Flexible supercapacitor based on polyaniline nanowires/carbon cloth with both high gravimetric and area-normalized capacitance |
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Authors: | Ying-Ying Horng Yi-Chen Lu Yu-Kuei Hsu Li-Chyong Chen Kuei-Hsien Chen |
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Affiliation: | a Department of Chemistry, National Taiwan Normal University, Taipei 106, Taiwan b Center for Condensed Matter Sciences, National Taiwan University, 1 Roosevelt Road, Section 4, Taipei 106, Taiwan c Institute of Atomic and Molecular Sciences, Academia Sinica, Taipei 106, Taiwan |
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Abstract: | Flexible supercapacitor is successfully fabricated using polyaniline nanowires/carbon cloth (PANI-NWs/CC) nanocomposite. High gravimetric capacitance of 1079 F g−1 at a specific energy of 100.9 Wh kg−1 and a specific power of 12.1 kW kg−1 is obtained. Moreover, this approach also offers an exceptionally high area-normalized capacitance of 1.8 F cm−2. The diffusion length of protons within the PANI-NWs is estimated to be about 60 nm by electrochemical impedance analysis, which indicates that the electrochemical performance of the electrode is not limited by the thickness of PANI-NWs. The electrochemical performance of PANI-NWS/CC remains without any deterioration, even when the cell is bent under high curvature. These results clearly present a cost-effective and simple method of fabrication of the nanostructured polymers with enormous potential in flexible energy storage device applications. |
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Keywords: | Supercapacitor Polyaniline nanowires Area-normalized capacitance |
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