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Optimizing the performance of supercapacitors based on carbon electrodes and protic ionic liquids as electrolytes

机译:基于碳电极和质子离子液体作为电解质优化超级电容器的性能

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摘要

Protic ionic liquids (PILs) were implemented as electrolytes for supercapacitors using activated carbons with various porous textures as electrode material. The carbon with the largest specific surface area and highest amount of narrow mesopores (pore diameter: 2-7 nm) was found to give the highest specific capacitance in pyrrolidinium nitrate (PyNO_3) ionic liquid. However, it should be noted that when the pH value of this ionic liquid was adjusted around 11, higher specific capacitance was achieved, revealing a better electrochemical performance of carbon electrodes in basic media (i.e., capacitance values of 121 and 208 Fg~(-1) for an electrolyte based on PyNO_3 with a pH value of 7 and 11, respectively). This ionic liquid contained a small amount of water, which restricted the maximum voltage of symmetric capacitors to a value of 1.2 V, even after PyNO_3 had been partially dried (H_2O content around 1110 ppm). Therefore, the triethylammonium bis(trifluoromethylsufonyl)imide - NEt_3H TFSI - PIL was prepared in order to expand the potential window; after drying this PIL contained 200 ppm water. The results obtained with NEt_3H TFSI suggest that maximum voltages as high as 2.5 V can be achieved. This clearly shows that the presence of water in PILs has a negative effect on the performance of supercapacitors.
机译:质子离子液体(PIL)被用作超级电容器的电解质,它使用具有各种多孔质地的活性炭作为电极材料。发现在吡咯烷鎓硝酸盐(PyNO_3)离子液体中,具有最大比表面积和最大量的窄中孔(孔径:2-7 nm)的碳具有最高的比电容。但是,应该注意的是,将这种离子液体的pH值调整为11左右时,可以获得更高的比电容,这表明碳电极在碱性介质中具有更好的电化学性能(即,电容值为121和208 Fg〜(- 1)用于基于PyNO_3的电解质,其pH值分别为7和11。该离子液体包含少量的水,即使将PyNO_3部分干燥(H_2O含量约为1110 ppm),也将对称电容器的最大电压限制为1.2V。因此,制备了三乙基双(三氟甲基亚磺酰基)酰亚胺-NEt_3H TFSI-PIL,以扩大电位窗口。干燥后,该PIL包含200 ppm的水。 NEt_3H TFSI获得的结果表明,可以实现高达2.5 V的最大电压。这清楚地表明,PIL中存在水会对超级电容器的性能产生负面影响。

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