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Ion-Liquid Based Supercapacitors with Inner Gate Diode-Like Separators

机译:离子液体基超级电容器,带有内栅二极管之类的隔板

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In order to minimize unintentional discharge, supercapacitors are interfaced with a membrane that separates the anode from the cathode—this membrane is called the separator. We focus here on separators, which are structured as electronic diode-like. We call an electrically structured separator “the gate”. Through experiments, it was demonstrated that ionic liquid-filled supercapacitors, which were interfaced with gated separators exhibited a substantial capacitance (C) increase and reduction in the equivalent series resistance (ESR) compared to cells with ordinary separators. These two attributes help to increase the energy, which is stored in a cell, since for a given cell’s voltage, the dissipated energy on the cell, UR = V2/4(ESR) and the stored energy, UC = CV2/2, would increase. These were indeed ionic diodes since the order of the diode layout mattered—the diode-like structures exhibited maximum capacitance when their p-side faced the auxiliary electrode.
机译:为了最大程度地减少意外放电,超级电容器与将阳极与阴极分开的膜(该膜称为隔板)连接。在这里,我们将重点放在隔板上,隔板的结构类似于电子二极管。我们称电隔离器为“门”。通过实验证明,与带有普通隔板的电池相比,与门控隔板相连的离子液体填充超级电容器表现出相当大的电容(C)增大和等效串联电阻(ESR)减小。这两个属性有助于增加存储在单元中的能量,因为对于给定的单元电压,该单元上的耗散能量UR = V2 / 4(ESR),而存储的能量UC = CV2 / 2增加。这些确实是离子二极管,因为二极管布局的顺序很重要-当类似二极管的结构的p侧面对辅助电极时,它们表现出最大的电容。

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