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Enhanced Dielectric Performance in Polymer Composite Films with Carbon Nanotube‐Reduced Graphene Oxide Hybrid Filler
Authors:Jin‐Young Kim  TaeYoung Kim  Ji Won Suk  Harry Chou  Ji‐Hoon Jang  Jong Ho Lee  Iskandar N. Kholmanov  Deji Akinwande  Rodney S. Ruoff
Affiliation:1. Department of Mechanical Engineering and The Materials Science and Engineering Program, The University of Texas at Austin, , Austin, TX, 78712 USA;2. Department of Bionanotechnology, , Seongnam, 461–701 Republic of Korea;3. School of Mechanical Engineering, , Suwon, 440–746 Republic of Korea;4. Department of Electrical and Computer Engineering, Microelectronics Research Center, The University of Texas at Austin, , Austin, TX, 78758 USA
Abstract:The electrical conductivity and the specific surface area of conductive fillers in conductor‐insulator composite films can drastically improve the dielectric performance of those films through changing their polarization density by interfacial polarization. We have made a polymer composite film with a hybrid conductive filler material made of carbon nanotubes grown onto reduced graphene oxide platelets (rG‐O/CNT). We report the effect of the rG‐O/CNT hybrid filler on the dielectric performance of the composite film. The composite film had a dielectric constant of 32 with a dielectric loss of 0.051 at 0.062 wt% rG‐O/CNT filler and 100 Hz, while the neat polymer film gave a dielectric constant of 15 with a dielectric loss of 0.036. This is attributed to the increased electrical conductivity and specific surface area of the rG‐O/CNT hybrid filler, which results in an increase in interfacial polarization density between the hybrid filler and the polymer.
Keywords:carbon nanotube  chemical vapor deposition  dielectric performance  polymer composite film  reduced graphene oxide
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