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| dc.title | Nickel nanoparticle-decorated reduced graphene oxide via one-step microwave-assisted synthesis and its lightweight and flexible composite with Polystyrene-block-poly(ethylene-ran-butylene)-block-polystyrene polymer for electromagnetic wave shielding application | en |
| dc.contributor.author | Škoda, David | |
| dc.contributor.author | Vilčáková, Jarmila | |
| dc.contributor.author | Yadav, Raghvendra Singh | |
| dc.contributor.author | Hanulíková, Barbora | |
| dc.contributor.author | Čapková, Tereza | |
| dc.contributor.author | Jurča, Marek | |
| dc.contributor.author | Urbánek, Michal | |
| dc.contributor.author | Macháč, Petr | |
| dc.contributor.author | Šimoníková, Lucie | |
| dc.contributor.author | Antoš, Jan | |
| dc.contributor.author | Kuřitka, Ivo | |
| dc.relation.ispartof | Advanced Composites and Hybrid Materials | |
| dc.identifier.issn | 2522-0128 Scopus Sources, Sherpa/RoMEO, JCR | |
| dc.identifier.issn | 2522-0136 Scopus Sources, Sherpa/RoMEO, JCR | |
| dc.date.issued | 2023 | |
| utb.relation.volume | 6 | |
| utb.relation.issue | 3 | |
| dc.type | article | |
| dc.language.iso | en | |
| dc.publisher | Springer Science and Business Media B.V. | |
| dc.identifier.doi | 10.1007/s42114-023-00692-7 | |
| dc.relation.uri | https://link.springer.com/article/10.1007/s42114-023-00692-7 | |
| dc.subject | nickel | en |
| dc.subject | nanoparticles | en |
| dc.subject | reduced graphene oxide | en |
| dc.subject | microwave synthesis | en |
| dc.subject | polymer | en |
| dc.subject | composite | en |
| dc.subject | electromagnetic shielding | en |
| dc.description.abstract | Nickel nanoparticle–decorated reduced graphene oxide nanocomposites (NiG) were prepared by a one-step microwave-assisted solvothermal method. The as-prepared NiG nanocomposite systems were further heated up to 800 °C under an inert atmosphere (named NiG-800) to modify their structural and electromagnetic properties. Thereafter, these developed NiG-800 nanocomposite systems of rGO and nickel nanoparticles (25 wt.%) were applied as nanofillers (50 wt.% and 70 wt.%) in a SEBS (Polystyrene-block-poly(ethylene-ran-butylene)-block-polystyrene) polymer matrix to create NiG-800(50)-SEBS and NiG-800(70)-SEBS nanocomposites. The addition of NiG-800 to SEBS led to an increase of Young’s modulus from 16 (SEBS) to 35 MPa (NiG-800(70)-SEBS) while the maximum elongation is still around 300%. The developed NiG-800(70)-SEBS nanocomposite exhibited high-performance electromagnetic wave absorption (minimum reflection loss RLmin ≈ –48.2 dB at 9.29 GHz) at a low thickness of 2.3 mm in the frequency range of 8.2−12.4 GHz. The prepared NiG-800(70)-SEBS nanocomposite has the potential of an electromagnetic wave absorber. The NiG-800(70)-SEBS nanocomposite reported here has total shielding efficiency > 10 dB at a thickness of 1 mm in the whole frequency range (X-band) with reflection ≈ 50% and absorption ≈ 40% which has the potential for electromagnetic wave absorber applications. | en |
| utb.faculty | University Institute | |
| utb.faculty | Faculty of Technology | |
| dc.identifier.uri | http://hdl.handle.net/10563/1011556 | |
| utb.identifier.obdid | 43884838 | |
| utb.identifier.scopus | 2-s2.0-85160211359 | |
| utb.identifier.wok | 000994872900001 | |
| utb.source | j-scopus | |
| dc.date.accessioned | 2023-07-19T10:39:37Z | |
| dc.date.available | 2023-07-19T10:39:37Z | |
| dc.description.sponsorship | RP/CPS/2022/005, RP/CPS/2022/007; Ministerstvo Školství, Mládeže a Tělovýchovy, MŠMT: LM2018110; Univerzita Tomáše Bati ve Zlíně; Masarykova Univerzita, MU: MUNI/A/1298/2022; Lékařská fakulta, Masarykova univerzita, LF MU, LF MU | |
