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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Highly Dispersed RuO2 Nanoparticles on Carbon Nanotubes: Facile Synthesis and Enhanced Supercapacitance Performance
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Highly Dispersed RuO2 Nanoparticles on Carbon Nanotubes: Facile Synthesis and Enhanced Supercapacitance Performance

机译:碳纳米管上高度分散的RuO2纳米颗粒:简便的合成方法和增强的超电容性能

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摘要

RuO2/CNT nanocomposites with well-dispersed RuO2 nanoparticles (diameter <2 nm) on the carbon nanotubes' surface, synthesized through an easy and efficient solution-based method, have been investigated for potential application in electrochemical capacitors (ECs) as electrode materials. The electrochemical results demonstrate that the supporting material of CNT can significantly promote the supercapacitance performance of RuO2. The RuO2 nanoparticles in the composite with a RuO2/CNT mass ratio of 6:7 could achieve a specific capacitance of as high as 953 F g~(-1). The results also demonstrate that the resulted RuO2/CNT nanocomposites are superior electrode materials for ECs with a high specific capacitance and significantly enhanced high-power and high-energy capabilities as well as improved cycling performance compared with bare RuO2. At a power density of 5000 W kg~(-1), the RuO2/CNT composite (RuO2/CNT = 6:7 in wt %) can still deliver an energy density of 16.8 Wh kg~(-1), which is about 5.8 times larger than that of bare RuO2 (2.9 Wh kg~(-1)). The much improved electrochemical performances could be attributed to the dispersive action and good electronic conductivity of CNTs as well as the pinning effect for nanosized RuO2 particles on the CNTs' surfaces.
机译:已经研究了通过简单有效的基于溶液的方法合成的,在碳纳米管表面上具有良好分散的RuO2纳米粒子(直径<2 nm)的RuO2 / CNT纳米复合材料,有望在电化学电容器(EC)中用作电极材料。电化学结果表明,CNT的支撑材料可以显着提高RuO2的超电容性能。 RuO2 / CNT质量比为6:7的复合材料中的RuO2纳米粒子可以实现高达953 F g〜(-1)的比电容。结果还表明,与裸露的RuO2相比,所得的RuO2 / CNT纳米复合材料是EC的优异电极材料,具有高的比电容,显着增强的高功率和高能量性能以及改善的循环性能。在5000 W kg〜(-1)的功率密度下,RuO2 / CNT复合材料(RuO2 / CNT = 6:7 wt%)仍可提供16.8 Wh kg〜(-1)的能量密度,约为比裸露的RuO2(2.9 Wh kg〜(-1))大5.8倍。电化学性能的大大改善可归因于CNT的分散作用和良好的电导率,以及在CNT表面上纳米级RuO2粒子的钉扎效应。

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