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Activated Carbon Electrode Made From Coconut Husk Waste For Supercapacitor Application
Activated carbon electrode was produced from coconut husk by using a combination of physical and chemical activation methods. Potassium hydroxide (KOH) was used as an activator during chemical activation while carbon dioxide gas (CO2) was used as an activator during physical activation in range of 7...
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Published in: | International journal of electrochemical science 2018-12, Vol.13 (12), p.12072-12084 |
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Main Authors: | , , , , |
Format: | Article |
Language: | English |
Subjects: | |
Citations: | Items that this one cites Items that cite this one |
Online Access: | Get full text |
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Summary: | Activated carbon electrode was produced from coconut husk by using a combination of physical and chemical activation methods. Potassium hydroxide (KOH) was used as an activator during chemical activation while carbon dioxide gas (CO2) was used as an activator during physical activation in range of 750-900 °C. The physical properties of the carbon electrode was characterized by determining the density, thermogravimetry analysis, degree of microcrystallinity, surface morphology, chemical components and surface area. The crystallinity, surface morphology, and chemical content of the carbon electrode was determined by X-ray Diffraction, Scanning Electron Microscopy, and Energy Dispersive Spectroscopy. The electrochemical properties of the electrodes were reviewed by using a two-electrode system while the capacitive properties of the electrodes was determined using cyclic voltammetry. The high temperature of the physical activation resulted in the complete evaporation of volatile biomass, thereby increasing the carbon content and surface area (from 823 m2 g-1 to 1033.20 m2 g-1) of the electrodes. In addition, the increase in the physical activation temperature shows the presence of nanofibers in the morphology of the surface electrode. The electrochemical properties of the electrode showed excellent capacitive properties of a supercapacitor cell, with a very high specific capacitance of 184 F g-1. |
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ISSN: | 1452-3981 1452-3981 |
DOI: | 10.20964/2018.12.19 |