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In situ X-ray nanotomography of metal surfaces during electropolishing

机译:电抛光过程中金属表面的原位X射线断层扫描

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摘要

A low voltage electropolishing of metal wires is attractive for nanotechnology because it provides centimeter long and micrometer thick probes with the tip radius of tens of nanometers. Using X-ray nanotomography we studied morphological transformations of the surface of tungsten wires in a specially designed electrochemical cell where the wire is vertically submersed into the KOH electrolyte. It is shown that stability and uniformity of the probe span is supported by a porous shell growing at the surface of tungsten oxide and shielding the wire surface from flowing electrolyte. It is discovered that the kinetics of shell growth at the triple line, where meniscus meets the wire, is very different from that of the bulk of electrolyte. Many metals follow similar electrochemical transformations hence the discovered morphological transformations of metal surfaces are expected to play significant role in many natural and technological applications.
机译:金属线的低压电抛光对纳米技术很有吸引力,因为它提供了尖端半径为几十纳米的厘米长和微米厚的探针。使用X射线纳米断层照相术,我们在专门设计的电化学电池中研究了钨丝表面的形态转化,在该电池中,钨丝垂直浸入KOH电解质中。结果表明,探针跨度的稳定性和均匀性由在氧化钨表面生长的多孔壳支撑,并屏蔽了导线表面免受流动的电解质的侵蚀。发现在弯月面与金属丝相遇的三重线处,壳层生长的动力学与大部分电解质的动力学有很大不同。许多金属遵循相似的电化学转变,因此,已发现的金属表面形态转变有望在许多自然和技术应用中发挥重要作用。

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