TiO2-nanorod decorated carbon nanotubes for high-permittivity and low-dielectric-loss polystyrene composites

Polymer composites with high permittivity and low dielectric loss are highly desirable in electronic and electrical industry. Adding conductive fillers could significantly increase the permittivity of a polymer. However, polymer composites containing conductive fillers often exhibit very high dielec...

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Veröffentlicht in:Composites science and technology 2012-02, Vol.72 (4), p.521-527
Hauptverfasser: Wu, Chao, Huang, Xingyi, Wu, Xinfeng, Yu, Jinhong, Xie, Liyuan, Jiang, Pingkai
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Sprache:eng
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Zusammenfassung:Polymer composites with high permittivity and low dielectric loss are highly desirable in electronic and electrical industry. Adding conductive fillers could significantly increase the permittivity of a polymer. However, polymer composites containing conductive fillers often exhibit very high dielectric loss due to their large electrical conduction or leakage currents. In this work, by engineering TiO2-nanorod-decorated multi-walled carbon nanotubes (TD-CNTs), polystyrene (PS) composite with high permittivity and low dielectric loss have been successfully prepared. The composite containing of 17.2vol.% TD-CNTs has a permittivity of 37 at 1kHz, which is 13.7times higher than that of the pure PS (2.7), while the dielectric loss still remains at a low value below 0.11. The dielectric properties of the composites are closely related to the length of CNTs and the loading level of TiO2-nanorods on the CNT surfaces.
ISSN:0266-3538
1879-1050
DOI:10.1016/j.compscitech.2011.12.014