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首页> 外文期刊>Journal of Electronic Materials >Catalytic Graphitization for Preparation of Porous Carbon Material Derived from Bamboo Precursor and Performance as Electrode of Electrical Double-Layer Capacitor
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Catalytic Graphitization for Preparation of Porous Carbon Material Derived from Bamboo Precursor and Performance as Electrode of Electrical Double-Layer Capacitor

机译:催化石墨化法制备竹制前驱体多孔碳材料及其作为双层电容器电极的性能

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摘要

The combination of addition of Fe (as a catalyst for graphitization) and CO2 activation (a kind of gaseous activation) was applied to prepare a porous carbon material from bamboo powder (a waste product of superheated steam treatment). Regardless of the heat treatment temperature, many macropores were successfully formed after the heating process by removal of Fe compounds. A turbostratic carbon structure was generated in the Fe-added sample heated at 850A degrees C. It was confirmed that the added Fe acted as a template for pore formation. Moreover, it was confirmed that the added Fe acted as a catalyst for graphitization. The resulting electrochemical performance as the electrode of an electrical double-layer capacitor, as demonstrated by cyclic voltammetry, electrochemical impedance spectroscopy, and charge-discharge testing, could be explained based on the graphitization and activation effects. Addition of Fe could affect the electrical properties of carbon material derived from bamboo.
机译:结合添加Fe(作为石墨化的催化剂)和CO2活化(一种气体活化),从竹粉(过热蒸汽处理的废品)中制备多孔碳材料。无论热处理温度如何,在加热过程之后,通过去除Fe化合物都成功地形成了许多大孔。在加热到850A的添加了Fe的样品中产生了层状碳结构。证实了添加的Fe充当了孔形成的模板。此外,证实了所添加的Fe用作石墨化的催化剂。循环伏安法,电化学阻抗谱和充放电测试证明,作为双电层电容器电极的电化学性能可以基于石墨化和活化效应进行解释。 Fe的添加可能会影响源自竹的碳材料的电性能。

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