Synthesis and enhanced electrochemical supercapacitor properties of Ag-MnO sub(2)-polyaniline nanocomposite electrodes

Ternary Ag/MnO sub(2)/PANI (silver/manganese oxide/polyaniline) nanocomposite thin films were synthesized for supercapacitor applications using a new synthetic strategy including a pulsed potential electrodeposition technique. The agglomerated nanoscale-vermicular-like structure of the pure PANI is...

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Veröffentlicht in:Energy (Oxford) 2014-06, Vol.70, p.473-477
Hauptverfasser: Kim, Jongmin, Ju, Haeri, Inamdar, Akbar I, Jo, Yongcheol, Han, J, Kim, Hyungsang, Im, Hyunsik
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Sprache:eng
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Zusammenfassung:Ternary Ag/MnO sub(2)/PANI (silver/manganese oxide/polyaniline) nanocomposite thin films were synthesized for supercapacitor applications using a new synthetic strategy including a pulsed potential electrodeposition technique. The agglomerated nanoscale-vermicular-like structure of the pure PANI is converted into more uniform vermicular morphology containing Ag and MnO sub(2). The electrochemical supercapacitor properties of the ternary nanocomposite films are investigated in a 0.5 M LiClO sub(4) + PC electrolyte. The current density of the Ag/MnO sub(2)/PANI nanocomposite film obtained from the CV (cyclic voltammogram) is much higher than that of the pure PANI. Furthermore, the specific capacitance of the ternary Ag/MnO sub(2)/ PANI nanocomposite is calculated to be 621 F/g and 800 F/g from CV and CD (charge-discharge) measurements, respectively. The cycling stability of the ternary nanocomposites (as high as ~83%) is significantly enhanced compared to that of a pure PANI (~66%) sample.
ISSN:0360-5442
DOI:10.1016/j.energy.2014.04.018