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Performance of electric double-layer capacitors using carbons prepared from phenol-formaldehyde resins by KOH etching

机译:使用酚醛树脂通过KOH蚀刻制得的碳制成的双电层电容器的性能

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Phenol-formaldehyde resins were used to produce carbons with different porosities by KOH etching. Through the introduction of a binder, carbon-binder composites were prepared to serve as electrodes in electric double-layer capacitors. Nitrogen adsorption was used to characterize the porous structure of the carbons and electrodes. The performance of the capacitors in 1 M H2SO4 was investigated with charge-discharge cycling experiments. The faradaic leakage current and the specific capacitance of the electrodes were found to increase with the specific surface area, while the resistance determined from the IR drop showed an opposite trend. The increased electrode resistance, which would probably result from the increased diffusion path in the pores upon etching, has caused a decrease in the capacitance per unit carbon area. A specific capacitance larger than 100 F/g was achieved with an electrode consisting of 80% carbon particles with a specific surface area of 1900 m(2)/g and 20% polyvinylidenefluoride as the binder. (C) 2001 Elsevier Science Ltd. All rights reserved. [References: 26]
机译:酚醛树脂用于通过KOH蚀刻生产具有不同孔隙率的碳。通过引入粘合剂,制备了碳粘合剂复合材料以用作双电层电容器中的电极。氮吸附被用来表征碳和电极的多孔结构。通过充放电循环实验研究了电容器在1 M H2SO4中的性能。发现法拉第漏电流和电极的比电容随比表面积的增加而增加,而由IR降确定的电阻则呈现相反的趋势。电极电阻的增加可能是由于蚀刻后孔隙中扩散路径的增加而引起的,导致单位碳面积的电容减小。用由80%的比表面积为1900 m(2)/ g的碳颗粒和20%的聚偏二氟乙烯作为粘合剂的电极可实现大于100 F / g的比电容。 (C)2001 Elsevier ScienceLtd。保留所有权利。 [参考:26]

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