DocumentCode :
3607633
Title :
Anisotropic Microwave Conductivity Dispersion of Horizontally Aligned Multi-Walled Carbon- Nanotube Thin Film on Flexible Substrate
Author :
Si Li ; Wei Hua ; Min Liang ; Mingguang Tuo ; Tawfick, Sameh ; Hart, John ; Qi Zhu ; Hao Xin
Author_Institution :
Dept. of Electron. Eng. & Inf. Sci., Univ. of Sci. & Technol. of China, Hefei, China
Volume :
63
Issue :
11
fYear :
2015
Firstpage :
3588
Lastpage :
3594
Abstract :
In this paper, the anisotropic conductivity dispersion of horizontally aligned multi-walled carbon-nanotube (HA-MWCNT) thin films on a kapton substrate are characterized at microwave range. It is well known that a single carbon nanotube (CNT) presents highly 1-D conduction. For a thin film composed of numerous aligned CNTs, the anisotropic conduction may be preserved to some extent, as this is useful for various applications. In this paper, the anisotropic conduction of HA-MWCNT thin films is investigated in a rectangular waveguide measurement setup. The anisotropic surface conductivities of the films along the nanotube axial and radial directions are extracted from the measured S-parameters. The results reveal an anisotropic conductivity ratio of about 2 for the HA-MWCNTs thin film. Furthermore, it is observed that the real part of the extracted conductivity remains constant over the frequency band while the imaginary part increases almost linearly with frequency.
Keywords :
S-parameters; high-frequency effects; microwave measurement; multi-wall carbon nanotubes; rectangular waveguides; surface conductivity; 1D conduction; HA-MWCNT thin films; S-parameters; anisotropic conductivity ratio; anisotropic microwave conductivity dispersion; anisotropic surface conductivities; flexible substrate; horizontally aligned multi-walled carbon-nanotube thin film; kapton substrate; nanotube axial directions; nanotube radial directions; rectangular waveguide measurement; Conductivity; Conductivity measurement; Microwave theory and techniques; Scattering parameters; Substrates; Surface waves; Uncertainty; Anisotropic property; horizontally aligned multi-walled carbon nanotube (HA-MWCNT); microwave; surface conductivity; waveguide;
fLanguage :
English
Journal_Title :
Microwave Theory and Techniques, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9480
Type :
jour
DOI :
10.1109/TMTT.2015.2481397
Filename :
7289473
Link To Document :
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