4.2 Article

Electrical properties of multiwalled carbon nanotube reinforced fused silica composites

Journal

JOURNAL OF NANOSCIENCE AND NANOTECHNOLOGY
Volume 6, Issue 12, Pages 3835-3841

Publisher

AMER SCIENTIFIC PUBLISHERS
DOI: 10.1166/jnn.2006.603

Keywords

multiwalled carbon nanotube; composites; sol-gel; hot-pressing; microstructure; electrical properties

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dMultiwalled carbon nanotube (MWCNT)-fused silica composite powders were synthesized by sol-gel method and dense bulk composites were successfully fabricated via hot-pressing. This composite was characterized by XRD, HRTEM, and FESEM. MWCNTs in the hot-pressed composites are in their integrity observed by HRTEM. The electrical properties of MWCNT-fused silica composites were measured and analyzed. The electrical resistivity was found to decrease with the increase in the amount of the MWCNT loading in the composite. When the volume percentage of the MWCNTs increased to 5 vol%, the electrical resistivity of the composite is 24.99 ohm (.) cm, which is a decrease of twelve orders of value over that of pure fused silica matrix. The electrical resistivity further decreases to 1.742 ohm (.) cm as the concentration of the MWCNTs increased to 10 vol%. The dielectric properties of the composites were also measured at the frequency ranging from 12.4 to 17.8 GHz (Ku band) at room temperature. The experimental results reveal that the dielectric properties are extremely sensitive to the volume percentage of the MWCNTs, and the permittivities, especially the imaginary permittivities, increase dramatically with the increase in the concentration of the MWCNTs. The improvement of dielectric properties in high frequency region mainly originates from the greatly increasing electrical properties of the composite.

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