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Unravelling the nature of magneto-electric coupling in room temperature multiferroic particulate (PbFe(0.5)Nb(0.5)O(3))–(Co(0.6)Zn(0.4)Fe(1.7)Mn(0.3)O(4)) composites

Multiferroic composites are promising candidates for magnetic field sensors, next-generation low power memory and spintronic devices, as they exhibit much higher magnetoelectric (ME) coupling and coupled ordering parameters compared to the single-phase multiferroics. Hence, the 3-0 type particulate...

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Autores principales: Bhoi, Krishnamayee, Mohanty, H. S., Ravikant, Abdullah, Md. F., Pradhan, Dhiren K., Babu, S. Narendra, Singh, A. K., Vishwakarma, P. N., Kumar, A., Thomas, R., Pradhan, Dillip K.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group UK 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7862596/
https://www.ncbi.nlm.nih.gov/pubmed/33542285
http://dx.doi.org/10.1038/s41598-021-82399-7
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author Bhoi, Krishnamayee
Mohanty, H. S.
Ravikant
Abdullah, Md. F.
Pradhan, Dhiren K.
Babu, S. Narendra
Singh, A. K.
Vishwakarma, P. N.
Kumar, A.
Thomas, R.
Pradhan, Dillip K.
author_facet Bhoi, Krishnamayee
Mohanty, H. S.
Ravikant
Abdullah, Md. F.
Pradhan, Dhiren K.
Babu, S. Narendra
Singh, A. K.
Vishwakarma, P. N.
Kumar, A.
Thomas, R.
Pradhan, Dillip K.
author_sort Bhoi, Krishnamayee
collection PubMed
description Multiferroic composites are promising candidates for magnetic field sensors, next-generation low power memory and spintronic devices, as they exhibit much higher magnetoelectric (ME) coupling and coupled ordering parameters compared to the single-phase multiferroics. Hence, the 3-0 type particulate multiferroic composites having general formula (1 − Φ)[PbFe(0.5)Nb(0.5)O(3)]-Φ[Co(0.6)Zn(0.4)Fe(1.7)Mn(0.3)O(4)] (Φ = 0.0, 0.05, 0.1, 0.2, 0.3, 0.4, 0.5, 1.0, (1 − Φ) PFN-ΦCZFMO) were prepared using a hybrid synthesis technique. Preliminary structural and microstructural analysis were carried out using XRD and FESEM techniques, which suggest the formation of 3-0 type particulate composite without the presence of any impurity phases. The multiferroic behaviour of the composites is studied with polarization versus electric field (P-E) and magnetization versus magnetic field (M-H) characteristics at room temperature. The nature of ME coupling was investigated elaborately by employing the Landau free energy equation along with the magneto-capacitance measurement. This investigation suggests the existence of biquadratic nature of ME coupling (P(2)M(2)). The magneto-electric coupling measurement also suggests that strain mediated domain coupling between the ferroelectric and magnetic ordering is responsible for the magneto-electric behaviour. The obtained value of direct ME coefficient 26.78 mV/cm-Oe for Φ = 0.3, found to be higher than the well-known single-phase materials and polycrystalline composites.
