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Research on super capacitance properties of modified activated carbon in sodium sulfate electrolyte

机译:硫酸钠电解质改性活性炭超高电容性研究

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摘要

In order to improve the specific capacity and energy density of activated carbon electrode materials activated carbon was modified by surface treatment using hydrogen peroxide. The modified carbons were characterized the changes of pore structure and functional groups before and after modification by N2 adsorption-desorption isotherms and FTIR spectroscopy. The three electrode system was assembled with modified activated carbon as electrode materials and Na2SO4 as the electrolyte. The influence of surface modification on the performance of EDLCs was studied by galvanostatic charge-discharge, cyclic voltammetry, and alternating current impedance. The results show that the surface chemistry of the modified activated carbon material has changed, the specific surface area has changed and the pore size has not changed much with the introduction of new oxygen-containing functional groups. The specific capacity of the activated carbon material modified by 5h is 75F/g, which is 86.1% higher than that before the modification. It can be seen that the change of functional group after the modification of activated carbon can help to increase the specific capacity.
机译:为了提高活性炭电极材料的特定容量和能量密度,通过过氧化氢表面处理改性活性炭。经修饰的碳的特征在于通过N 2吸附 - 解吸等温线和FTIR光谱改性前后孔结构和官能团的变化。用改性活性炭作为电极材料和Na 2 SO 4组装三个电极系统作为电解质。通过Galvanostatic电荷 - 放电,循环伏安法和交流阻抗研究了表面改性对EDLC性能的影响。结果表明,改性活性炭材料的表面化学发生了变化,比表面积发生变化,并且由于引入新的含氧官能团而言,孔径没有太大变化。由5H改性的活性炭材料的比容量为75F / g,比修饰前的高度高86.1%。可以看出,活性炭改性后功能组的变化可以有助于提高具体容量。

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