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The microstructure and capacitance characterizations of anodic titanium based alloy oxide nanotube

机译:阳极钛基合金氧化物纳米管的微观结构和电容特性

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摘要

This paper presents a simple anodization process to fabricate ordered nanotubes (NTs) of titanium and its alloys (Ti-Mo and Ti-Ta). TiO2, MoO3, and Ta2O5 are high dielectric constant materials for ultracapacitor application. The anodic titanium oxide contains a compact layer on the NT film and a barrier layer under the NT film. However, the microstructure of oxide films formed by anodic Ti-Mo and Ti-Ta alloys contains six layers, including a continuous compact layer, a continuous partial porous layer, a porous layer, a net layer, an ordering NT film, and an ordering compact barrier layer. There are extra layers, which are a partial porous layer and a porous layer, not presented on the TiO2 NT film. In this paper, we fabricated very high surface area ordered nanotubes from Ti and its alloys. Based on the differences of alloys elements and compositions, we investigated and calculated the specific capacitance of these alloys oxide nanotubes.
机译:本文提出了一种简单的阳极氧化工艺,以制造钛及其合金(Ti-Mo和Ti-Ta)的有序纳米管(NTs)。 TiO2,MoO3和Ta2O5是用于超级电容器应用的高介电常数材料。阳极氧化钛在NT膜上包含致密层,在NT膜下包含阻挡层。然而,由阳极Ti-Mo和Ti-Ta合金形成的氧化膜的微观结构包含六层,包括连续的致密层,连续的部分多孔层,多孔层,网层,有序的NT膜和有序的NT膜。紧密的阻挡层。 TiO2 NT膜上没有额外的层,它们是部分多孔层和多孔层。在本文中,我们用Ti及其合金制造了表面积很大的有序纳米管。基于合金元素和组成的差异,我们研究并计算了这些合金氧化物纳米管的比电容。

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