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All solid supercapacitors based on an anion conducting polymer electrolyte

机译:基于阴离子导电聚合物电解质的所有固体超级电容器

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摘要

In this paper, KOH doped polybenzimidazole (PBI–KOH), an anion conducting polymer electrolyte, has been employed to demonstrate the possibility of fabricating alkaline all solid supercapacitors. This is different from the conventional gel-electrolyte based quasi-solid supercapacitors. Symmetric devices assembled using commercial activated carbon based electrodes and PBI–KOH electrolytes exhibit a high rate capability with specific capacitance retention above 90% when the discharge current density increased from 0.5 to 20 A g ~(?1) . However, PBI–KOH suffers from low cycling stability with a rapid decrease in specific capacitance in the first 1000 cycles. By adding a binder or narrowing the potential window, the cycling stability could be improved. The best device shows a quite stable performance during the first 2000 cycles with specific capacitance degradation of less than 5%. An asymmetric (or hybrid) device has been assembled using activated carbon and Ni(OH) _(2) as electrode materials, which exhibits a relative high specific energy of 37.1 W h kg ~(?1) . These results strongly recommend the great potential of solid anion conducting polymer electrolytes in developing alkaline all solid supercapacitors.
机译:本文采用KOH掺杂的聚苯和咪唑(PBI-KOH),导电聚合物电解质,用于证明制造碱性所有固体超级电容器的可能性。这与传统的凝胶电解质基准固体超级电容器不同。使用商业活性炭基电极和PBI-KOH电解质组装的对称装置具有高于90%的高速率能力,当放电电流密度从0.5到20Ag〜(α1)增加时,具有高于90%的高度电容保持。然而,PBI-KOH在前1000个循环中具有低循环稳定性,并且在前1000个循环中的特定电容迅速降低。通过添加粘合剂或缩小潜在窗口,可以提高循环稳定性。最佳设备在前2000个周期中显示出相当稳定的性能,特定电容降低小于5%。使用活性炭和Ni(OH)_(2)作为电极材料组装不对称(或混合动力)器件,其表现出37.1WH kg〜(α1)的相对高比能。这些结果强烈建议在开发碱性固体超级电容器中进行固体阴离子导电聚合物电解质的巨大潜力。

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