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- W2904171454 abstract "Nanocarbons (nanodiamond, graphene, fullerene, carbon nanotube, carbon black, etc.) possess range of tailorable advantageous chemical and physical properties owing to their nanosize, unique dimensionality, surface area, aspect ratio, electronic, and nanostructural aspects. This chapter emphasizes the significance of different carbon nanofillers in the enhancement of electrical properties of polymeric nanocomposites. Numerous thermoplastics as well as thermosetting polymers have been reinforced with these nanofillers using different processing techniques (solution, melt, in situ, etc.). Percolation subjugated electrical conductivity has been experiential in polymer/nanocarbon nanocomposites. Conducting pathways are usually generated in matrix due to network formation tendency of nanofillers. Percolation threshold significantly below <0.1% has been observed using optimum nanocarbon type, nanofiller content, nanocarbon functionalization, choice of processing technique, dispersion in matrix, and other processing parameters. Moreover, synergistic effect of polymer and nanocarbon and mutual network formation are accountable for the formation of highly conducting nanocomposites. Technological applications of electrically conducting high performance polymer/nanocarbon nanocomposites range from aerospace and electronics to biomedical." @default.
- W2904171454 created "2018-12-22" @default.
- W2904171454 creator A5034857939 @default.
- W2904171454 creator A5052000407 @default.
- W2904171454 date "2019-01-01" @default.
- W2904171454 modified "2023-10-18" @default.
- W2904171454 title "Electrical Conductivity Behavior of Polymer Nanocomposite with Carbon Nanofillers" @default.
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- W2904171454 doi "https://doi.org/10.1016/b978-0-12-812541-0.00003-3" @default.
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