• Title of article

    Graphene/polyethylene nanocomposites: Effect of polyethylene functionalization and blending methods

  • Author/Authors

    Kim، نويسنده , , Hyunwoo and Kobayashi، نويسنده , , Shingo and AbdurRahim، نويسنده , , Mohd A. and Zhang، نويسنده , , Minglun J. and Khusainova، نويسنده , , Albina and Hillmyer، نويسنده , , Marc A. and Abdala، نويسنده , , Ahmed A. and Macosko، نويسنده , , Christopher W.، نويسنده ,

  • Issue Information
    دوهفته نامه با شماره پیاپی سال 2011
  • Pages
    10
  • From page
    1837
  • To page
    1846
  • Abstract
    Since its recent successful isolation, graphene has attracted an enormous amount of scientific interest due to its exceptional physical properties. Graphene incorporation can improve electrical and mechanical properties of polymers including polyethylene (PE). However, the hydrophobic nature and low polarity of PE have made effective dispersion of nano-fillers difficult without compatibilization. Graphene was derived from graphite oxide (GO) via rapid thermal exfoliation and reduction. This thermally reduced graphene oxide (TRG) was blended via melt and solvent blending with linear low density PE (LLDPE) and its functionalized analogs (amine, nitrile and isocyanate) produced using a ring-opening metathesis polymerization (ROMP) strategy. TRG was well exfoliated in functionalized LLDPE while phase separated morphology was observed in the un-modified LLDPE. Transmission electron micrographs showed that solvent based blending more effectively dispersed these exfoliated carbon sheets than did melt compounding. Tensile modulus was higher for composites with functionalized polyethylenes when solvent blending was used. However, at less than 3 wt.% of TRG, electrical conductivity of the un-modified LLDPE was higher than that of the functionalized ones. This may be due to phase segregation between graphene and PE, and electrical percolation within the continuous filler-rich phase.
  • Keywords
    Polymer nanocomposites , graphene , Polyethylene
  • Journal title
    Polymer
  • Serial Year
    2011
  • Journal title
    Polymer
  • Record number

    1737291