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首页> 外文期刊>Journal of solid state electrochemistry >Effect of the gradient constant temperature on the electrochemical capacitance of cotton stalk-based activated carbon
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Effect of the gradient constant temperature on the electrochemical capacitance of cotton stalk-based activated carbon

机译:梯度恒温对棉秆基活性炭电化学容量的影响

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The cost-effective activated carbon based from waste cotton stalks by the KOH activation method is investigated as the electrode material in supercapacitor for the first time. Activation temperature control is one of the most important factors affecting the surface area and pore structure of activated carbon, and it influences the capacitive performance of activated carbon based from cotton stalk. The optimized conditions are as follows: cotton stalk base charcoals and activating agent with a mass ration of 1:4, at an activation temperature of 600, 700, and 800A degrees C for 1, 1, and 2 h, respectively. With these experimental conditions, the activated carbon presents excellent electrochemical characteristics. The specific capacitance of the prepared activated carbon was as high as 180 F g(-1)at 2 A g(-1) in 1.0 mol center dot L-1 Et4NBF4/AN electrolyte and the specific capacitance without obvious attenuation after 2000 cycles. So, it is reasonable to believe that the activated carbons from cotton stalks by the KOH gradient constant temperature activation method might be one of the innovative carbon electrode materials for supercapacitor.
机译:以KOH活化法为原料的废棉秸秆为基础的高性价比活性炭,首次作为超级电容器中的电极材料进行了研究。活化温度控制是影响活性炭表面积和孔结构的最重要因素之一,它影响棉秆基活性炭的电容性能。优化的条件如下:棉茎基炭和质量比为1:4的活化剂,分别在600、700和800A的活化温度下分别加热1、1和2小时。在这些实验条件下,活性炭表现出优异的电化学特性。在1.0 mol中心点L-1 Et4NBF4 / AN电解质中,在2 A g(-1)处制备的活性炭的比电容高达180 F g(-1),并且在2000次循环后比电容没有明显衰减。因此,有理由相信,通过KOH梯度恒温激活法从棉秆中得到的活性炭可能是超级电容器的创新碳电极材料之一。

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