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Thin polymer films based on poly(vinyl alcohol) containing graphene oxide and reduced graphene oxide with functional properties
Authors:Iman Taraghi  Sandra Paszkiewicz  Izabela Irska  Anna Szymczyk  Amelia Linares  Tiberio A Ezquerra  Magdalena Kurcz  Magdalena Winkowska-Struzik  Ludwika Lipińska  Krystian Kowiorski  Elżbieta Piesowicz
Affiliation:1. Department of Materials Technologies, West Pomeranian University of Technology, Szczecin, Poland;2. Department of Physics, West Pomeranian University of Technology, Szczecin, Poland;3. Macromolecular Physics Department, Instituto de Estructura de la Materia, IEM-CSIC, Madrid, Spain;4. Department of Chemical Synthesis and Flake Graphene, Institute of Electronic Materials Technology, Warsaw, Poland
Abstract:In this article, the effect of the addition of graphene oxide (GO) and reduced graphene oxide (rGO) on the mechanical properties, thermal stability, and electrical conductivity of polyvinyl alcohol (PVA) has been investigated. Different weight percentages of nanofillers ranging from 0.5 to 5 wt% have been combined with PVA. The ultrasonic technique has been applied to disperse nanofillers in the PVA solution. The nanocomposite films have been prepared via solution casting technique and the dispersion of nanofillers into the PVA has been studied through optical microscopy. The microstructure, crystallization behavior, and interfacial interaction were characterized through X-ray diffraction and Fourier transform infrared spectroscopy. Differential scanning calorimetry (DSC) and thermogravimetric analysis have been applied to study the thermal properties of the prepared nanocomposites. The DSC results revealed that the crystallization temperature and melting temperature were enhanced in the presence of GO nanofiller. Besides, the tensile strength at break was improved along with the addition of GO; however, elongation at break for PVA/GO and PVA/rGO was diminished. Moreover, all specimens showed insulating behavior and the only sample was electrically conducting, which contain a high amount of rGO (5 wt%).
Keywords:interfacial interaction  mechanical properties  nanocomposites  thermal properties  thin films
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