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The synthesis of metal oxide nanowires by directly heating metal samples in appropriate oxygen atmospheres

机译:通过在适当的氧气气氛中直接加热金属样品来合成金属氧化物纳米线

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ZnO, MgO, and GeO_2 nanowires were successfully synthesized by simply heating the desired metal powder to a temperature above its melting point in a flow of mixed gases (20 percent O_2, 80 percent Ar, with the total flow rate of 120 sccm). Transmission electron microscopy observations show that as-synthesized products are exclusively nanowires, structurally uniform and single crystalline. The same technique was used to fabricate arrays of ZnO nanowires on silicon substrates, which would be of particular interest for direct integration in the current silicon-technology-based optoelectronic devices. Based on our experimental results, a metal self-catalytic growth mechanism was proposed and described conceptually. Because of the absence of impurities such as transition metal or noble metal throughout the whole growth process, the intrinsic properties of the resulting metal oxide nanowires could be expressed and utilized. And with in-depth understanding of the growth mechanism, our method could be efficient and controllable in extension to many other low-melting-point metals, such as Al, In, and Sn, for the synthesis of corresponding metal oxide nanostructures.
机译:ZnO,MgO和GeO_2纳米线是通过在混合气体流(20%O_2、80%Ar,总流速为120 sccm)中简单地将所需金属粉末加热到其熔点以上的温度而成功合成的。透射电子显微镜观察表明,合成后的产物仅是纳米线,结构均匀且为单晶。使用相同的技术在硅衬底上制造ZnO纳米线的阵列,这对于在当前基于硅技术的光电设备中直接集成特别感兴趣。根据我们的实验结果,提出了金属自催化生长机理并进行了概念性描述。由于在整个生长过程中不存在诸如过渡金属或贵金属的杂质,因此可以表达和利用所得金属氧化物纳米线的固有性质。并且,通过对生长机理的深入了解,我们的方法可以有效且可控制地扩展到许多其他低熔点金属(如Al,In和Sn),以合成相应的金属氧化物纳米结构。

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