首页> 外文期刊>Vacuum: Technology Applications & Ion Physics: The International Journal & Abstracting Service for Vacuum Science & Technology >Zinc aluminate nanotubes fabrication based on heating-induced volatilization and Kirkendall effect in nanopores of anodic aluminum oxide template
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Zinc aluminate nanotubes fabrication based on heating-induced volatilization and Kirkendall effect in nanopores of anodic aluminum oxide template

机译:铝酸盐纳米管制造基于加热诱导的挥发和KIRKENDALL效应在纳米孔氧化铝模板中的纳米孔中

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摘要

The fabrication of zinc aluminate nanotubes attracted considerable attention due to their potential application as catalysts, catalyst supports, and electronics. In this paper, it is presented the influence of heating temperature and time on the Kirkendall effect-related evolution of Zn nanowires embedded in nanopores of anodic aluminum oxide (AAO) template. With increasing of the reaction temperature and heating time, zinc aluminate nanotubes can be gradually achieved from Zn nanowires embedded in AAO template under the air environment. In particular, ZnO was formed in the pores of AAO template by the volatilization and oxidation of Zn nanowires. And then through the solid-solid interfacial reaction of ZnO and AAO template, the nanostructures were transformed to zinc aluminate nanotubes conserving the shape of the corresponding ZnO nanostructures, which was induced by the nanoscale Kirkendall effect. Combined with the volatilization and oxidation time of Zn nanowires, the wall thickness of the formed nanotubes can be further precisely controlled. Our finding provides a simple and efficient pathway to fabricate the complex hollow zinc aluminate nanostructures, which are expected to have potential applications in catalytic related fields.
机译:铝酸锌纳米管的制造由于它们的潜在应用作为催化剂,催化剂载体和电子产品而引起了相当大的关注。本文介绍了加热温度和时间对嵌入纳米孔(AAO)模板纳米孔纳米孔的KIRKENDALL效应相关演化的影响。随着反应温度和加热时间的增加,铝酸锌纳米管可以从空气环境下嵌入AaO模板中嵌入的Zn纳米线逐渐达到。特别地,通过Zn纳米线的挥发和氧化在AaO模板的孔中形成ZnO。然后通过ZnO和AaO模板的固体固体界面反应,将纳米结构转化为氧化铝纳米管的锌铝酸锌纳米结构,通过纳米级Kirkendall效应诱导的相应ZnO纳米结构的形状。结合Zn纳米线的挥发和氧化时间,可以进一步精确地控制形成的纳米管的壁厚。我们的发现提供了一种简单而有效的途径来制造复杂的空心锌铝酸盐纳米结构,这些纳米结构预计将在催化相关领域具有潜在的应用。

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