DocumentCode :
1285467
Title :
Characterization of Single- and Multiwalled Carbon Nanotube Composites for Electromagnetic Shielding and Tunable Applications
Author :
Liu, Lie ; Kong, Ling Bing ; Yin, Wen-Yan ; Matitsine, S.
Author_Institution :
Temasek Labs., Nat. Univ. of Singapore, Singapore, Singapore
Volume :
53
Issue :
4
fYear :
2011
Firstpage :
943
Lastpage :
949
Abstract :
Conductivity, complex permittivity, and shielding effectiveness (SE) of single- and multiwalled carbon nanotube (SWCNT and MWCNT) composites prepared by ultrasonication dispersion were investigated experimentally. As compared with a manual process, ultrasonication dispersion was able to reduce percolation threshold of the SWCNT composites significantly. Frequency-dependent permittivity of the composite can be well described by the scaling law based on the percolation theory. It is also found that the carbon nanotube (CNT) composites possess large tunable dielectric properties (>;60%) at relatively low bias electrical field (7.5 V/mm), which have potential applications in smart electromagnetic functional structures. SE of the MWCNT composite with 5% CNT and a thickness of 2 mm is about 30 dB at 12 GHz. Therefore, the MWCNT composites are good candidates as flexible shielding materials operating at microwave frequencies.
Keywords :
carbon nanotubes; composite materials; electrical conductivity; electromagnetic shielding; permittivity; complex permittivity; conductivity; electromagnetic shielding; flexible shielding material; frequency-dependent permittivity; microwave frequency; multiwalled carbon nanotube composites; percolation theory; percolation threshold; scaling law; shielding effectiveness; single-walled carbon nanotube composites; smart electromagnetic functional structure; tunable application; tunable dielectric property; ultrasonication dispersion; Conductivity; Dielectrics; Dispersion; Frequency measurement; Permittivity measurement; Conductivity; permittivity; polymeric composite; shielding effectiveness; single- and multi-walled carbon nanotubes (SWCNT and MWCNT);
fLanguage :
English
Journal_Title :
Electromagnetic Compatibility, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9375
Type :
jour
DOI :
10.1109/TEMC.2011.2159798
Filename :
5966331
Link To Document :
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