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Superparamagnetic ZnFe(2)O(4) Nanoparticles-Reduced Graphene Oxide-Polyurethane Resin Based Nanocomposites for Electromagnetic Interference Shielding Application
Superparamagnetic ZnFe(2)O(4) spinel ferrite nanoparticles were prepared by the sonochemical synthesis method at different ultra-sonication times of 25 min (ZS25), 50 min (ZS50), and 100 min (ZS100). The structural properties of ZnFe(2)O(4) spinel ferrite nanoparticles were controlled via sonochemic...
Autores principales: | , , , , , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
MDPI
2021
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8145072/ https://www.ncbi.nlm.nih.gov/pubmed/33923033 http://dx.doi.org/10.3390/nano11051112 |
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author | Yadav, Raghvendra Singh Anju, Jamatia, Thaiskang Kuřitka, Ivo Vilčáková, Jarmila Škoda, David Urbánek, Pavel Machovský, Michal Masař, Milan Urbánek, Michal Kalina, Lukas Havlica, Jaromir |
author_facet | Yadav, Raghvendra Singh Anju, Jamatia, Thaiskang Kuřitka, Ivo Vilčáková, Jarmila Škoda, David Urbánek, Pavel Machovský, Michal Masař, Milan Urbánek, Michal Kalina, Lukas Havlica, Jaromir |
author_sort | Yadav, Raghvendra Singh |
collection | PubMed |
description | Superparamagnetic ZnFe(2)O(4) spinel ferrite nanoparticles were prepared by the sonochemical synthesis method at different ultra-sonication times of 25 min (ZS25), 50 min (ZS50), and 100 min (ZS100). The structural properties of ZnFe(2)O(4) spinel ferrite nanoparticles were controlled via sonochemical synthesis time. The average crystallite size increases from 3.0 nm to 4.0 nm with a rise of sonication time from 25 min to 100 min. The change of physical properties of ZnFe(2)O(4) nanoparticles with the increase of sonication time was observed. The prepared ZnFe(2)O(4) nanoparticles show superparamagnetic behavior. The prepared ZnFe(2)O(4) nanoparticles (ZS25, ZS50, and ZS100) and reduced graphene oxide (RGO) were embedded in a polyurethane resin (PUR) matrix as a shield against electromagnetic pollution. The ultra-sonication method has been used for the preparation of nanocomposites. The total shielding effectiveness (SE(T)) value for the prepared nanocomposites was studied at a thickness of 1 mm in the range of 8.2–12.4 GHz. The high attenuation constant (α) value of the prepared ZS100-RGO-PUR nanocomposite as compared with other samples recommended high absorption of electromagnetic waves. The existence of electric-magnetic nanofillers in the resin matrix delivered the inclusive acts of magnetic loss, dielectric loss, appropriate attenuation constant, and effective impedance matching. The synergistic effect of ZnFe(2)O(4) and RGO in the PUR matrix led to high interfacial polarization and, consequently, significant absorption of the electromagnetic waves. The outcomes and methods also assure an inventive and competent approach to develop lightweight and flexible polyurethane resin matrix-based nanocomposites, consisting of superparamagnetic zinc ferrite nanoparticles and reduced graphene oxide as a shield against electromagnetic pollution. |
format | Online Article Text |
id | pubmed-8145072 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2021 |
publisher | MDPI |
record_format | MEDLINE/PubMed |
