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Modification of the oxygen-containing functional group on activated carbon fiber in electrodes of an electric double-layer capacitor

机译:双电层电容器电极中活性炭纤维上含氧官能团的修饰

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In order to discuss quantitatively the effect of functional groups of activated carbon fibers (ACFs) on electric double-layer characteristics, ACFs with various amounts of functional groups were prepared from the same ACF by redox methods. The amount of functional groups of ACFs was compared between the method by back titration and by X-ray photoelectron spectroscopy (XPS). In the case of the aqueous electrolyte, the electric capacity depended more on oxygen functional groups than on BET surface area. At the greatest 30 percent of increase in electric capacity was obtained by using ACFs with different amount of oxygen functional groups between the positive electrode and the negative one. It was considered that a larger number of functional group promotes not only the wettability of electrodes but also the negative charge of electrodes leading to an increase in capacity. On the other hand, in the case of the organic electrolyte, pore structure seemed to be a more dominant factor than functional group. Also, the characteristics of the electrodes after 30,000-cycle charge-discharge were determined to confirm the reliability in an extended cycle operation. A significant increase in phenolic hydroxyl group was confirmed on the positive electrode.
机译:为了定量讨论活性炭纤维(ACF)的官能团对双电层特性的影响,通过氧化还原法从同一ACF制备了具有各种官能团的ACF。通过反滴定法和X射线光电子能谱(XPS)在方法之间比较了ACFs的官能团数量。在水性电解质的情况下,电容量更多地取决于氧官能团而不是BET表面积。通过使用在正极和负极之间具有不同数量的氧官能团的ACF,可以最大程度地提高电容量的30%。认为大量的官能团不仅促进电极的润湿性,而且促进电极的负电荷,从而导致容量增加。另一方面,在有机电解质的情况下,孔结构似乎是比官能团更主要的因素。另外,测定了30,000次循环充放电后的电极特性,以确认在延长循环操作中的可靠性。在正极上确认了酚羟基的显着增加。

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