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Investigation on Self-Discharge Mechanism of Neutral Aqueous Electrolyte Based Electric Double Layer Supercapacitor

机译:中性水电解质电解双层超级电容器自放电机理研究

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Supercapacitors are capable of holding electrical charges that are much larger than conventional dielectric capacitors. A supercapacitor was constructed using active carbon electrodes, deposited on metal current collectors and they were separated by a non-conducting membranes soaked in an electrolyte. An electrical double layer is developed at the interface between active carbon and the electrolyte. The electrical properties of constructed capacitors were investigated to identify the drawbacks of these systems. Self-discharge has been an inescapable issue of electrical double layer type super capacitors and it reduces cell voltage of the capacitor. The data collected from fabricated supercapacitor was used to model the self-discharge behaviour with the aim of understanding the discharge mechanism of these capacitors. It was found that in addition to ohmic leakage mechanism, there is another dominant mechanism.
机译:超级电容器能够保持远大于传统介电电容的电荷。使用活性碳电极构建超级电容器,沉积在金属集电器上,它们通过浸泡在电解质中的非导电膜分离。在活性炭和电解质之间的界面处开发电双层。研究了构造电容器的电性能以识别这些系统的缺点。自放电一直是电双层型超电容的不可避免的问题,降低了电容器的电池电压。由制造的超级电容器收集的数据用于模拟自放电行为,目的是理解这些电容器的放电机构。发现除了欧姆泄漏机制之外,还有另一种主导机制。

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