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Diameter dependence of the void formation in the oxidation of nickel nanowires

机译:镍纳米线氧化中空洞形成的直径依赖性

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摘要

In this work, we show how the vacancy diffusion length scale must be considered, in the context of the diameter of a nanowire, when utilizing the Kirkendall phenomenon in the fabrication of metal oxide nanotubes starting from metal nanowires. We find that the diameter of the nanowire relative to the diffusion length scale of the vacancy will affect greatly the type of voids that can be generated. By using a larger diameter nickel nanowire, we show that segmented heterojunction void formation can be avoided and that the resulting structure will serve as a precursory 'template' for subsequent oxidation processes at high temperatures. In doing so, we can prevent the formation of bamboo-like structures and obtain uniform nickel oxide nanotubes through direct oxidation that has proven to be difficult previously. The result from this work is also significant as the interplay of vacancy diffusion length and nanostructure dimension is important in the oxidation of other types of metal nanostructures, especially when void formation and the Kirkendall effect are involved.
机译:在这项工作中,我们展示了当利用Kirkendall现象在从金属纳米线开始的金属氧化物纳米管的制造中利用纳米线的直径时,必须如何考虑空位扩散长度尺度。我们发现,相对于空位的扩散长度尺度,纳米线的直径将极大地影响可产生的空隙的类型。通过使用较大直径的镍纳米线,我们表明可以避免分段异质结空隙的形成,并且所得结构将作为高温下后续氧化过程的前体“模板”。这样一来,我们就可以防止形成竹样结构,并通过直接氧化获得均匀的氧化镍纳米管,这在以前已经证明是困难的。这项工作的结果也很重要,因为空位扩散长度和纳米结构尺寸的相互作用对其他类型的金属纳米结构的氧化非常重要,尤其是当涉及空隙形成和柯肯德尔效应时。

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