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Mechanical and Thermal Properties of Thermoset–Graphene Nanocomposites
Authors:Haleema Saleem  Anjali Edathil  Thamsanqa Ncube  Jeewan Pokhrel  Sara Khoori  Akhil Abraham  Vikas Mittal
Affiliation:Department of Chemical Engineering, The Petroleum Institute, Abu Dhabi, UAE
Abstract:Graphene has resulted in significant research effort to generate polymer nanocomposites with improved mechanical, thermal as electrical properties as compared to pure polymers. A large number of studies have been undertaken using different graphene derivatives, filler loadings, synthesis methods, and so on to obtain optimum filler dispersion as well as filler–matrix interactions, which are crucial for achieving significant enhancement in the properties, especially at low filler fraction. This review summarizes the mechanical and thermal properties of numerous studies carried out for the property enhancements of commercially relevant thermosetting materials such as epoxy, polyurethane, natural rubber, melamine formaldehyde, phenol formaldehyde, silicones, vinyl ester, cyanate ester, and unsaturated polyester resin.
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Keywords:graphene  in situ synthesis  interfacial interaction  modulus  thermal stability  surface functionalization
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