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Activated carbons derived from polyethylene terephthalate for coin-cell supercapacitor electrodes

机译:聚对苯二甲酸乙二醇酯衍生的用于纽扣电池超级电容器电极的活性炭

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摘要

We successfully prepared activated carbon derived from polyethylene terephthalate (PET) via carbonization and subsequent activation under various conditions and applied it as active material for supercapacitors. In the activation, we used CO_2 for physical activation or KOH for chemical activation and varied the activation temperature from 600 ℃ to 1,000 ℃. We found mat CO_2 activation is unsuitable because of insufficient pore formation or low activation yield. Interestingly, PET-derived activated carbon obtained using KOH (PETK) at 700℃-900℃ exhibited higher specific surface areas than YP50f, which is a commercial activated carbon. Furthermore, some PETKs even displayed a dramatic increase in crystallinity. In particular, the PET-derived activated carbon prepared at 900 ℃ with KOH (PETK900) had the highest retention rate at a high charge-discharge rate and better durability after 2500 cycles than YP50f. Furthermore, employing the same process that we used with the PET chips, we successfully converted waste PET botdes into activated carbon materials. Waste PET-derived activated carbons exhibited good electrochemical performance as active material for supercapacitors. We thus found chemical activation with KOH to be an appropriate method for manufacturing PET-derived activated carbon and PETKs derived both from PET chips and waste PET have considerable potential for commercial use as active materials for supercapacitors.
机译:我们成功地制备了聚对苯二甲酸乙二醇酯(PET)衍生的活性炭,并在各种条件下通过碳化和随后的活化,并将其用作超级电容器的活性材料。在活化过程中,我们使用CO_2进行物理活化或使用KOH进行化学活化,并将活化温度从600°C变化到1000°C。我们发现垫CO_2活化不合适,因为孔形成不足或活化产率低。有趣的是,在700°C-900°C下使用KOH(PETK)获得的PET衍生活性炭表现出比表面积高于YP50f,YP50f是一种商业活性炭。此外,一些PETK甚至显示出结晶度的急剧增加。特别是,在900 °C下用KOH(PETK900)制备的PET活性炭在高充放电速率下比YP50f具有最高的保留率和更好的耐久性。此外,采用与PET芯片相同的工艺,我们成功地将废弃的PET瓶转化为活性炭材料。废PET衍生活性炭作为超级电容器的活性材料表现出良好的电化学性能。因此,我们发现用KOH进行化学活化是制造PET衍生活性炭的合适方法,并且从PET芯片和废PET中衍生的PETK具有相当大的商业用途潜力,可以作为超级电容器的活性材料。

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