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Ionic Liquid-Based Electrolytes for Supercapacitor and Supercapattery

机译:离子液体基超级电容器和超级电容器的电解质

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摘要

There is a strong desire to replace or complement aqueous and organic electrolytes by ionic liquids (ILs) in electrochemical energy storage (EES) devices to achieve high operating voltages and hence high energy capacity. ILs are regarded as the inherent and competitive electrolytes since they were introduced to the electrochemical research community because they can overcome many disadvantages of the conventional aqueous and organic electrolytes, such as narrow potential windows, volatility, and flammability. This paper reviews critically the recent literatures of IL-based electrolytes used in supercapacitor, supercapattery, and micro-supercapacitor. Supercapattery is a generic term for various hybrid devices combining the merits of rechargeable battery and supercapacitor and often shows capacitive behavior. Fundamentals of supercapattery are briefly explained with typical examples. Micro-supercapacitor falls in the same scope of supercapacitor and supercapattery and shares the same fundamental concerns besides topology or structure. The future of IL-based electrolytes for the capacitive EES devices are also prospected.
机译:强烈期望用电化学能量存储(EES)设备中的离子液体(IL)代替或补充水性和有机电解质,以实现高工作电压,从而获得高能量容量。自从将ILs引入电化学研究界以来,它们就被认为是固有的和竞争性的电解质,因为它们可以克服传统的水性和有机电解质的许多缺点,例如狭窄的潜在窗口,挥发性和易燃性。本文批判性地回顾了用于超级电容器,超级电容器和微型超级电容器的基于IL的电解质的最新文献。超级电池是各种混合设备的通用术语,结合了可充电电池和超级电容器的优点,并且经常表现出电容特性。通过典型示例简要说明了超级电池的基本原理。微型超级电容器属于超级电容器和超级电容器的同一范围,除了拓扑或结构外,还具有相同的基本考虑。电容式EES器件的基于IL的电解质的前景也很广阔。

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