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Redox-active ionic liquid electrolyte with multi energy storage mechanism for high energy density supercapacitor

机译:具有多能量存储机制的氧化还原活性离子液体电解质,用于高能量密度超级电容器

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A bimodal redox-active ionic liquid electrolyte for supercapacitors with high energy density was demonstrated. The suggested bimodal electrolyte, which consists of 1-ethyl-3-methylimidazolium bis(trifluoromethylsulfonyl)imide (EMITFSI) and 1-ethyl-3-methylimidazolium halide (EMI-X, X = Br, I) as a redox active couple, shows the three types of energy storage mechanism: a classical EDL capacitance; a pseudo-capacitance from the redox reaction of halide species, such as bromide and iodide; and an EDL capacitance strongly enhanced by ion size effects. When EMITFSI is mixed with small ions, the thickness of the ionic layer becomes thinner and even more ions are packed into the electrode due to the decrement of excluded-volume effects and the increment of electrostatic interactions. The supercapacitor containing a mixture of EMITFSI and EMI-I showed a considerably high performance with 175.6 W h kg?1 and 4994.5 W kg?1 at 1 A g?1 and excellent cycling stability up to 5000 cycles.
机译:证明了具有高能量密度的用于超级电容器的双峰氧化还原活性离子液体电解质。建议的双峰电解质由氧化还原活性偶合的1-乙基-3-甲基咪唑双(三氟甲基磺酰基)酰亚胺(EMITFSI)和1-乙基-3-甲基咪唑鎓卤化物(EMI-X,X = Br,I)组成三种类型的能量存储机制:经典的EDL电容;卤化物(如溴化物和碘化物)的氧化还原反应产生的假电容;离子尺寸效应大大增强了EDL电容。当EMITFSI与小离子混合时,由于排除体积效应的减小和静电相互作用的增加,离子层的厚度会变薄,甚至有更多的离子会堆积到电极中。包含EMITFSI和EMI-1的超级电容器在175.6 W h kg ?1 和4994.5 W kg ?1 < / sup> 在1 A g ?1 下具有出色的循环稳定性,直至5000次循环。

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