24 Dielectric Properties and AC Conductivity of Epoxy/Hybrid Nanocarbon. . .
393
32. Wu C, Huang X, Wang G, Wu X, Yang K, Lib S, Jiang P (2012) Hyperbranched-polymer
functionalization of graphene sheets for enhanced mechanical and dielectric properties of
polyurethane composites. J Mater Chem 22:7010
33. Liu L, Grunlan JC (2007) Clay assisted dispersion of carbon nanotubes in conductive epoxy
nanocomposites. Adv Funct Mater 17(14):2343–2348
34. Zhang X, Liang G, Chang J, Gu A, Li Y, Zhang W (2012) The origin of the electric and
dielectric behavior of expanded graphite–carbon nanotube/cyanate ester composites with very
high dielectric constant and low dielectric loss. Carbon 50:4995–5007
35. Trihotri M, Dwivedi UK, Malik MM, Khan FH, Qureshi MS (2016) Study of low weight
percentage filler on dielectric properties of MWCNT-epoxy nanocomposites. J Adv Dielectr
6(3):1650024 (9 pages)
393
32. Wu C, Huang X, Wang G, Wu X, Yang K, Lib S, Jiang P (2012) Hyperbranched-polymer
functionalization of graphene sheets for enhanced mechanical and dielectric properties of
polyurethane composites. J Mater Chem 22:7010
33. Liu L, Grunlan JC (2007) Clay assisted dispersion of carbon nanotubes in conductive epoxy
nanocomposites. Adv Funct Mater 17(14):2343–2348
34. Zhang X, Liang G, Chang J, Gu A, Li Y, Zhang W (2012) The origin of the electric and
dielectric behavior of expanded graphite–carbon nanotube/cyanate ester composites with very
high dielectric constant and low dielectric loss. Carbon 50:4995–5007
35. Trihotri M, Dwivedi UK, Malik MM, Khan FH, Qureshi MS (2016) Study of low weight
percentage filler on dielectric properties of MWCNT-epoxy nanocomposites. J Adv Dielectr
6(3):1650024 (9 pages)