| dc.description.sponsorship | National Technical Library in Prague; Ministry of Education, Youth and Sports of the Czech Republic-DKRVO [RP/CPS/2022/007, RP/CPS/2022/005]; MEYS CR [LM2018110] | |
| dc.rights | Attribution 4.0 International | |
| dc.rights.uri | http://creativecommons.org/licenses/by/4.0/ | |
| dc.rights.access | openAccess | |
| utb.ou | Centre of Polymer Systems | |
| utb.ou | Department of Physics and Materials Engineering | |
| utb.contributor.internalauthor | Škoda, David | |
| utb.contributor.internalauthor | Vilčáková, Jarmila | |
| utb.contributor.internalauthor | Yadav, Raghvendra Singh | |
| utb.contributor.internalauthor | Hanulíková, Barbora | |
| utb.contributor.internalauthor | Čapková, Tereza | |
| utb.contributor.internalauthor | Jurča, Marek | |
| utb.contributor.internalauthor | Urbánek, Michal | |
| utb.contributor.internalauthor | Antoš, Jan | |
| utb.contributor.internalauthor | Kuřitka, Ivo | |
| utb.fulltext.sponsorship | Open access publishing supported by the National Technical Library in Prague. This work was funded by the Ministry of Education, Youth and Sports of the Czech Republic—DKRVO (RP/CPS/2022/007), and (RP/CPS/2022/005). CzechNanoLab project LM2018110 funded by MEYS CR is gratefully acknowledged for the financial support of XPS measurements at CEITEC Nano Research Infrastructure. Masaryk University and MUNI/A/1298/2022 are acknowledged for ICP-OES analysis. | |
| utb.wos.affiliation | [Skoda, David; Vilcakova, Jarmila; Yadav, Raghvendra Singh; Hanulikova, Barbora; Capkova, Tereza; Jurca, Marek; Urbanek, Michal; Antos, Jan; Kuritka, Ivo] Tomas Bata Univ Zlin, Ctr Polymer Syst, Tr Tomase Bati 5678, Zlin 76001, Czech Republic; [Vilcakova, Jarmila] Tomas Bata Univ Zlin, Fac Technol, Dept Phys & Mat Engn, Vavreckova 5669, Zlin 76001, Czech Republic; [Machac, Petr; Simonikova, Lucie] Masaryk Univ, Fac Sci, Dept Chem, Kotlarska 2, Brno 61137, Czech Republic | |
| utb.scopus.affiliation | Skoda D., Centre of Polymer Systems, Tomas Bata University in Zlin, Tr. Tomase Bati 5678, Zlin, 76001, Czech Republic; Vilcakova J., Centre of Polymer Systems, Tomas Bata University in Zlin, Tr. Tomase Bati 5678, Zlin, 76001, Czech Republic, Department of Physics and Materials Engineering, Faculty of Technology, Tomas Bata University in Zlin, Vavreckova, Zlín, 5669, 76001, Czech Republic; Yadav R.S., Centre of Polymer Systems, Tomas Bata University in Zlin, Tr. Tomase Bati 5678, Zlin, 76001, Czech Republic; Hanulikova B., Centre of Polymer Systems, Tomas Bata University in Zlin, Tr. Tomase Bati 5678, Zlin, 76001, Czech Republic; Capkova T., Centre of Polymer Systems, Tomas Bata University in Zlin, Tr. Tomase Bati 5678, Zlin, 76001, Czech Republic; Jurca M., Centre of Polymer Systems, Tomas Bata University in Zlin, Tr. Tomase Bati 5678, Zlin, 76001, Czech Republic; Urbanek M., Centre of Polymer Systems, Tomas Bata University in Zlin, Tr. Tomase Bati 5678, Zlin, 76001, Czech Republic; Machac P., Department of Chemistry, Faculty of Science, Masaryk University, Kotlarska 2, Brno, 61137, Czech Republic; Simonikova L., Department of Chemistry, Faculty of Science, Masaryk University, Kotlarska 2, Brno, 61137, Czech Republic; Antos J., Centre of Polymer Systems, Tomas Bata University in Zlin, Tr. Tomase Bati 5678, Zlin, 76001, Czech Republic; Kuritka I., Centre of Polymer Systems, Tomas Bata University in Zlin, Tr. Tomase Bati 5678, Zlin, 76001, Czech Republic | |
| utb.fulltext.projects | DKRVO RP/CPS/2022/007 | |
| utb.fulltext.projects | DKRVO RP/CPS/2022/005 | |
| utb.fulltext.projects | LM2018110 | |
| utb.fulltext.projects | MUNI/A/1298/2022 |