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Graphene oxide-containing isocyanate-based polyimide foams: Enhanced thermal stability and flame retardancy
Authors:Mustafa Çakir  Volkan K?l?ç  Yalç?n Boztoprak  Fadime Karaer Özmen
Affiliation:1. Department of Metallurgy and Materials Engineering, Marmara University, Istanbul, Turkey;2. Department of Environmental Engineering, Eski?ehir Technical University, Eski?ehir, Turkey
Abstract:Isocyanate-based graphene oxide-containing polyimide foams were synthesized by a semi-prepolymer method. In this method, while the first solution containing pre-polymer was derived from pyromellitic dianhydride and excess polymethylene polyphenylene isocyanate (PM200), the second solution contains dianhydride derivatives, water, catalysts, surfactants, and graphene oxide. PIFs were prepared with 0%, 0.25%, 0.50%, 0.75%, and 1% graphene oxide by weight, respectively. PIFs exhibited a minimum side reaction and urea generation was not seen for all PIFs instead of imide bonding. The addition of graphene oxide (GO) leads to a more close-packed structure. Therefore, crosslinking density and thermal stability of graphene oxide-containing polyimide foams increased. Upon the addition of 1% GO, almost seven times higher compression strength was obtained compared to neat PIFs. Also, LOI values supported the theory that thermally stable and flame retardant PIFs can be synthesized via the isocyanate-based process with GO.
Keywords:foams  graphene  graphene oxide  mechanical properties  nanomaterials  polyimides  thermal properties
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