Flexible Manganese Oxide Electrode Fabricated with Heat‐Treated Buckypaper for Supercapacitor
With the emergence of new technologies, wearable and portable devices become essential tools for various applications, which are flexibly designed. In this situation, flexible supercapacitors with fast charge and discharge cycles are needed as their power source. This study introduces the flexible p...
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Veröffentlicht in: | International journal of energy research 2024-01, Vol.2024 (1) |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | With the emergence of new technologies, wearable and portable devices become essential tools for various applications, which are flexibly designed. In this situation, flexible supercapacitors with fast charge and discharge cycles are needed as their power source. This study introduces the flexible pseudocapacitor electrode fabricated by electrodeposition of manganese oxide (MnO 2 ) onto heat‐treated hydrophilic buckypaper (BP) molded on polydimethylsiloxane (PDMS). Here, the heat treatment of BP that is optimized by a proper adoption of thermogravimetric analysis is performed to enhance the electrodeposition efficiency of MnO 2 . Then, proper hydrophilicity of the heat‐treated BP (H‐BP) and successful preparation of MnO 2 /H‐BP@PDMS electrode is well confirmed by electrochemical, spectroscopical, and optical measurements. In their evaluations, it is found that heat treatment of BP is more important factor than electrodeposition time to improve the electrodeposition efficiency of MnO 2 under the same aqueous electrolyte. With that, such optimally prepared MnO 2 /H‐BP@PDMS electrode shows a high electrical double layer and excellent specific capacitance of 1.31 F/cm 2 at 1 mA/cm 2 , which are better results than those of other electrodes. |
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ISSN: | 0363-907X 1099-114X |
DOI: | 10.1155/2024/8654961 |