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Effect of activating agents for producing activated carbon using a facile one-step synthesis with waste coffee grounds for symmetric supercapacitors

机译:用于用余量一步合成生产活性炭活性炭的活性炭用废咖啡酸酯对称超级电容器的影响

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摘要

Activated carbon with large surface area, high porosity and low-cost features is widely applied as the energy storage material for supercapacitors. Activating agent is significant in activation process since the active sites amount and pore structures of activated carbon are mainly determined by activating agents. In this work, a novel one-step activating process combining the conventional carbonization and activation processes is proposed, and the activating agents of KOH, NaOH, HCI, H3PO4, ZnCl2 and FeCl3 are applied for producing activated carbon from cost-free waste coffee grounds. The surface area, pore structure, functional groups, and defect to graphene ratio of activated carbon are investigated. The KOH-activated carbon electrode shows the highest specific capacitance of 105.3 F/g, which is five-fold of that for the commercial activated carbon electrode (21.8 F/g), owing to the less hydrophobic functional groups, moderate defect to graphene ratio, large specific surface area and high porisity for the former case. The symmetric supercapacitor with the KOH-activated carbon electrode shows a specific capacitance of 19.28 F/g and the maximum energy density of 6.94 Wh/kg at the power density of 350 W/kg. The specific capacitance retention of 133% and Coulombic efficiency of higher than 80% are also attained in the 8000 times charging/discharging process. (C) 2019 Taiwan Institute of Chemical Engineers. Published by Elsevier B.V. All rights reserved.
机译:具有大表面积,高孔隙度和低成本特征的活性炭被广泛应用为超级电容器的储能材料。活化剂在活化过程中显着,因为活性碳的活性位点和孔隙结构主要通过活化剂确定。在这项工作中,提出了一种组合常规碳化和活化过程的新型一步激活方法,并施加KOH,NaOH,HCl,HCl,H3PO4,ZnCl2和FECL3的活化剂以产生来自无成本的废咖啡液的活性炭。研究了表面积,孔结构,官能团和活性炭的石墨烯比的缺陷。 KOH活化的碳电极显示出105.3 f / g的最高特定电容,这对于商业活性炭电极(21.8f / g),这是由于疏水性官能团的疏水性较低,缺陷至石墨烯比例为5倍,较大的特定表面积和前壳体的高姿势。具有koh活化碳电极的对称超电容器显示了19.28f / g的特定电容,并且功率密度为350w / kg的最大能量密度为6.94wh / kg。在充电/放电过程中,也达到了133%的特定电容保留量,高于80%的库仑效率高。 (c)2019年台湾化工工程师研究所。 elsevier b.v出版。保留所有权利。

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