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Electrochemical characteristics of activated carbon nanofiber electrodes for supercapacitors

机译:超级电容器用活性炭纳米纤维电极的电化学特性

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摘要

In this work, poly(amide imide) solutions in dimethylformamide were electrospun into webs consisting of 350nm ultrafine nanofibers. These nanofiber webs were used to produce activated carbon nanofibers (ACNFs), through stabilization and carbonisation-activation processes. Experimental results indicated that ACNFs activated at 800 ℃ afforded the highest specific surface area but low mesopore volume. The high specific surface area, mainly due to the micropores, introduced maximum specific capacitance at low current density (150 F g~(-1) at 10 mA g~(-1)). Elevating the volume fraction of mesopores gave maximum specific capacitance at high current density (100 F g~(-1) at 1000 mA g~(-1)), which could be explained on the basis of ion mobility in the pores. Thus, the capacitance of the supercapacitors was strongly dependent on the specific surface area and micro- or mesopore volume of the ACNFs.
机译:在这项工作中,将聚(酰胺酰亚胺)在二甲基甲酰胺中的溶液电纺成包含350nm超细纳米纤维的纤维网。这些纳米纤维网用于通过稳定化和碳化活化过程生产活性炭纳米纤维(ACNF)。实验结果表明,在800℃活化的ACNFs具有最高的比表面积,但中孔体积较小。高比表面积(主要是由于微孔)在低电流密度(10 mA g〜(-1)时为150 F g〜(-1))下引入了最大比电容。在高电流密度(1000 mA g〜(-1)时为100 F g〜(-1))下,增加中孔的体积分数可得到最大的比电容,这可以根据孔中的离子迁移率来解释。因此,超级电容器的电容在很大程度上取决于ACNF的比表面积和微孔或中孔体积。

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