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Specifically Designed Ionic Liquids—Formulations, Physicochemical Properties, and Electrochemical Double Layer Storage Behavior

机译:专门设计的离子液体-配方,物理化学性质和电化学双层存储行为

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摘要

Two key features—non-volatility and non-flammability—make ionic liquids (ILs) very attractive for use as electrolyte solvents in advanced energy storage systems, such as supercapacitors and Li-ion batteries. Since most ILs possess high viscosity and are less prone to dissolving common electrolytic salts when compared to traditional electrolytic solvents, they must be formulated with low viscosity thinner solvents to achieve desired ionic conductivity and dissolution of electrolyte salts in excess of 0.5 M concentration. In the past few years, our research group has synthesized several specifically designed ILs (mono-cationic, di-cationic, and zwitterionic) with bis(trifluoromethylsulfonyl)imide (TFSI) and dicyanamide (DCA) as counter anions. This article describes several electrolyte formulations to achieve superior electrolytic properties. The performance of a few representative IL-based electrolytes in supercapacitor coin cells is presented.
机译:非易失性和不易燃性这两个关键特性使离子液体(IL)在用作超级储能系统(例如超级电容器和锂离子电池)的电解质溶剂方面非常有吸引力。由于大多数IL具有较高的粘度,并且与传统的电解质溶剂相比,不易溶解普通的电解质盐,因此必须将其与低粘度的稀溶剂一起配制,以实现所需的离子电导率并溶解浓度超过0.5 M的电解质盐。在过去的几年中,我们的研究小组使用双(三氟甲基磺酰基)酰亚胺(TFSI)和双氰胺(DCA)作为抗衡阴离子,合成了几种专门设计的IL(单阳离子,双阳离子和两性离子)。本文介绍了几种可实现优异电解性能的电解质配方。介绍了超级电容器纽扣电池中几种代表性的基于IL的电解质的性能。

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