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handle: 10261/167801
Graphene materials (GMs) are deeply studied as nanoreinforcements of polymer matrices, especially for epoxy matrices. Here, we analyze the effect of GMs on the transport properties of a poly(bisphenol A-co-epichlorohydrin) resin. In particular, we focus on the effect of the morphology, chemical composition and structure of different GMs obtained by varying the reduction temperature of the thermal/exfoliation treatment of graphite oxide synthesized by a modified Hummers method. The dispersion degree of the GMs was studied by microscopy techniques, showing a strong dependence on the specific surface area and chemical composition of the graphene material. The transport properties imposed different requirements on GMs. The thermal conductivity benefited from a high aromatic restoration. Meanwhile, the electrical conductivity required the right balance of filler/matrix interaction and aromatic restoration.
The authors gratefully acknowledge the financial support of the MINECO, Spain, through the project MAT2013-48107-C3. R. Sánchez- Hidalgo thanks to MINECO, Spain for the Predoctoral grant BES-2014- 070802.
Peer Reviewed
Epoxy, Transport properties, Polymer nanocomposites, Graphene
Epoxy, Transport properties, Polymer nanocomposites, Graphene
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