Boosting Magnetoelectric Effect in Polymer-Based Nanocomposites.

PVDF PVDF-TrFE barium titanate cobalt ferrite magnetoelectric effect multiferroics nanoparticles

Journal

Nanomaterials (Basel, Switzerland)
ISSN: 2079-4991
Titre abrégé: Nanomaterials (Basel)
Pays: Switzerland
ID NLM: 101610216

Informations de publication

Date de publication:
28 Apr 2021
Historique:
received: 27 03 2021
revised: 25 04 2021
accepted: 26 04 2021
entrez: 30 4 2021
pubmed: 1 5 2021
medline: 1 5 2021
Statut: epublish

Résumé

Polymer-based magnetoelectric composite materials have attracted a lot of attention due to their high potential in various types of applications as magnetic field sensors, energy harvesting, and biomedical devices. Current researches are focused on the increase in the efficiency of magnetoelectric transformation. In this work, a new strategy of arrangement of clusters of magnetic nanoparticles by an external magnetic field in PVDF and PFVD-TrFE matrixes is proposed to increase the voltage coefficient (α

Identifiants

pubmed: 33925105
pii: nano11051154
doi: 10.3390/nano11051154
pmc: PMC8146360
pii:
doi:

Types de publication

Journal Article

Langues

eng

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Auteurs

Alexander Omelyanchik (A)

REC Smart Materials and Biomedical Applications, Immanuel Kant Baltic Federal University, 236041 Kaliningrad, Russia.
Department of Chemistry and Industrial Chemistry (DCIC), University of Genova, 16146 Genova, Italy.

Valentina Antipova (V)

REC Smart Materials and Biomedical Applications, Immanuel Kant Baltic Federal University, 236041 Kaliningrad, Russia.

Christina Gritsenko (C)

REC Smart Materials and Biomedical Applications, Immanuel Kant Baltic Federal University, 236041 Kaliningrad, Russia.

Valeria Kolesnikova (V)

REC Smart Materials and Biomedical Applications, Immanuel Kant Baltic Federal University, 236041 Kaliningrad, Russia.

Dmitry Murzin (D)

REC Smart Materials and Biomedical Applications, Immanuel Kant Baltic Federal University, 236041 Kaliningrad, Russia.

Yilin Han (Y)

Biomedical Centre, Department of Neuroscience, Uppsala University, 751 24 Uppsala, Sweden.

Andrei V Turutin (AV)

Laboratory of Physics of Oxide Ferroelectrics and Department of Materials Science of Semiconductors and Dielectrics, National University of Science and Technology MISiS, 119049 Moscow, Russia.
Department of Physics and I3N, University of Aveiro, 3810-193 Aveiro, Portugal.

Ilya V Kubasov (IV)

Laboratory of Physics of Oxide Ferroelectrics and Department of Materials Science of Semiconductors and Dielectrics, National University of Science and Technology MISiS, 119049 Moscow, Russia.

Alexander M Kislyuk (AM)

Laboratory of Physics of Oxide Ferroelectrics and Department of Materials Science of Semiconductors and Dielectrics, National University of Science and Technology MISiS, 119049 Moscow, Russia.

Tatiana S Ilina (TS)

Laboratory of Physics of Oxide Ferroelectrics and Department of Materials Science of Semiconductors and Dielectrics, National University of Science and Technology MISiS, 119049 Moscow, Russia.

Dmitry A Kiselev (DA)

Laboratory of Physics of Oxide Ferroelectrics and Department of Materials Science of Semiconductors and Dielectrics, National University of Science and Technology MISiS, 119049 Moscow, Russia.

Marina I Voronova (MI)

Laboratory of Physics of Oxide Ferroelectrics and Department of Materials Science of Semiconductors and Dielectrics, National University of Science and Technology MISiS, 119049 Moscow, Russia.

Mikhail D Malinkovich (MD)

Laboratory of Physics of Oxide Ferroelectrics and Department of Materials Science of Semiconductors and Dielectrics, National University of Science and Technology MISiS, 119049 Moscow, Russia.

Yuriy N Parkhomenko (YN)

Laboratory of Physics of Oxide Ferroelectrics and Department of Materials Science of Semiconductors and Dielectrics, National University of Science and Technology MISiS, 119049 Moscow, Russia.

Maxim Silibin (M)

Institute of Advanced Materials and Technologies, National Research University of Electronic Technology "MIET", 124498 Moscow, Russia.
Institute for Bionic Technologies and Engineering, I.M. Sechenov First Moscow State Medical University, 119991 Moscow, Russia.
Scientific-Manufacturing Complex "Technological Centre" Shokin Square, House 1, Bld. 7, Zelenograd, 124498 Moscow, Russia.

Elena N Kozlova (EN)

Biomedical Centre, Department of Neuroscience, Uppsala University, 751 24 Uppsala, Sweden.

Davide Peddis (D)

Department of Chemistry and Industrial Chemistry (DCIC), University of Genova, 16146 Genova, Italy.
Institute of Structure of Matter-CNR, Monterotondo Stazione, 00016 Rome, Italy.

Kateryna Levada (K)

REC Smart Materials and Biomedical Applications, Immanuel Kant Baltic Federal University, 236041 Kaliningrad, Russia.

Liudmila Makarova (L)

REC Smart Materials and Biomedical Applications, Immanuel Kant Baltic Federal University, 236041 Kaliningrad, Russia.
Faculty of Physics, Lomonosov Moscow State University, 1-2 Leninskie Gory, 119234 Moscow, Russia.

Abdulkarim Amirov (A)

REC Smart Materials and Biomedical Applications, Immanuel Kant Baltic Federal University, 236041 Kaliningrad, Russia.
Amirkhanov Institute of Physics of Dagestan Federal Research Center, Russian Academy of Sciences, 367003 Makhachkala, Russia.

Valeria Rodionova (V)

REC Smart Materials and Biomedical Applications, Immanuel Kant Baltic Federal University, 236041 Kaliningrad, Russia.

Classifications MeSH