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Supercapacitor Electrode Based on Activated Carbon Wool Felt

机译:基于活性炭羊毛毡的超级电容器电极

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An electrical double-layer capacitor (EDLC) is based on the physical adsorption/desorption of electrolyte ions onto the surface of electrodes. Due to its high surface area and other properties, such as electrochemical stability and high electrical conductivity, carbon materials are the most widely used materials for EDLC electrodes. In this work, we study an activated carbon felt obtained from sheep wool felt (ACF’f) as a supercapacitor electrode. The ACF’f was characterized by elemental analysis, scanning electron microscopy (SEM), textural analysis, and X-ray photoelectron spectroscopy (XPS). The electrochemical behaviour of the ACF’f was tested in a two-electrode Swagelok ? -type, using acidic and basic aqueous electrolytes. At low current densities, the maximum specific capacitance determined from the charge-discharge curves were 163 F·g ?1 and 152 F·g ?1 , in acidic and basic electrolytes, respectively. The capacitance retention at higher current densities was better in acidic electrolyte while, for both electrolytes, the voltammogram of the sample presents a typical capacitive behaviour, being in accordance with the electrochemical results.
机译:双电层电容器(EDLC)基于电解质离子在电极表面上的物理吸附/解吸。由于其高表面积和其他特性,例如电化学稳定性和高电导率,碳材料是用于EDLC电极的最广泛使用的材料。在这项工作中,我们研究了从羊毛毡(ACF’f)获得的活性炭毡作为超级电容器电极。 ACF’f的特征在于元素分析,扫描电子显微镜(SEM),组织分析和X射线光电子能谱(XPS)。 ACF’f的电化学行为在两电极Swagelok?中测试。型,使用酸性和碱性水性电解质。在低电流密度下,在酸性和碱性电解质中,由充放电曲线确定的最大比电容分别为163 F·g?1和152 F·g?1。在酸性电解液中,较高电流密度下的电容保持性能更好,而对于两种电解液,样品的伏安图均表现出典型的电容行为,这与电化学结果一致。

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