Studies on electrochemically synthesized polypyrrole (Ppy) thin films for supercapacitor application
In the present study, we prepared polypyrrole thin films by electrochemical polymerization method. The deposited films were characterized by different physical and chemical methods. Structural study was made by FTIR spectroscopy, the surface morphological study was made with the help of Scanning ele...
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Published in | 2013 International Conference on Energy Efficient Technologies for Sustainability pp. 1064 - 1067 |
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Main Authors | , , , , , , , , |
Format | Conference Proceeding |
Language | English |
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IEEE
01.04.2013
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Abstract | In the present study, we prepared polypyrrole thin films by electrochemical polymerization method. The deposited films were characterized by different physical and chemical methods. Structural study was made by FTIR spectroscopy, the surface morphological study was made with the help of Scanning electron microscopy (SEM), the optical study and band gap energy was studied with the help of UV-Vis absorption spectroscopy. Supercapacitor testing was made with the help of cyclic voltammetry in the 0.5 M H 2 SO 4 electrolyte. The SEM picture revealed the formation of well-adherent and cauliflower structure. Electrochemically synthesized Polypyrrole thin film showed the band gap energy value of 1.8 eV. The value of specific capacitance was found to be 540 F/g in the potential window of -0.2 to 0.8 V vis-a-vis SCE in 0.1 M H 2 SO 4 as an electrolyte with the scan rate 25 mV/sec. |
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AbstractList | In the present study, we prepared polypyrrole thin films by electrochemical polymerization method. The deposited films were characterized by different physical and chemical methods. Structural study was made by FTIR spectroscopy, the surface morphological study was made with the help of Scanning electron microscopy (SEM), the optical study and band gap energy was studied with the help of UV-Vis absorption spectroscopy. Supercapacitor testing was made with the help of cyclic voltammetry in the 0.5 M H 2 SO 4 electrolyte. The SEM picture revealed the formation of well-adherent and cauliflower structure. Electrochemically synthesized Polypyrrole thin film showed the band gap energy value of 1.8 eV. The value of specific capacitance was found to be 540 F/g in the potential window of -0.2 to 0.8 V vis-a-vis SCE in 0.1 M H 2 SO 4 as an electrolyte with the scan rate 25 mV/sec. |
Author | Shinde, S. K. Chougale, U. M. Rath, M. C. Kadam, A. B. Han, S. H. Fulari, V. J. Dhasade, S. S. Lohar, G. M. Thombare, J. V. |
Author_xml | – sequence: 1 givenname: J. V. surname: Thombare fullname: Thombare, J. V. organization: Dept. of Phys., Shivaji Univ., Kolhapur, India – sequence: 2 givenname: G. M. surname: Lohar fullname: Lohar, G. M. organization: Dept. of Phys., Shivaji Univ., Kolhapur, India – sequence: 3 givenname: S. K. surname: Shinde fullname: Shinde, S. K. organization: Dept. of Phys., Shivaji Univ., Kolhapur, India – sequence: 4 givenname: U. M. surname: Chougale fullname: Chougale, U. M. organization: Dept. of Phys., Shivaji Univ., Kolhapur, India – sequence: 5 givenname: V. J. surname: Fulari fullname: Fulari, V. J. organization: Dept. of Phys., Shivaji Univ., Kolhapur, India – sequence: 6 givenname: A. B. surname: Kadam fullname: Kadam, A. B. organization: Dept. of Chem., Javahar Mahavidyalaya, Andhur, India – sequence: 7 givenname: S. S. surname: Dhasade fullname: Dhasade, S. S. organization: Dept. of Phys., Vidnyan Mahavidyalaya, Sangola, India – sequence: 8 givenname: M. C. surname: Rath fullname: Rath, M. C. organization: Radiat. & Photochem. Div., BARC, Mumbai, India – sequence: 9 givenname: S. H. surname: Han fullname: Han, S. H. organization: Dept. of Chem., Hanyang Univ., Seoul, South Korea |
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Snippet | In the present study, we prepared polypyrrole thin films by electrochemical polymerization method. The deposited films were characterized by different physical... |
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SubjectTerms | electrochemical polymerization method FTIR spectroscopy Integrated optics Manganese Optical films Optical surface waves Photonics Polymers Scanning electron microscopy supercapacitor Surface morphology UV-Vis absorption spectroscopy |
Title | Studies on electrochemically synthesized polypyrrole (Ppy) thin films for supercapacitor application |
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