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spelling pubmed-78625962021-02-08 Unravelling the nature of magneto-electric coupling in room temperature multiferroic particulate (PbFe(0.5)Nb(0.5)O(3))–(Co(0.6)Zn(0.4)Fe(1.7)Mn(0.3)O(4)) composites Bhoi, Krishnamayee Mohanty, H. S. Ravikant Abdullah, Md. F. Pradhan, Dhiren K. Babu, S. Narendra Singh, A. K. Vishwakarma, P. N. Kumar, A. Thomas, R. Pradhan, Dillip K. Sci Rep Article Multiferroic composites are promising candidates for magnetic field sensors, next-generation low power memory and spintronic devices, as they exhibit much higher magnetoelectric (ME) coupling and coupled ordering parameters compared to the single-phase multiferroics. Hence, the 3-0 type particulate multiferroic composites having general formula (1 − Φ)[PbFe(0.5)Nb(0.5)O(3)]-Φ[Co(0.6)Zn(0.4)Fe(1.7)Mn(0.3)O(4)] (Φ = 0.0, 0.05, 0.1, 0.2, 0.3, 0.4, 0.5, 1.0, (1 − Φ) PFN-ΦCZFMO) were prepared using a hybrid synthesis technique. Preliminary structural and microstructural analysis were carried out using XRD and FESEM techniques, which suggest the formation of 3-0 type particulate composite without the presence of any impurity phases. The multiferroic behaviour of the composites is studied with polarization versus electric field (P-E) and magnetization versus magnetic field (M-H) characteristics at room temperature. The nature of ME coupling was investigated elaborately by employing the Landau free energy equation along with the magneto-capacitance measurement. This investigation suggests the existence of biquadratic nature of ME coupling (P(2)M(2)). The magneto-electric coupling measurement also suggests that strain mediated domain coupling between the ferroelectric and magnetic ordering is responsible for the magneto-electric behaviour. The obtained value of direct ME coefficient 26.78 mV/cm-Oe for Φ = 0.3, found to be higher than the well-known single-phase materials and polycrystalline composites. Nature Publishing Group UK 2021-02-04 /pmc/articles/PMC7862596/ /pubmed/33542285 http://dx.doi.org/10.1038/s41598-021-82399-7 Text en © The Author(s) 2021 Open Access This article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons licence, and indicate if changes were made. The images or other third party material in this article are included in the article's Creative Commons licence, unless indicated otherwise in a credit line to the material. If material is not included in the article's Creative Commons licence and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this licence, visit http://creativecommons.org/licenses/by/4.0/.
spellingShingle Article
Bhoi, Krishnamayee
Mohanty, H. S.
Ravikant
Abdullah, Md. F.
Pradhan, Dhiren K.
Babu, S. Narendra
Singh, A. K.
Vishwakarma, P. N.
Kumar, A.
Thomas, R.
Pradhan, Dillip K.
Unravelling the nature of magneto-electric coupling in room temperature multiferroic particulate (PbFe(0.5)Nb(0.5)O(3))–(Co(0.6)Zn(0.4)Fe(1.7)Mn(0.3)O(4)) composites
title Unravelling the nature of magneto-electric coupling in room temperature multiferroic particulate (PbFe(0.5)Nb(0.5)O(3))–(Co(0.6)Zn(0.4)Fe(1.7)Mn(0.3)O(4)) composites
title_full Unravelling the nature of magneto-electric coupling in room temperature multiferroic particulate (PbFe(0.5)Nb(0.5)O(3))–(Co(0.6)Zn(0.4)Fe(1.7)Mn(0.3)O(4)) composites
title_fullStr Unravelling the nature of magneto-electric coupling in room temperature multiferroic particulate (PbFe(0.5)Nb(0.5)O(3))–(Co(0.6)Zn(0.4)Fe(1.7)Mn(0.3)O(4)) composites
title_full_unstemmed Unravelling the nature of magneto-electric coupling in room temperature multiferroic particulate (PbFe(0.5)Nb(0.5)O(3))–(Co(0.6)Zn(0.4)Fe(1.7)Mn(0.3)O(4)) composites
title_short Unravelling the nature of magneto-electric coupling in room temperature multiferroic particulate (PbFe(0.5)Nb(0.5)O(3))–(Co(0.6)Zn(0.4)Fe(1.7)Mn(0.3)O(4)) composites
title_sort unravelling the nature of magneto-electric coupling in room temperature multiferroic particulate (pbfe(0.5)nb(0.5)o(3))–(co(0.6)zn(0.4)fe(1.7)mn(0.3)o(4)) composites
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7862596/
https://www.ncbi.nlm.nih.gov/pubmed/33542285
http://dx.doi.org/10.1038/s41598-021-82399-7
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