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Highly dispersed ruthenium oxide nanoparticles on carboxylated carbon nanotubes for supercapacitor electrode materials

机译:羧化碳纳米管上高度分散的氧化钌纳米粒子,用于超级电容器电极材料

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摘要

To enhance its pseudocapacitance,ruthenium oxide must be formed with a hydrated amorphous and porous structure and a small size,because this structure provides a large surface area and forms conduction paths for protons to easily access even the inner part of the RuO_2.In this study,we report that highly dispersed RuO_2 nanoparticles could be obtained on carboxylated carbon nanotubes.This could be achieved by preventing agglomeration among RuO_2 nanoparticles by bond formation between the RuO_2 and the surface carboxyl groups of the carbon nanotubes.Highly dispersed RuO_2 nanoparticles on carbon nanotubes showed an increased capacitance,which can be explained by the fact that with the decrease in size protons were able to access the inner part of RuO_2,so that its utilization was increased.The high dispersion of RuO_2 is therefore a key factor to increase the capacitance of nanocomposite electrode materials for supercapacitors.
机译:为了增强其伪电容,必须形成具有水合无定形和多孔结构且尺寸较小的氧化钌,因为该结构提供了较大的表面积并为质子形成了传导路径,从而使质子甚至可以轻松进入RuO_2的内部。据我们报道,可以在羧化碳纳米管上获得高度分散的RuO_2纳米粒子。这可以通过在RuO_2和碳纳米管的表面羧基之间形成键合来防止RuO_2纳米粒子之间的团聚来实现。增大的电容可以用以下事实来解释:随着尺寸的减小,质子能够进入RuO_2的内部,从而提高了其利用率。因此,RuO_2的高分散性是增加RuO_2电容的关键因素。用于超级电容器的纳米复合电极材料。

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