Polymer-Plastics Technology and Engineering · 2014 · 26 citations · 51 references
EngineeringPolypropylene NanocompositesMechanical EngineeringNanostructured PolymerPolymer NanocompositesConducting PolymerChemical EngineeringPolymer MaterialCarbon-based MaterialPolymer Nanostructured MaterialsTensile PropertiesPolymer CompositesPpy NanoparticlesPp NanocompositesPolymer ChemistryTensile StrengthMaterials SciencePolypyrrole/graphene Oxide NanoparticlesPolymer BlendPolymer Nanostructured CompositesNanomaterialsPolymer ScienceGrapheneNanocompositeFunctional Materials
In this article Polypropylene/Polypyrrole (PP/PPy) and Polypropylene/polypyrrole-graphene oxide (PP/PPy-GO) nanocomposites were prepared by melt mixing. PPy nanoparticles and PPy-GO nanocomposite were prepared by chemical polymerization and served as nanofillers. FTIR, XRD and SEM analysis were used for the characterization of PPy and PPy-GO composites. The effects of PPy and PPy-GO loading level on the morphology, tensile and electrical properties of PP-based nanocomposites were examined. It was found that the Young's modulus and tensile strength increased with the increase of nanofiller content. Tensile results also showed that PPy-GO composite significantly affected the mechanical properties of PP based nanocomposites compared to the PPy nanoparticles. It was observed that the addition of 1% wt. PPy-GO into PP, increased the Young's modulus about 30% compared as with pure PP. Electrical conductivity measurements showed that conductivity of PP nanocomposites increased up to 1 × 10−3 S/cm for PP/PPy-GO nanocomposites. It was also observed that PP-g-MA improved the distribution of PPy and PPy-GO nanocomposites and affected the morphology, electrical and mechanical properties of PP-based nanocomposites.
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A simple chemical method of opening and filling carbon nanotubes
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