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Effects of electrode layer composition/thickness and electrolyte concentration on both specific capacitance and energy density of supercapacitor

机译:电极层组成/厚度和电解液浓度对超级电容器的特定电容和能量密度的影响

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摘要

In this paper, the effects of several experimental conditions, such as electrode layer binder content, conducting carbon content, electrode layer thickness, as well as electrolyte concentration, on both the specific capacitance and energy density of a BP2000 carbon-based supercapacitor are investigated using both cyclic voltammetry and a galvanic chargingu2013discharging curve. The electrode layer studied contains Super C45 carbon as the conducting additive, PTFE as the binder, and Na2SO4 as the aqueous electrolyte, respectively. With the purpose of optimizing the electrode layer structure, 15 wt% of Super C45 and 5 wt% of PTFE in the electrode layer with a thickness of 100 u3bcm, are found to be the best composition in terms of improving both specific capacitance and energy density. Regarding the effect of electrolyte concentration in the range of 0.1u20131.0 M, 0.5 M of Na2SO4 gives the best performance.
机译:研究了几种实验条件的影响,例如电极层粘合剂含量,导电碳含量,电极层厚度以及电解质浓度,在BP2000基于碳的超级电容器的特定电容和能量密度上进行研究循环伏安法和电流充电 U2013Dis收集曲线。研究的电极层含有超级C45碳作为导电添加剂,作为粘合剂的PTFE和Na 2 SO 4分别为含水电解质。在优化电极层结构的目的,在具有厚度为100℃的电极层中的15wt%的超级C45和5wt%的PTFE,发现是改善特定电容和能量方面的最佳组合物密度。关于电解质浓度在0.1℃的范围内的影响,0.5M Na 2 SO 4提供了最佳性能。

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