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Nitrogen-doped activated carbon/graphene composites as high-performance supercapacitor electrodes

机译:氮掺杂活性炭/石墨烯复合材料作为高性能超级电容器电极

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Nitrogen-doped activated carbon/reduced graphene oxide composites are prepared by pre-carbonization of the precursors (mixture of graphene oxide and nitrogen-doped activated carbons) and KOH activation of the pyrolysis products. Nitrogen-doped activated carbons were prepared from waste particleboard bonded with ureaformaldehyde resin adhesives. Graphene oxide was prepared from graphite according to the modified Hummers' method. The effects of the mass ratio of KOH and the precursor and the mass radio of graphene oxide in the precursor on electrochemical properties are investigated, respectively. The results demonstrated that graphene oxide as precursor was activated and reduced via high temperature and wrapped on the outer surface of the active carbon particles. The thermally reduced graphene oxide sustains the activated carbon particles as a wrinkled carrier after activation. The electrode of GO–AC–KOH 1–4–4 has achieved the highest specific capacitance of 265 F g?1 and increased 17.8% comparing with the activated carbon (225 F g?1) under a current density of 50 mA g?1 in a 7 mol l?1 KOH electrolytic solution. Moreover, the symmetrical supercapacitor show an excellent cycling stability with capacitance retention 92% of the initial capacitance after 3000 cycles at a current density of 5 A g?1. It is also found that KOH activation of disused composite panels is an efficient and straightforward approach to production of low-cost GO–AC composite for electrochemical capacitors.
机译:通过前体的预碳化(氧化石墨烯和氮掺杂的活性炭的混合物)和热解产物的KOH活化来制备氮掺杂的活性炭/还原的氧化石墨烯复合材料。氮杂化活性炭是由废刨花板与脲醛树脂胶粘剂制成的。氧化石墨烯是根据改良的Hummers方法由石墨制备的。研究了KOH与前驱体的质量比以及前驱体中氧化石墨烯的质量比对电化学性能的影响。结果表明,氧化石墨烯作为前驱体被高温活化并还原并包裹在活性炭颗粒的外表面。热还原的氧化石墨烯在活化后将活性炭颗粒维持为起皱的载体。 GO–AC–KOH 1–4–4电极的最高比电容为265 F g ?1 ,与活性炭相比增加了17.8%(225 F g ?1 )在7 mol l ?1 > ?1 KOH电解液。此外,对称超级电容器在电流密度为5 A g ?1 的情况下,经过3000次循环后,仍具有初始电容的92%的优异循环稳定性。还发现废旧复合板的KOH活化是一种生产电化学电容器的低成本GO-AC复合材料的有效而直接的方法。

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