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首页> 外文期刊>Journal of Central South University of Technology >Influence of KOH activation techniques on pore structure and electrochemical property of carbon electrode materials
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Influence of KOH activation techniques on pore structure and electrochemical property of carbon electrode materials

机译:KOH活化技术对碳电极材料孔结构和电化学性能的影响

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摘要

Taking the selection of coal-tar pitch as precursor and KOH as activated agent, the activated carbon e-lectrode material was fabricated for supercapacitor. The surface area and the pore structure of activated carbon were analyzed by Nitro adsorption method. The electrochemical properties of the activated carbons were determined using two-electrode capacitors in 6 mol/L KOH aqueous electrolytes. The influences of activated temperature and mass ratio of KOH to C on the pore structure and electrochemical property of porous activated carbon were investigated in detail. The reasons for the changes of pore structure and electrochemical performance of activated carbon prepared under different conditions were also discussed theoretically. The results indicate that the maximum specific capacitance of 240 F/g can be obtained in alkaline medium, and the surface area, the pore structure and the specific capacitance of activated carbon depend on the treatment methods; the capacitance variation of activated carbon cannot be interpreted only by the change of surface area and pore structure, the lattice order and the electrolyte wetting effect of the activated carbon should also be taken into account.
机译:以选择煤焦油沥青为前驱体,以KOH为活化剂,制备了超级电容器用活性炭电极材料。用硝基吸附法分析了活性炭的表面积和孔结构。使用双电极电容器在6 mol / L KOH水性电解质中测定活性炭的电化学性能。详细研究了活化温度和KOH与C的质量比对多孔活性炭的孔结构和电化学性能的影响。从理论上讨论了在不同条件下制备的活性炭的孔结构和电化学性能发生变化的原因。结果表明,在碱性介质中可得到的最大比电容为240 F / g,活性炭的比表面积,孔结构和比电容取决于处理方法。活性炭的电容变化不能仅通过表面积和孔结构的变化来解释,还应考虑活性炭的晶格次序和电解质润湿效果。

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