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A facile method of fabricating PbBi alloy nanowires with controlled component proportion

机译:一种制备具有可控成分比例的PbBi合金纳米线的简便方法

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摘要

The ability of controlled component proportion for metallic alloy nanowires is still rather limited even after well over a decade of intensive research efforts. Here, a very simple method of high temperature melting in the pores of anodic aluminum oxide templates is developed to fabricate low melting point metallic alloy nanowires, in which the component proportion of elements can be controlled by adjusting electrodeposition time in the separate electrolytes. Taking the fabrication of PbBi alloy nanowires as example, we show how to control the uniform composition and component proportion of metallic alloy nanowires. The PbBi alloy nanowire arrays with three different atomic ratios of Bi-10 at.%, 30 at.%, 80 at.% respectively are successfully fabricated. The morphologies and composition of PbBi alloy nanowires are investigated by field-emission scanning electron microscopy and transmission electron microscopy equipped with X-ray energy dispersive spectroscopy analyzer, and the crystal structures are determined by X-ray diffractometer. These results of experiments indicate that the composition controllable and homogeneous alloy nanowire arrays can be synthesized using this new method.
机译:即使经过十多年的深入研究,金属合金纳米线中可控成分比例的能力仍然相当有限。在此,开发了一种在阳极氧化铝模板的孔中高温熔化的非常简单的方法来制造低熔点金属合金纳米线,其中可以通过调节在单独的电解质中的电沉积时间来控制元素的成分比例。以PbBi合金纳米线的制造为例,我们展示了如何控制金属合金纳米线的均匀组成和组分比例。分别成功制备了Bi-10原子百分比,30原子百分比,80原子百分比的三种不同原子比的PbBi合金纳米线阵列。通过配备X射线能量色散光谱分析仪的场发射扫描电子显微镜和透射电子显微镜研究了PbBi合金纳米线的形貌和组成,并通过X射线衍射仪确定了晶体结构。这些实验结果表明,可以使用这种新方法合成组成可控且均质的合金纳米线阵列。

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