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https://elib.bsu.by/handle/123456789/289436
Заглавие документа: | Dielectric relaxation spectroscopy and synergy effects in epoxy/mwcnt/ni@c composites |
Авторы: | Meisak, Darya Macutkevic, Jan Selskis, Algirdas Kuzhir, Polina Banys, Juras |
Тема: | ЭБ БГУ::ЕСТЕСТВЕННЫЕ И ТОЧНЫЕ НАУКИ::Физика |
Дата публикации: | 2021 |
Издатель: | MDPI AG |
Библиографическое описание источника: | Nanomaterials 2021;11(2):1-18. |
Аннотация: | The dielectric/electric properties of the Ni@C (carbon-coated Ni)/epoxy composites and Ni@C/MWCNTs (multi-walled carbon nanotubes)/epoxy composites loaded with fixed MWCNTs amount just below the percolation threshold (0.09 vol.%) and Ni@C at different concentrations up to 1 vol.% were investigated in broad frequency (20 Hz–40 GHz) and temperature (30 K–500 K) regions. In composites with the only Ni@C nanoparticles, the electrical percolation threshold was determined between 10 and 15 vol.%. Above the percolation threshold the dielectric permittivity (ε’) and the electrical conductivity (σ) of the composites loaded with Ni@C only are high enough, i.e., ε’ = 105 and σ = 0.6 S/m at 100 Hz for composites with 30 vol.% Ni@C, to be used for electromagnetic shielding applications. The annealing to 500 K was proved to be an effective and simple tool to decrease the percolation threshold in epoxy/Ni@C composites. For hybrid composites series an optimal concentration of Ni@C (0.2 vol.%) was determined, leading to the conductivity absolute values several orders of magnitude higher than that of a composite filled with MWCNTs only. The synergy effects of using both fillers have been discussed. Below room temperature the electrical transport is mainly governed by epoxy resin compression in all composites, while the electron tunnelling was observed only in hybrid composites below 200 K. At higher temperatures (above 400 K), in addition to the nanoparticles redistribution effects, the electrical conductivity of epoxy resin makes a significant contribution to the total composite conductivity. The dielectric relaxation spectroscopy allows estimating the nanoparticles distributions in polymer matrix and could be used as the non-destructive and fast alternate to microscopy techniques for general polymer composite fabrication control. |
URI документа: | https://elib.bsu.by/handle/123456789/289436 |
DOI документа: | 10.3390/nano11020555 |
Scopus идентификатор документа: | 85101222106 |
Финансовая поддержка: | Funding: This research is supported by NATO SPS proposal G5697—Globular carbon based structures and metamaterials for enhanced electromagnetic protection (CERTAIN), H2020 RISE project 734164 Graphene 3D, the Academy of Finland (Flagship Programme, Photonics Research and Innovation (PREIN), No. 320166, and project No. 334370). PK is supported by Horizon 2020 IF TURANDOT project 836816. |
Лицензия: | info:eu-repo/semantics/openAccess |
Располагается в коллекциях: | Статьи НИУ «Институт ядерных проблем» |
Полный текст документа:
Файл | Описание | Размер | Формат | |
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nanomaterials-11-00555-v2.pdf | 35,01 MB | Adobe PDF | Открыть |
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