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Hierarchical porous carbon with ordered straight micro-channels templated by continuous filament glass fiber arrays for high performance supercapacitors

机译:具有有序的直流通道的分层多孔碳,由连续长丝玻璃纤维阵列进行高性能超级电容器

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摘要

Hierarchical porous carbon with highly ordered straight micro-channels was prepared though a facile melt vacuum infiltration method using continuous filament glass fiber arrays as the template and glucose as the precursor. The as-prepared carbon material shows high specific surface areas up to 1880 m2 g�1 profited from the unique structure of straight micro-channels. A fine pore structure is formed in the channel wall through KOH activation after the removal of the glass fiber array. electrochemical evaluation of the carbon material indicates that the hierarchical porous carbon exhibits a high specific capacitance of 283 F g�1 at a current density of 0.25 A g�1 with an alkaline electrolyte (6 M KOH) in a threeelectrode system. It also demonstrates excellent cycling stability with a capacity retention of 88.5% over 10 000 cycles at a high current density of 6 A g�1. These exciting results demonstrate a very simple and low-cost method for large-scale preparation of electrode materials for supercapacitors.
机译:尽管使用连续丝玻璃纤维阵列作为模板和葡萄糖作为前体,但制备了具有高度有序的直流通道的分层多孔碳,但是使用连续灯丝玻璃纤维阵列的容易熔体真空渗透方法。由制备的碳材料显示出高达1880平方米G�1的高比表面积,从直流通道的独特结构中收入。通过在去除玻璃纤维阵列之后,通过KOH活化形成细孔结构。碳材料的电化学评估表明,分层多孔碳在三电极系统中以0.25Ag�1的电流密度显示出高比电容为283fg�1,其中三电极系统中的碱性电解质(6m KOH)。它还证明了优异的循环稳定性,容量保持88.5%以上超过10 000次以上的高电流密度为6Ag11。这些令人兴奋的结果表明了一种非常简单和低成本的超级电极材料制备用于超级电容器的大规模制备方法。

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