spelling | pubmed-81450722021-05-26 Superparamagnetic ZnFe(2)O(4) Nanoparticles-Reduced Graphene Oxide-Polyurethane Resin Based Nanocomposites for Electromagnetic Interference Shielding Application Yadav, Raghvendra Singh Anju, Jamatia, Thaiskang Kuřitka, Ivo Vilčáková, Jarmila Škoda, David Urbánek, Pavel Machovský, Michal Masař, Milan Urbánek, Michal Kalina, Lukas Havlica, Jaromir Nanomaterials (Basel) Article Superparamagnetic ZnFe(2)O(4) spinel ferrite nanoparticles were prepared by the sonochemical synthesis method at different ultra-sonication times of 25 min (ZS25), 50 min (ZS50), and 100 min (ZS100). The structural properties of ZnFe(2)O(4) spinel ferrite nanoparticles were controlled via sonochemical synthesis time. The average crystallite size increases from 3.0 nm to 4.0 nm with a rise of sonication time from 25 min to 100 min. The change of physical properties of ZnFe(2)O(4) nanoparticles with the increase of sonication time was observed. The prepared ZnFe(2)O(4) nanoparticles show superparamagnetic behavior. The prepared ZnFe(2)O(4) nanoparticles (ZS25, ZS50, and ZS100) and reduced graphene oxide (RGO) were embedded in a polyurethane resin (PUR) matrix as a shield against electromagnetic pollution. The ultra-sonication method has been used for the preparation of nanocomposites. The total shielding effectiveness (SE(T)) value for the prepared nanocomposites was studied at a thickness of 1 mm in the range of 8.2–12.4 GHz. The high attenuation constant (α) value of the prepared ZS100-RGO-PUR nanocomposite as compared with other samples recommended high absorption of electromagnetic waves. The existence of electric-magnetic nanofillers in the resin matrix delivered the inclusive acts of magnetic loss, dielectric loss, appropriate attenuation constant, and effective impedance matching. The synergistic effect of ZnFe(2)O(4) and RGO in the PUR matrix led to high interfacial polarization and, consequently, significant absorption of the electromagnetic waves. The outcomes and methods also assure an inventive and competent approach to develop lightweight and flexible polyurethane resin matrix-based nanocomposites, consisting of superparamagnetic zinc ferrite nanoparticles and reduced graphene oxide as a shield against electromagnetic pollution. MDPI 2021-04-25 /pmc/articles/PMC8145072/ /pubmed/33923033 http://dx.doi.org/10.3390/nano11051112 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/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 (https://creativecommons.org/licenses/by/4.0/). |
spellingShingle | Article Yadav, Raghvendra Singh Anju, Jamatia, Thaiskang Kuřitka, Ivo Vilčáková, Jarmila Škoda, David Urbánek, Pavel Machovský, Michal Masař, Milan Urbánek, Michal Kalina, Lukas Havlica, Jaromir Superparamagnetic ZnFe(2)O(4) Nanoparticles-Reduced Graphene Oxide-Polyurethane Resin Based Nanocomposites for Electromagnetic Interference Shielding Application |
title | Superparamagnetic ZnFe(2)O(4) Nanoparticles-Reduced Graphene Oxide-Polyurethane Resin Based Nanocomposites for Electromagnetic Interference Shielding Application |
title_full | Superparamagnetic ZnFe(2)O(4) Nanoparticles-Reduced Graphene Oxide-Polyurethane Resin Based Nanocomposites for Electromagnetic Interference Shielding Application |
title_fullStr | Superparamagnetic ZnFe(2)O(4) Nanoparticles-Reduced Graphene Oxide-Polyurethane Resin Based Nanocomposites for Electromagnetic Interference Shielding Application |
title_full_unstemmed | Superparamagnetic ZnFe(2)O(4) Nanoparticles-Reduced Graphene Oxide-Polyurethane Resin Based Nanocomposites for Electromagnetic Interference Shielding Application |
title_short | Superparamagnetic ZnFe(2)O(4) Nanoparticles-Reduced Graphene Oxide-Polyurethane Resin Based Nanocomposites for Electromagnetic Interference Shielding Application |
title_sort | superparamagnetic znfe(2)o(4) nanoparticles-reduced graphene oxide-polyurethane resin based nanocomposites for electromagnetic interference shielding application |
topic | Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8145072/ https://www.ncbi.nlm.nih.gov/pubmed/33923033 http://dx.doi.org/10.3390/nano11051112 |
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