DocumentCode
64662
Title
Preparation and Microwave Properties of Silica Coated Ni–Fe–Mo Flakes Composites
Author
Raolison, Z. ; Lefevre, C. ; Neige, Julien ; Adenot-Engelvin, Anne-Lise ; Pourroy, G. ; Vukadinovic, N.
Author_Institution
Inst. de Phys. et Chim. des Mater. de Strasbourg, Univ. de Strasbourg, Strasbourg, France
Volume
49
Issue
3
fYear
2013
fDate
Mar-13
Firstpage
986
Lastpage
989
Abstract
Fabrication of silica coated permalloy-like flaky particles and microwave properties of uncoated and coated particles dispersed in a polymer matrix are presented. The silica layer is successfully obtained through the Stöber process and its thickness is about 50 nm. Permeability and permittivity measurements are carried out using an APC7 coaxial line. It is demonstrated that composites with an insulating layer exhibit the same permeability levels as the ones filled with uncoated permalloy-like flakes but lower permittivity levels which improves its impedance matching and thus enhances its microwave absorbing properties. Calculated reflection loss of 1 mm composite layer shows that peak frequencies are shifted to higher frequencies while their intensities are slightly increased when composites are filled with coated flaky particles (-4.26 dB at 1.89 GHz for the uncoated flakes and -4.53 dB at 2.57 GHz for the coated ones at the same volume content of 21%). Composites filled with higher volume contents are expected to be promising candidates as absorbing materials above the GHz range.
Keywords
composite materials; electromagnetic wave absorption; iron alloys; magnetic particles; magnetic permeability; microwave materials; molybdenum alloys; nickel alloys; permittivity; polymers; silicon compounds; APC7 coaxial line; NiFeMo-SiO2; Stober process; absorbing materials; composite layer; frequency 1.89 GHz; frequency 2.57 GHz; impedance matching; insulating layer; microwave absorbing properties; microwave properties; peak frequencies; permeability levels; permeability measurement; permittivity levels; permittivity measurement; polymer matrix; reflection loss; silica coated Ni-Fe-Mo flakes composites; silica coated permalloy-like flaky particle fabrication; silica layer; size 1 mm; uncoated flakes; uncoated particles; uncoated permalloy-like flakes; volume contents; Impedance matching; Microwave measurements; Microwave theory and techniques; Permeability; Permittivity; Saturation magnetization; Silicon compounds; Coatings; microwave absorbers; permalloy; permeability measurements; permittivity measurements;
fLanguage
English
Journal_Title
Magnetics, IEEE Transactions on
Publisher
ieee
ISSN
0018-9464
Type
jour
DOI
10.1109/TMAG.2012.2225025
Filename
6466549
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