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Preparation of Pore-Size Controllable Activated Carbon from Rice Husk Using Dual Activating Agent and Its Application in Supercapacitor

机译:使用双重活化剂制备稻壳孔径可控活性炭及其在超级电容器中的应用

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摘要

Activated carbons prepared from rice husk by chemical activation with dual activation agents, KOH and NaOH, have been studied and characterized by BET, SEM, EDX, FTIR, Boehm titration, Raman, and TGA. It was found that the KOH/NaOH impregnation ratio plays an important role on textural properties of AC. At the same amount of total alkali hydroxide, the KOH/NaOH ratio higher than 1.33 resulted in larger specific surface area (2990∼3043 m2·g−1), microporous surface area (2747∼2831 m2·g−1), and higher micropore volume (1.4250∼1.4316 cm3·g−1). The as-prepared samples exist in the form of spherical-shaped particles with the size ranging from 20 to 60 nm and contain numerous surface functional groups. The as-prepared activated carbons were then assessed as an electrode material of supercapacitor operating in the 0.5 M K2SO4 electrolyte in potential windows of −1.0∼0.0 V. The highest capacitance obtained was 205 F·g−1 at the scan rate of 2 mV·s−1 and 225 F·g−1 at a current density of 0.2 A·g−1. At the scan rate as high as 50 mV·s−1, all the as-prepared activated carbons in this study have the specific capacitance greater than 100 F·g−1.
机译:通过用双激活剂,KOH和NaOH进行化学活化,通过BET,SEM,EDX,FTIR,BOEHM滴定,拉曼和TGA来研究由化学活化通过化学活化,通过化学活化用稻壳制备的碳。结果发现,KOH / NaOH浸渍率在AC的纹理性质上起着重要作用。在总碱氢氧化物的相同量,高于1.33的KOH / NaOH比率导致较大的表面积(2990〜3043m 2·G-1),微孔表面积(2747〜2831m2·g-1),更高微孔体积(1.4250~1.4316 cm3·g-1)。制备的样品以球形颗粒的形式存在,尺寸为20至60nm并含有许多表面官能团。然后将AS制备的活性炭作为在-1.0〜0.0V的电位窗口中的0.5M k2SO4电解质中操作的超级电容器的电极材料。获得的最高电容为205 f·g-1,扫描速率为2 mV ·S-1和225 F·G-1电流密度为0.2A·G-1。在高达50 mV·S-1的扫描速率下,本研究中的所有AS制备的活性炭具有大于100 f·g-1的特定电容。

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