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Selective Area Growth of Well-Ordered ZnO Nanowire Arrays with Controllable Polarity

机译:极性可控的有序ZnO纳米线阵列的选择性区域生长

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摘要

Controlling the polarity of ZnO nanowires in addition to the uniformity of their structural morphology in terms of position, vertical alignment, length, diameter, and period is still a technological and fundamental challenge for real-world device integration. In order to tackle this issue, we specifically combine the selective area growth on prepatterned polar c-plane ZnO single crystals using electron-beam lithography, with the chemical bath deposition. The formation of ZnO nanowires with a highly controlled structural morphology and a high optical quality is demonstrated over large surface areas on both polar c-plane ZnO single crystals. Importantly, the polarity of ZnO nanowires can be switched from O- to Zn-polar, depending on the polarity of prepatterned ZnO single crystals. This indicates that no fundamental limitations prevent ZnO nanowires from being O- or Zn-polar. In contrast to their catalyst-free growth by vapor-phase deposition techniques, the possibility to control the polarity of ZnO nanowires grown in solution is remarkable, further showing the strong interest in the chemical bath deposition and hydrothermal techniques. The single O- and Zn-polar ZnO nanowires additionally exhibit distinctive cathodoluminescence spectra. To a broader extent, these findings open the way to the ultimate fabrication of well-organized heterostructures made from ZnO nanowires, which can act as building blocks in a large number of electronic, optoelectronic, and photovoltaic devices.
机译:除了在位置,垂直排列,长度,直径和周期方面的结构形态的均匀性之外,控制ZnO纳米线的极性仍然是现实设备集成的技术和根本挑战。为了解决这个问题,我们将使用电子束光刻技术将预先形成图案的极性c平面ZnO单晶上的选择性区域生长与化学浴沉积相结合。在两个极性c面ZnO单晶的大表面积上都证明了具有高度受控的结构形态和高光学质量的ZnO纳米线的形成。重要的是,取决于预形成图案的ZnO单晶的极性,可以将ZnO纳米线的极性从O极性切换到Zn极性。这表明没有基本的限制可阻止ZnO纳米线成为O或Zn极性。与通过气相沉积技术无催化剂生长相反,控制溶液中生长的ZnO纳米线极性的可能性非常显着,这进一步表明了对化学浴沉积和水热技术的强烈兴趣。单根O和Zn极性ZnO纳米线还具有独特的阴极发光光谱。在更广泛的程度上,这些发现为最终制造由ZnO纳米线制成的组织良好的异质结构开辟了道路,这些异质结构可作为大量电子,光电和光伏器件的基础。

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