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Electrochemical Properties of Asymmetric Supercapacitors in Potassium Hydroxide Electrolyte

机译:氢氧化钾电解质中不对称超电容器的电化学性能

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Three kinds of activated carbons were prepared from Taixi anthracite by NaOH activation. As-obtained activated carbons were adopted as electrode materials to construct asymmetric and symmetric supercapacitors. The electrochemical properties of as-constructed supercapacitors in aqueous electrolyte (3.0M KOH) were investigated. Results show that the asymmetric supercapacitor assembled with activated carbon of a higher specific surface area (S_(BET)) as the positive electrode exhibits better ion diffusion behavior and higher cell gravimetric specific capacitance (C_g). This is different from the case in non-aqueous system, mainly because pseudo-capacitance rather than double-layer capacitance has a more important effect on C_g in the aqueous electrolyte. Namely, the wettability and pseudo-capacitance of activated carbons decrease with increasing mass ratio of NaOH to anthracite, which is more prominent for activated carbons used as negative electrode materials.
机译:通过NaOH活化从Taixi无烟煤制备三种活性碳。通过作为电极材料作为电极材料,以构建不对称和对称超级电容器的碳。研究了含水电解质水溶液(3.0m KOH)中的制备超级电容器的电化学性质。结果表明,由于正电极的高比表面积(S_(BET))的活性炭组装的非对称超级电容器表现出更好的离子扩散行为和更高的细胞重量特定电容(C_G)。这与非水系统中的情况不同,主要是因为伪电容而不是双层电容对水性电解质中的C_g具有更重要的影响。即,活性碳的润湿性和伪电容随着NaOH对无烟煤的质量比而降低,这对于用作负电极材料的活性炭更突出。

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