Adel Mohamed Y, Mohammed Omar B, Younis Ahmad T
Electronics Engineering College, Ninevah University, North east side of Mosul University - Stadium Entrance Gate - Mosul University, Mosul, Iraq.
ChemistryOpen. 2025 Jul;14(7):e202400444. doi: 10.1002/open.202400444. Epub 2025 Jan 20.
One of the key parameters that affects efficiency, power density and performance of a supercapacitor (SC) is the equivalent series resistance (ESR). In this study we propose a method to estimate ESR from the charging kinetics which has practical applications. Therefore, to study the ESR of the SC we must look at the different factors that affect this resistance. In this study, the rise time extracted from the charging kinetics curves of the SC was used as an indirect method to investigate the ESR of the SC. Three different parameters were taken into account: ionic mobility, solvent material and pore cavity size of the porous electrode. The results offer enlightening information for optimizing the design of the SC with higher performance and smaller ESR values that will be translated into a better energy storage technologies.
影响超级电容器(SC)效率、功率密度和性能的关键参数之一是等效串联电阻(ESR)。在本研究中,我们提出了一种从充电动力学估算ESR的方法,该方法具有实际应用价值。因此,为了研究超级电容器的ESR,我们必须考察影响该电阻的不同因素。在本研究中,从超级电容器充电动力学曲线中提取的上升时间被用作研究超级电容器ESR的间接方法。考虑了三个不同参数:离子迁移率、溶剂材料和多孔电极的孔腔尺寸。研究结果为优化超级电容器设计提供了有启发性的信息,以实现更高性能和更小ESR值,这将转化为更好的储能技术。