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首页> 外文期刊>Electrochimica Acta >Probing anodic oxidation kinetics and nanoscale heterogeneity within TiO_2 films by Conductive Atomic Force Microscopy and combined techniques
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Probing anodic oxidation kinetics and nanoscale heterogeneity within TiO_2 films by Conductive Atomic Force Microscopy and combined techniques

机译:用导电原子显微镜和组合技术探测TiO_2薄膜内的阳极氧化动力学和纳米异质性

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摘要

Anodic oxidation of titanium in acid electrolytes allows to obtain a thin, compact oxide layer with thickness, structure, color, and electrical properties that vary with process parameters imposed, among which cell voltage has a key effect. Although oxidation kinetics have been investigated in several research works, a broader vision of oxide properties-including thickness and structure-still has to be achieved, especially in the case of very thin oxide films, few tens of nanometers thick. This is vital for engineered applications of nanostructured TiO_2 films, as in the field of memristive devices, where a precise control of oxide thickness, composition and structure is required to tune its electrical response. In this work, oxide films were produced on titanium with thickness ranging from few nanometers to 200nm. Oxide thickness was estimated by coulometry and spectrophotometry. These techniques were then combined with CAFM, which provided a deeper understanding of oxide thickness and uniformity of the metal surface and probed the presence of crystalline nano-domains within the amorphous oxide phase affecting the overall film electrical and optical properties.
机译:酸性电解质中钛的阳极氧化允许获得薄而致密的氧化层,其厚度,结构,颜色和电性能会随所施加的工艺参数而变化,其中电池电压起关键作用。尽管已经在数项研究工作中研究了氧化动力学,但仍必须获得更广泛的氧化物特性(包括厚度和结构)的视野,特别是在非常薄的氧化物膜,几十纳米厚的情况下。这对于纳米结构的TiO_2薄膜的工程应用至关重要,例如在忆阻器件领域,在该领域中,需要精确控制氧化物的厚度,组成和结构以调节其电响应。在这项工作中,在钛上生产了氧化膜,厚度范围从几纳米到200nm。通过库仑法和分光光度法估计氧化物厚度。然后将这些技术与CAFM结合使用,CAFM提供了对氧化物厚度和金属表面均匀性的更深入了解,并探查了无定形氧化物相内存在的晶体纳米域的存在,从而影响了整个薄膜的电学和光学性能。

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