In this study, the nanocomposite films of polyvinylidene fluoride (PVDF) / reduced graphene oxide (RGO) were prepared by mixing of reduced graphene oxide in a solution of dimethyl formamide and polyvinylidene fluoride. The prepared nanocomposites were investigated by X-ray diffraction (XRD) analysis, showed an obvious α- to β-phase transformation compared to pure PVDF. SEM images showed spherulitic crystal structure of PVDF. The spherulitic morphology of the pure PVDF is maintained for the PVDF nanocomposites. Also the thermal behavior of PVDF/RGO nanocomposite films have been investigated by employing thermogravimetric analysis (TGA) which showed higher thermal stability of PVDF nanocomposite after loading of RGO than pure PVDF.
Jaleh,B , Jabbari,A and Muensit,N . (2014). Thermal properties and dielectric permittivity of PVDF/reduced graphene oxide nanocomposite film. (e187). Innovations in Materials: Current & Future, 1.(1), e187 doi: 10.22075/ancr.2014.187
MLA
Jaleh,B , , Jabbari,A , and Muensit,N . "Thermal properties and dielectric permittivity of PVDF/reduced graphene oxide nanocomposite film" .e187 , Innovations in Materials: Current & Future, 1., 1, 2014, e187. doi: 10.22075/ancr.2014.187
HARVARD
Jaleh B, Jabbari A, Muensit N. (2014). 'Thermal properties and dielectric permittivity of PVDF/reduced graphene oxide nanocomposite film', Innovations in Materials: Current & Future, 1.(1), e187. doi: 10.22075/ancr.2014.187
CHICAGO
B Jaleh, A Jabbari and N Muensit, "Thermal properties and dielectric permittivity of PVDF/reduced graphene oxide nanocomposite film," Innovations in Materials: Current & Future, 1. 1 (2014): e187, doi: 10.22075/ancr.2014.187
VANCOUVER
Jaleh B, Jabbari A, Muensit N. Thermal properties and dielectric permittivity of PVDF/reduced graphene oxide nanocomposite film. IMCF. 2014;1.(1):e187. doi: 10.22075/ancr.2014.187