D
Darya Meisak
Researcher at Vilnius University
Publications - 21
Citations - 244
Darya Meisak is an academic researcher from Vilnius University. The author has contributed to research in topics: Dielectric & Carbon nanotube. The author has an hindex of 7, co-authored 18 publications receiving 156 citations. Previous affiliations of Darya Meisak include Belarusian State University.
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Journal ArticleDOI
Nanocarbon/Poly(Lactic) Acid for 3D Printing: Effect of Fillers Content on Electromagnetic and Thermal Properties
Giovanni Spinelli,Patrizia Lamberti,Vincenzo Tucci,Rumiana Kotsilkova,Evgeni Ivanov,Dzhihan Menseidov,Carlo Naddeo,Vittorio Raffaele A. Romano,Liberata Guadagno,Renata Adami,Darya Meisak,Dzmitry Bychanok,Dzmitry Bychanok,Polina Kuzhir,Polina Kuzhir +14 more
TL;DR: The EM and thermal characteristics exhibited by the nanocomposites make them suitable for packaging applications of electronic devices with electromagnetic interference (EMI) shielding and thermal dissipation features.
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Terahertz absorption in graphite nanoplatelets/polylactic acid composites
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Morphological, rheological and electromagnetic properties of nanocarbon/poly(lactic) acid for 3D printing: Solution blending vs. melt mixing
Giovanni Spinelli,Patrizia Lamberti,Vincenzo Tucci,Rumiana Kotsilkova,Sonia Tabakova,Radost Ivanova,P Angelova,Verislav Angelov,Evgeni Ivanov,Rosa Di Maio,Clara Silvestre,Darya Meisak,Alesia Paddubskaya,Polina Kuzhir +13 more
TL;DR: It was found that the electromagnetic shielding efficiency (EMI) of nanocomposites strongly depended on the aspect ratio of the nanofillers, whereas the type of processing technique did not have a significant effect and a careful choice of methods must be made to address the final application.
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Fully carbon metasurface: Absorbing coating in microwaves
Dzmitry Bychanok,Sijin Li,Gleb Gorokhov,K. Piasotski,Darya Meisak,Polina Kuzhir,E. A. Burgess,C. P. Gallagher,Feodor Y. Ogrin,Alastair P. Hibbins,Andreea Pasc,Angela Sanchez-Sanchez,Vanessa Fierro,Alain Celzard +13 more
TL;DR: In this article, the microwave absorption properties of an ordered monolayer of porous glassy carbon spheres were investigated in the Ka-band (26-37 GHz) frequency range, and the electromagnetic response of such a moth-eye-like all-carbon metasurface at a normal incidence angle was modeled on the basis of long-wave approximation.
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Fine Tuning of Electrical Transport and Dielectric Properties of Epoxy/Carbon Nanotubes Composites via Magnesium Oxide Additives.
Povilas Bertasius,Darya Meisak,Jan Macutkevic,Polina Kuzhir,Algirdas Selskis,Elena Volnyanko,Juras Banys +6 more
TL;DR: The broadband properties of epoxy/MWCNT (multi-walled carbon nanotubes)/MgO hybrid composites are discussed in terms of the distribution of relaxation times, which are proven to be an effective, noninvasive, and simple tool for checking composite fabrication issues, such as the distributed MWCNT aggregates within the epoxy matrix.