Cargando…

Multiferroic Core-Shell Nanofibers, Assembly in a Magnetic Field, and Studies on Magneto-Electric Interactions

Ferromagnetic–ferroelectric nanocomposites are of interest for realizing strong strain-mediated coupling between electric and magnetic subsystems due to a high surface area-to-volume ratio. This report is on the synthesis of nickel ferrite (NFO)–barium titanate (BTO) core–shell nanofibers, magnetic...

Descripción completa

Detalles Bibliográficos
Autores principales: Sreenivasulu, Gollapudi, Zhang, Jitao, Zhang, Ru, Popov, Maksym, Petrov, Vladimir, Srinivasan, Gopalan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5793516/
https://www.ncbi.nlm.nih.gov/pubmed/29295512
http://dx.doi.org/10.3390/ma11010018
_version_ 1783296970103717888
author Sreenivasulu, Gollapudi
Zhang, Jitao
Zhang, Ru
Popov, Maksym
Petrov, Vladimir
Srinivasan, Gopalan
author_facet Sreenivasulu, Gollapudi
Zhang, Jitao
Zhang, Ru
Popov, Maksym
Petrov, Vladimir
Srinivasan, Gopalan
author_sort Sreenivasulu, Gollapudi
collection PubMed
description Ferromagnetic–ferroelectric nanocomposites are of interest for realizing strong strain-mediated coupling between electric and magnetic subsystems due to a high surface area-to-volume ratio. This report is on the synthesis of nickel ferrite (NFO)–barium titanate (BTO) core–shell nanofibers, magnetic field assisted assembly into superstructures, and studies on magneto-electric (ME) interactions. Electrospinning techniques were used to prepare coaxial fibers of 0.5–1.5 micron in diameter. The core–shell structure of annealed fibers was confirmed by electron microscopy and scanning probe microscopy. The fibers were assembled into discs and films in a uniform magnetic field or in a field gradient. Studies on ME coupling in the assembled films and discs were done by magnetic field (H)-induced polarization, magneto–dielectric effects at low frequencies and at 16–24 GHz, and low-frequency ME voltage coefficients (MEVC). We measured ~2–7% change in remnant polarization and in the permittivity for H = 7 kOe, and a MEVC of 0.4 mV/cm Oe at 30 Hz. A model has been developed for low-frequency ME effects in an assembly of fibers and takes into account dipole–dipole interactions between the fibers and fiber discontinuity. Theoretical estimates for the low-frequency MEVC have been compared with the data. These results indicate strong ME coupling in superstructures of the core–shell fibers.
format Online
Article
Text
id pubmed-5793516
institution National Center for Biotechnology Information
language English
publishDate 2017
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-57935162018-02-07 Multiferroic Core-Shell Nanofibers, Assembly in a Magnetic Field, and Studies on Magneto-Electric Interactions Sreenivasulu, Gollapudi Zhang, Jitao Zhang, Ru Popov, Maksym Petrov, Vladimir Srinivasan, Gopalan Materials (Basel) Article Ferromagnetic–ferroelectric nanocomposites are of interest for realizing strong strain-mediated coupling between electric and magnetic subsystems due to a high surface area-to-volume ratio. This report is on the synthesis of nickel ferrite (NFO)–barium titanate (BTO) core–shell nanofibers, magnetic field assisted assembly into superstructures, and studies on magneto-electric (ME) interactions. Electrospinning techniques were used to prepare coaxial fibers of 0.5–1.5 micron in diameter. The core–shell structure of annealed fibers was confirmed by electron microscopy and scanning probe microscopy. The fibers were assembled into discs and films in a uniform magnetic field or in a field gradient. Studies on ME coupling in the assembled films and discs were done by magnetic field (H)-induced polarization, magneto–dielectric effects at low frequencies and at 16–24 GHz, and low-frequency ME voltage coefficients (MEVC). We measured ~2–7% change in remnant polarization and in the permittivity for H = 7 kOe, and a MEVC of 0.4 mV/cm Oe at 30 Hz. A model has been developed for low-frequency ME effects in an assembly of fibers and takes into account dipole–dipole interactions between the fibers and fiber discontinuity. Theoretical estimates for the low-frequency MEVC have been compared with the data. These results indicate strong ME coupling in superstructures of the core–shell fibers. MDPI 2017-12-23 /pmc/articles/PMC5793516/ /pubmed/29295512 http://dx.doi.org/10.3390/ma11010018 Text en © 2017 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Sreenivasulu, Gollapudi
Zhang, Jitao
Zhang, Ru
Popov, Maksym
Petrov, Vladimir
Srinivasan, Gopalan
Multiferroic Core-Shell Nanofibers, Assembly in a Magnetic Field, and Studies on Magneto-Electric Interactions
title Multiferroic Core-Shell Nanofibers, Assembly in a Magnetic Field, and Studies on Magneto-Electric Interactions
title_full Multiferroic Core-Shell Nanofibers, Assembly in a Magnetic Field, and Studies on Magneto-Electric Interactions
title_fullStr Multiferroic Core-Shell Nanofibers, Assembly in a Magnetic Field, and Studies on Magneto-Electric Interactions
title_full_unstemmed Multiferroic Core-Shell Nanofibers, Assembly in a Magnetic Field, and Studies on Magneto-Electric Interactions
title_short Multiferroic Core-Shell Nanofibers, Assembly in a Magnetic Field, and Studies on Magneto-Electric Interactions
title_sort multiferroic core-shell nanofibers, assembly in a magnetic field, and studies on magneto-electric interactions
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5793516/
https://www.ncbi.nlm.nih.gov/pubmed/29295512
http://dx.doi.org/10.3390/ma11010018
work_keys_str_mv AT sreenivasulugollapudi multiferroiccoreshellnanofibersassemblyinamagneticfieldandstudiesonmagnetoelectricinteractions
AT zhangjitao multiferroiccoreshellnanofibersassemblyinamagneticfieldandstudiesonmagnetoelectricinteractions
AT zhangru multiferroiccoreshellnanofibersassemblyinamagneticfieldandstudiesonmagnetoelectricinteractions
AT popovmaksym multiferroiccoreshellnanofibersassemblyinamagneticfieldandstudiesonmagnetoelectricinteractions
AT petrovvladimir multiferroiccoreshellnanofibersassemblyinamagneticfieldandstudiesonmagnetoelectricinteractions
AT srinivasangopalan multiferroiccoreshellnanofibersassemblyinamagneticfieldandstudiesonmagnetoelectricinteractions