. ShahP.K. MehtaC.J. PanchalThe complex multifunctional ceramic Ba(Fe0.25Eu0.25Nb0.5)O3 (BFEN) has been synthesized. The structural studies show two iso-structured phases related with BFN and BEN co-exists in the compound. The high dielectric constant and low dielectric loss of the compound below 575 K promises industrial applications. The activation energies obtained from the Arrhenius analysis of dc conductivity supports possible ferroelectric transition at elevated temperatures. Thus the desirable properties of two different compounds viz. multiferroic properties of BFN and high quality factor of BEN are successfully incorporated in a single compound.http://jnep.sumdu.edu.ua/download/numbers/2013/2/articles/jnep_2013_V5_02022.pdfXRDNiobates and tantalatesMobility edgesHopping transpor
spellingShingle Devang D. Shah
P.K. Mehta
C.J. Panchal
Structural Microstructural and Electrical Transport Studies of Ba(Fe0.25Eu0.25Nb0.5)O3
Журнал нано- та електронної фізики
XRD
Niobates and tantalates
Mobility edges
Hopping transpor
title Structural Microstructural and Electrical Transport Studies of Ba(Fe0.25Eu0.25Nb0.5)O3
title_full Structural Microstructural and Electrical Transport Studies of Ba(Fe0.25Eu0.25Nb0.5)O3
title_fullStr Structural Microstructural and Electrical Transport Studies of Ba(Fe0.25Eu0.25Nb0.5)O3
title_full_unstemmed Structural Microstructural and Electrical Transport Studies of Ba(Fe0.25Eu0.25Nb0.5)O3
title_short Structural Microstructural and Electrical Transport Studies of Ba(Fe0.25Eu0.25Nb0.5)O3
title_sort structural microstructural and electrical transport studies of ba fe0 25eu0 25nb0 5 o3
topic XRD
Niobates and tantalates
Mobility edges
Hopping transpor
url http://jnep.sumdu.edu.ua/download/numbers/2013/2/articles/jnep_2013_V5_02022.pdf
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