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Homogeneous Fe2O3 coatings on carbon nanotube structures for supercapacitors

机译:超级电容器碳纳米管结构均匀Fe2O3涂层

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摘要

The combination of carbon nanotubes with transition metal oxides can exhibit complementary charge storage properties for use as electrode materials for next generation energy storage devices. One of the biggest challenges so far is to synthesize homogeneous oxide coatings on carbon nanotube structures preserving their integrity. Here we present the formation of conformal coatings of Fe2O3 on vertically aligned carbon nanotubes obtained by atomic layer deposition. We investigate the effect of pristine, nitrogen plasma and water plasma treated carbon nanotube surfaces on the ALD-growth of Fe2O3 using ferrocene and ozone precursors. The surface morphology, coating thickness, microstructure and surface chemistry of iron oxide-carbon nanotube composites and their ultimate influence on the electrochemical behavior of the composites are evaluated. The most effective surface functionalization is that achieved by H2O plasma treatment, whereas untreated carbon nanotubes, despite the lack of active sites in the starting pristine surface, can be coated with an inhomogeneous Fe2O3 film.
机译:具有过渡金属氧化物的碳纳米管的组合可以表现出用于下一代能量存储装置的电极材料的互补电荷储存性能。到目前为止最大的挑战是在保持它们完整性的碳纳米管结构上合成均匀氧化物涂层。在这里,我们介绍了通过原子层沉积获得的垂直取向的碳纳米管对Fe2O3的共形涂层的形成。我们研究原始,氮等离子体和水等离子体处理碳纳米管表面对Fe2O3的AlD生长的影响使用二茂铁和臭氧前体。评估了氧化铁 - 碳纳米管复合材料的表面形态,涂层厚度,微观结构和表面化学及其对复合材料电化学行为的最终影响。最有效的表面官能化是通过H2O等离子体处理实现的,而未处理的碳纳米管尽管起始原始表面中缺乏活性位点,可以用不均匀的Fe2O3膜涂覆。

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