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Compared growth mechanisms of Zn-polar ZnO nanowires on O-polar ZnO and on sapphire

机译:比较Zn极性ZnO纳米线在O极性ZnO和蓝宝石上的生长机理

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Controlling the growth of zinc oxide nanowires is necessary to optimize the performance of nanowire-based devices such as photovoltaic solar cells, nano-generators, or light-emitting diodes. With this in mind, we investigate the nucleation and growth mechanisms of ZnO nanowires grown by metalorganic vapor phase epitaxy either on O-polar ZnO or on sapphire substrates. Whatever the substrate, ZnO nanowires are Zn-polar, as demonstrated by convergent beam electron diffraction. For growth on O-polar ZnO substrate, the nanowires are found to sit on O-polar pyramids. As growth proceeds, the inversion domain boundary moves up in order to remain at the top of the O-polar pyramids. For growth on sapphire substrates, the nanowires may also originate from the sapphire/ZnO interface. The presence of atomic steps and the non-polar character of sapphire could be the cause of the Zn-polar crystal nucleation on sapphire, whereas it is proposed that the segregation of aluminum impurities could account for the nucleation of inverted domains for growth on O-polar ZnO.
机译:控制氧化锌纳米线的生长对于优化基于纳米线的设备(例如光伏太阳能电池,纳米发电机或发光二极管)的性能是必要的。考虑到这一点,我们研究了通过金属有机气相外延在O极ZnO或蓝宝石衬底上生长的ZnO纳米线的成核和生长机理。不管是哪种衬底,ZnO纳米线都是Zn极性的,这是通过会聚束电子衍射证明的。为了在O极ZnO衬底上生长,发现纳米线位于O极金字塔上。随着增长的进行,反演域边界向上移动,以保持在O极金字塔的顶部。为了在蓝宝石衬底上生长,纳米线也可以源自蓝宝石/ ZnO界面。原子台阶的存在和蓝宝石的非极性特性可能是蓝宝石上Zn极性晶体成核的原因,而有人提出铝杂质的偏析可以解释O-上生长的反向畴的成核。极性ZnO。

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