Abstract
A gelatin/graphene composite has been analyzed by means of current density-voltage and the electrical impedance measurements. The DC electrical behavior has been interpreted in terms of an equivalent Thévenin model taking into account the open circuit voltage and the series resistance. A model based on the effect of the electrical double layer and on the diffusion of the charge carriers is used for the analysis of the experimental data, obtained in the frequency domain. The model reveals for any applied voltages a marked diffusion process at low frequencies. In particular, where the charge transfer mechanism is dominant, the time distribution of the reaction rates reveals that several multiple step reactions occur in the materials, especially at high values of the applied forward bias voltages.
Cite
CITATION STYLE
Landi, G., Sorrentino, A., Iannace, S., & Neitzert, H. C. (2015). Electrical Characterization and Modeling of a Gelatin/Graphene System. Advances in Condensed Matter Physics, 2015. https://doi.org/10.1155/2015/107957
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