Zobrazeno 1 - 10
of 102
pro vyhledávání: '"Jarmila, Vilčáková"'
Autor:
Anastasiia Stepura, Matej Mičušik, Federico Olivieri, Gennaro Gentile, Marino Lavorgna, Maurizio Avella, Edita Matysová, Jarmila Vilčáková, Mária Omastová
Publikováno v:
Scientific Reports, Vol 13, Iss 1, Pp 1-15 (2023)
Abstract Smart protective coatings and devices are currently of great interest. In particular, they can absorb or reflect harmful waves of electromagnetic interference (EMI). In this work, novel binary and ternary composites with highly amorphous pol
Externí odkaz:
https://doaj.org/article/d0ae0ad78fb04bd4b0e470f8cad3a49b
Autor:
Natalia E. Kazantseva, Ilona S. Smolkova, Vladimir Babayan, Jarmila Vilčáková, Petr Smolka, Petr Saha
Publikováno v:
Nanomaterials, Vol 11, Iss 12, p 3402 (2021)
Magnetic hyperthermia (MH), proposed by R. K. Gilchrist in the middle of the last century as local hyperthermia, has nowadays become a recognized method for minimally invasive treatment of oncological diseases in combination with chemotherapy (ChT) a
Externí odkaz:
https://doaj.org/article/40f3748e49304d1194907bbef39a208f
Publikováno v:
Polymer-Plastics Technology and Materials. 62:177-187
Autor:
Raghvendra Singh Yadav, Anju, Thaiskang Jamatia, Ivo Kuřitka, Jarmila Vilčáková, David Škoda, Pavel Urbánek, Michal Machovský, Milan Masař, Michal Urbánek, Lukas Kalina, Jaromir Havlica
Publikováno v:
Nanomaterials, Vol 11, Iss 5, p 1112 (2021)
Superparamagnetic ZnFe2O4 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 ZnFe2O4 spinel ferrite na
Externí odkaz:
https://doaj.org/article/a418a1f03c214d5ab5301c425825590f
Autor:
Marek Gořalík, Marek Jurča, Constantin Bubulinca, Vladimír A. Babayan, Jarmila Vilčáková, Natalia E. Kazantseva, Petr Sáha
Publikováno v:
Electronic Materials Letters. 18:345-360
Autor:
Ján Kruželák, Andrea Kvasničáková, Klaudia Hložeková, Michaela Džuganová, Jana Gregorová, Jarmila Vilčáková, Marek Gořalík, Ján Hronkovič, Jozef Preťo, Ivan Hudec
Publikováno v:
Rubber Chemistry and Technology. 95:300-321
Composites based on acrylonitrile–butadiene rubber, carbon nanotubes, and manganese–zinc ferrite were fabricated and tested for electromagnetic interference (EMI) absorption shielding. First, carbon nanotubes and ferrite were solely used for the
Autor:
Raghvendra Singh Yadav, Anju, Thaiskang Jamatia, Ivo Kuřitka, Jarmila Vilčáková, David Škoda, Pavel Urbánek, Michal Machovský, Milan Masař, Michal Urbánek, Lukas Kalina, Jaromir Havlica
Publikováno v:
Nanomaterials, Vol 10, Iss 12, p 2481 (2020)
In this work, various tunable sized spinel ferrite MnFe2O4 nanoparticles (namely MF20, MF40, MF60 and MF80) with reduced graphene oxide (RGO) were embedded in a polypropylene (PP) matrix. The particle size and structural feature of magnetic filler Mn
Externí odkaz:
https://doaj.org/article/c95e67e760454c87a110c1c9b92d271d
Autor:
Zdeňka Kolská, Irina Sapurina, Miroslava Trchová, Thanh Huong Truong, Ivo Křivka, Jarmila Vilčáková, Jaroslav Stejskal, Jan Prokeš, Petr Humpolíček, M. A. Shishov, Dušan Kopecký
Publikováno v:
Chemical Papers. 75:5035-5055
The present feature article offers a concise overview of recent research progress of the authors working in the design of macroporous conducting materials represented by polypyrrole-coated melamine sponges. The article highlights innovative results f
Publikováno v:
ACS Applied Nano Materials. 4:7513-7519
Czech Science FoundationGrant Agency of the Czech Republic [19-04859S, 21-09830S]; specific research project of the University of Chemistry and Technology, Prague [A2-FCHI-2021-003]
Autor:
Raghvendra Singh Yadav, Ivo Kuřitka, Jarmila Vilčáková, Michal Machovský, David Škoda, Pavel Urbánek, Milan Masař, Marek Gořalik, Michal Urbánek, Lukáš Kalina, Jaromir Havlica
Publikováno v:
Nanomaterials, Vol 9, Iss 4, p 621 (2019)
Herein, we presented electromagnetic interference shielding characteristics of NiFe2O4 nanoparticles—in-situ thermally-reduced graphene oxide (RGO)—polypropylene nanocomposites with the variation of reduced graphene oxide content. The structural,
Externí odkaz:
https://doaj.org/article/679eeb3853b645379b5e168ec21cffdf