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Supercapacitors using Binderless Activated Carbon Monoliths Electrodes consisting of a Graphite Additive and Pre-carbonized Biomass Fibers

机译:使用由石墨添加剂和预碳化生物质纤维组成的无粘结剂活性炭整体电极的超级电容器

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Varying amounts of graphite powder (0 to 20 wt%) are mixed as an additive with self-adhesive carbon grains, which are produced from pre-carbonized powder derived from the fibers of oil palm empty fruit bunches, a by-product from palm oil mills. The mixtures are treated with KOH and converted into green monoliths (GMs). The GMs are carbonized and activated via a multistep heating profile to produce activated carbon monolith (ACM) electrodes. X-ray diffraction, field emission scanning electron microscopy and nitrogen adsorption-desorption isotherm analysis demonstrate that the addition of graphite influences the structure, microstructure and porosity of the ACM electrode materials. Electrochemical impedance spectroscopy, cyclic voltammetry and galvanostatic charge- discharge studies show that the best frequency response of the electrodes is obtained using 4 wt% of graphite. A tremendous decrease in the equivalent series resistance (~70%) and response time (~87%) leads to an improvement of specific power by 39 % and an 8-fold increase in the maximum operating frequency (from ~0.13 Hz to ~1 Hz). Furthermore, the cells incorporating the electrodes with 4 wt% of graphite retain 50% of their capacitance up to 1 Hz. These findings show that the cheap graphite powder can be a useful additive for preparing supercapacitor electrodes from activated carbon.
机译:各种量的石墨粉(0至20重量%)作为添加剂与自粘碳粒混合,这些自粘碳粒是由油棕空果串(棕榈油的副产品)的预碳化粉末制成的米尔斯。将混合物用KOH处理并转化为绿色整体(GM)。 GM通过多步加热曲线碳化并活化,以生产活性炭整体(ACM)电极。 X射线衍射,场发射扫描电子显微镜和氮吸附-解吸等温线分析表明,添加石墨会影响ACM电极材料的结构,微观结构和孔隙率。电化学阻抗谱,循环伏安法和恒电流充放电研究表明,使用4 wt%的石墨可获得最佳的电极频率响应。等效串联电阻(〜70%)和响应时间(〜87%)的大幅降低导致比功率提高39%,最大工作频率提高了8倍(从〜0.13 Hz增至〜1)赫兹)。此外,包含电极的电池中含4 wt%的石墨的电池可保持50%的电容,直至1 Hz。这些发现表明,廉价的石墨粉可以作为由活性炭制备超级电容器电极的有用添加剂。

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