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Updated: Sep 24, 2025

Evaluating the Electrochemical Properties of Supercapacitors using the Three-Electrode System
Published on: January 7, 2022
Electrochemical properties of TiO /rGO composite as an electrode for supercapacitors
Retno Maharsi1, Aditya Farhan Arif2, Takashi Ogi3
1National Center for Sustainable Transportation Technology (NCSTT), Intitut Teknologi Bandung Jl. Ganesa No. 10 Bandung 40132 Indonesia ferry@fi.itb.ac.id.
Abstract:
Transition metal oxides are known as the active materials for capacitors. As a class of transition metal oxide, Magnéli phase TiO is particularly attractive because of its excellent conductivity. This work investigated the electrochemical characteristics of TiO and its composite with reduced graphene oxide (rGO). Two types of TiO , i.e. low and high reduction extent, were employed in this research. Electrochemical impedance spectroscopy revealed that TiO with lower reduction extent delivered higher electro-activity and charge transfer resistance at the same time. However, combining 10% of low-reduction state TiO and rGO using a simple mixing process delivered a high specific capacitance (98.8 F g-1), which was higher than that of standalone rGO (49.5 F g-1). A further improvement in the specific capacitance (102.6 F g-1) was given by adding PEDOT:PSS conductive polymer. Results of this research gave a basic understanding in the electrochemical behavior of Magnéli phase TiO for the utilization of this material as supercapacitor in the future.
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