Ferroelectric and magnetic properties of Pb (Fe23 W13) O3 -based multiferroic compounds with cation order

BiFe O3 and PbTi O3 were introduced to a Sc-modified Pb (Fe23 W13) O3 compound with strong cation order to improve the multiferroic properties. It is found that the degree of cation order decreases as the amount of BiFe O3 or PbTi O3 increases. As a result, the saturation magnetization deteriorates....

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Main Authors: X. Tan, R. Wongmaneerung, R. W. McCallum
Format: Journal
Published: 2018
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spelling th-cmuir.6653943832-613832018-09-10T04:09:53Z Ferroelectric and magnetic properties of Pb (Fe23 W13) O3 -based multiferroic compounds with cation order X. Tan R. Wongmaneerung R. W. McCallum Physics and Astronomy BiFe O3 and PbTi O3 were introduced to a Sc-modified Pb (Fe23 W13) O3 compound with strong cation order to improve the multiferroic properties. It is found that the degree of cation order decreases as the amount of BiFe O3 or PbTi O3 increases. As a result, the saturation magnetization deteriorates. Solid solutions with BiFe O3 show an increase in both ferroelectric and magnetic transition temperatures. However, the ferroelectric remanent polarization is dramatically suppressed. In contrast, solid solution with PbTi O3 leads to an increase in the ferroelectric transition temperature, a decrease in the magnetic transition temperature, and a significant enhancement of remanent polarization. The composition 0.93 [0.79Pb (Fe23 W13) O3 -0.21Pb (Sc23 W13) O3] -0.07PbTi O3 shows the optimized properties of Tmax of 208 K, Pr of 3.6 μC cm2 between 120 and 210 K, TN of 209 K, and Ms of 0.23 μB f.u. (3.7 emug) at 10 K under 5 T. © 2007 American Institute of Physics. 2018-09-10T04:09:53Z 2018-09-10T04:09:53Z 2007-12-07 Journal 00218979 2-s2.0-36649008961 10.1063/1.2818367 https://www.scopus.com/inward/record.uri?partnerID=HzOxMe3b&scp=36649008961&origin=inward http://cmuir.cmu.ac.th/jspui/handle/6653943832/61383
institution Chiang Mai University
building Chiang Mai University Library
country Thailand
collection CMU Intellectual Repository
topic Physics and Astronomy
spellingShingle Physics and Astronomy
X. Tan
R. Wongmaneerung
R. W. McCallum
Ferroelectric and magnetic properties of Pb (Fe23 W13) O3 -based multiferroic compounds with cation order
description BiFe O3 and PbTi O3 were introduced to a Sc-modified Pb (Fe23 W13) O3 compound with strong cation order to improve the multiferroic properties. It is found that the degree of cation order decreases as the amount of BiFe O3 or PbTi O3 increases. As a result, the saturation magnetization deteriorates. Solid solutions with BiFe O3 show an increase in both ferroelectric and magnetic transition temperatures. However, the ferroelectric remanent polarization is dramatically suppressed. In contrast, solid solution with PbTi O3 leads to an increase in the ferroelectric transition temperature, a decrease in the magnetic transition temperature, and a significant enhancement of remanent polarization. The composition 0.93 [0.79Pb (Fe23 W13) O3 -0.21Pb (Sc23 W13) O3] -0.07PbTi O3 shows the optimized properties of Tmax of 208 K, Pr of 3.6 μC cm2 between 120 and 210 K, TN of 209 K, and Ms of 0.23 μB f.u. (3.7 emug) at 10 K under 5 T. © 2007 American Institute of Physics.
format Journal
author X. Tan
R. Wongmaneerung
R. W. McCallum
author_facet X. Tan
R. Wongmaneerung
R. W. McCallum
author_sort X. Tan
title Ferroelectric and magnetic properties of Pb (Fe23 W13) O3 -based multiferroic compounds with cation order
title_short Ferroelectric and magnetic properties of Pb (Fe23 W13) O3 -based multiferroic compounds with cation order
title_full Ferroelectric and magnetic properties of Pb (Fe23 W13) O3 -based multiferroic compounds with cation order
title_fullStr Ferroelectric and magnetic properties of Pb (Fe23 W13) O3 -based multiferroic compounds with cation order
title_full_unstemmed Ferroelectric and magnetic properties of Pb (Fe23 W13) O3 -based multiferroic compounds with cation order
title_sort ferroelectric and magnetic properties of pb (fe23 w13) o3 -based multiferroic compounds with cation order
publishDate 2018
url https://www.scopus.com/inward/record.uri?partnerID=HzOxMe3b&scp=36649008961&origin=inward
http://cmuir.cmu.ac.th/jspui/handle/6653943832/61383
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