In situ Polymerization Technique for the Production of Novel Composite Materials Based on Polyethylene and Multi-Walled Carbon Nanotubes Modified by Co Nanoparticles for EMI Applications Conference Abstracts
Conference |
The 8th Tokyo Conference on Advanced Catalytic Science and Technology 05-10 Aug 2018 , Токио |
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Source | The 8th Tokyo Conference on Advanced Catalytic Science and Technology Compilation, 2018. |
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Output data | Year: 2018, Article number : P1227, Pages count : 2 | ||||||
Tags | In situ polymerization, Multi-walled carbon nanotubes, Co/MWCNT-PE composites | ||||||
Authors |
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Affiliations |
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Funding (1)
1 | Russian Foundation for Basic Research | 16-32-60046 |
Abstract:
Herein, the possibility of obtaining new triple composite materials based on polyethylene and MWCNT modified by Co nanoparticles has been studied. A new approach for the synthesis of these materials based on in situ polymerization of ethylene using Ti-containing catalysts previously adsorbed on the surface of Co/MWCNTs has been developed and utilized. Co/MWCNT-PE composites with different ratios of the components Co:MWCNT:PE have been obtained. The study of electromagnetic response has shown that the Co/MWCNT-PE composites can be used as a promising material for the development of broadband shielding to be used for effective reflecting the electromagnetic radiation (10-16 GHz).
Cite:
Kazakova M.A.
, Semikolenova N.V.
, Korovin E.Y.
, Ischenko A.V.
, Kuznetsov V.L.
, Suslyaev V.I.
, Matsko M.A.
, Zakharov V.A.
In situ Polymerization Technique for the Production of Novel Composite Materials Based on Polyethylene and Multi-Walled Carbon Nanotubes Modified by Co Nanoparticles for EMI Applications
In compilation The 8th Tokyo Conference on Advanced Catalytic Science and Technology. 2018.
In situ Polymerization Technique for the Production of Novel Composite Materials Based on Polyethylene and Multi-Walled Carbon Nanotubes Modified by Co Nanoparticles for EMI Applications
In compilation The 8th Tokyo Conference on Advanced Catalytic Science and Technology. 2018.
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