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Investigation of nanoscale voids in Sb-doped p-type ZnO nanowires

机译:SB掺杂P型ZnO纳米线中纳米级空隙的研究

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While it has multiple advantageous optoelectronic and piezoelectric properties, the application of zinc oxide has been limited by the lack of a stable p-type dopant. Recently, it was discovered that antimony doping can lead to stable p-type doping in ZnO, but one curious side effect of the doping process is the formation of voids inside the nanowire. While previously used as a signifier of successful doping, up until now, little research has been performed on these structures themselves. In this work, the effect of annealing on the size and microstructure of the voids was investigated using TEM and XRD, finding that the voids form around a region of Zn7Sb2O12. Furthermore, using Raman spectroscopy, a new peak associated with successful doping was identified. The most surprising finding, however, was the presence of water trapped inside the nanowire, showing that this is actually a composite structure. Water was initially discovered in the nanowires using atom probe tomography, and verified using Raman spectroscopy.
机译:虽然它具有多种有利的光电和压电性能,但氧化锌的应用受到缺乏稳定的p型掺杂剂的限制。最近,发现锑掺杂可以导致ZnO中的稳定p型掺杂,但掺杂过程的一个好奇的副作用是纳米线内的空隙的形成。虽然以前用作成功兴奋剂的指示,但到目前为止,在这些结构本身上进行了很少的研究。在这项工作中,使用TEM和XRD研究退火对空隙的尺寸和微观结构的影响,发现空隙在Zn7SB2O12的区域周围形成。此外,使用拉曼光谱法,鉴定了与成功掺杂相关的新峰。然而,最令人惊讶的发现是存在捕获纳米线内的水,表明这实际上是复合结构。使用原子探针断层扫描纳米线在纳米线中发现水,并使用拉曼光谱验证。

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