JOURNAL ARTICLE

Dielectric Properties of Carbon Nanotubes/Epoxy Composites

Jin-Ping PengHui ZhangLong‐Cheng TangYu JiaZhong Zhang

Year: 2013 Journal:   Journal of Nanoscience and Nanotechnology Vol: 13 (2)Pages: 964-969   Publisher: American Scientific Publishers

Abstract

Material with high dielectric properties possesses the effect of energy storage and electric field homogenization, which plays an important role in the electrical and electronics domain, especially in the capacitor, electrical machinery and cable realm. In this paper, epoxy-based nanocomposites with high dielectric constant were fabricated by adding pristine and ozone functionalized multi-wall carbon nanotubes (MWCNTs). In the process-related aspect, the favorable technological parameter was obtained via reasonable arrangement and consideration of the dispersing methods including high-speed stirring and three-roller mill. As a result, a uniform dispersion status of MWCNTs in matrix has been guaranteed, which was observed by scanning and transmission electron microscopy. Meanwhile, the influence of different MWCNTs contents and diverse frequencies on the dielectric properties was compared. It was found that the dielectric constant of nano-composites decreased gradually with the increasing of frequency (10(3)-10(6) Hz). Moreover, as the content of MWCNTs increasing, the dielectric constant reached to a maximum of about 1,328 at 10(3) Hz when the pristine MWCNTs content was 0.5 wt.%. Accordingly, the DC conductivity results could interpret the peak value phenomenon by percolation threshold of MWCNTs. In addition, at the fixed content, the dielectric constant of epoxy-based nano-composites with ozone functionalized MWCNTs was lower than that of pristine ones.

Keywords:
Materials science Dielectric Composite material Carbon nanotube Epoxy Nanocomposite Percolation threshold Dielectric loss Electrical resistivity and conductivity

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Topics

Dielectric materials and actuators
Physical Sciences →  Engineering →  Biomedical Engineering
High voltage insulation and dielectric phenomena
Physical Sciences →  Materials Science →  Materials Chemistry
Smart Materials for Construction
Physical Sciences →  Environmental Science →  Pollution
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