Oladipo FolorunsoYskandar HamamEmmanuel Rotimi SadikuSuprakas Sinha RayNeeraj Kumar
In this study, a hybrid of graphene nanoplatelets with a polypyrrole having 20 wt.% loading of carbon-black (HGPPy.CB20%), has been fabricated. The thermal stability, structural changes, morphology, and the electrical conductivity of the hybrids were investigated using thermogravimetric analyzer, differential scanning calorimeter, X-ray diffraction analyzer, scanning electron microscope, and laboratory electrical conductivity device. The morphology of the hybrid shows well dispersion of graphene nanoplatelets on the surface of the PPy.CB20% and the transformation of the gravel-like PPy.CB20% shape to compact spherical shape. Moreover, the hybrid’s electrical conductivity measurements showed percolation threshold at 0.15 wt.% of the graphene nanoplatelets content and the curve is non-linear. The electrical conductivity data were analyzed by comparing different existing models (Weber, Clingerman and Taherian). The results show that Taherian and Clingerman models, which consider the aspect ratio, roundness, wettability, filler electrical conductivity, surface interaction, and volume fractions, closely described the experimental data. From these results, it is evident that Taherian and Clingerman models can be modified for better prediction of the hybrids electrical conductivity measurements. In addition, this study shows that graphene nanoplatelets are essential and have a significant influence on the modification of PPy.CB20% for energy storage applications.
Oladipo FolorunsoYskandar HamamEmmanuel Rotimi SadikuSuprakas Sinha RayGbolahan Joseph Adekoya
Salma BilalAkhtar Ali ShahAnwar‐ul‐Haq Ali ShahHajera GulWahid UllahSalma Gul
Oladipo FolorunsoYskandar HamamEmmanuel Rotimi SadikuSuprakas Sinha Ray
Ke ChuWensheng LiHongfeng DongFuling Tang
Ke ChuWen-sheng LiHong-feng DongFu-ling Tang