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Large-scale growth of density-tunable aligned ZnO nanorods arrays on GaN QDs

机译:在GaN QD上大规模生长密度可调对准的ZnO纳米棒阵列

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摘要

An effective approach for growing large-scale, uniformly aligned ZnO nanorods arrays is demonstrated. The synthesis uses a GaN quantum dot (QD) template produced by a self-assembled Stranski-Krastanow mode in metal organic chemical vapor deposition, which serves as a nucleation site for ZnO owing to the QD's high surface free energy. The resultant ZnO nanorods with uniform shape and length align vertically on the template, while their density is easily tunable by adjusting the density of GaN QDs, which can be adjusted by simply varying growth interruption. By controlling the density of ZnO nanorod arrays, their optical performance can also be improved. This approach opens the possibility of combining one-dimensional (1D) with 0D nanostructures for applications in sensor arrays, piezoelectric antenna arrays, optoelectronic devices, and interconnects.
机译:证明了一种生长大规模,均匀排列的ZnO纳米棒阵列的有效方法。该合成使用通过自组装Stranski-Krastanow模式在金属有机化学气相沉积中生产的GaN量子点(QD)模板,该模板由于QD的高表面自由能而成为ZnO的成核位点。所得具有均匀形状和长度的ZnO纳米棒在模板上垂直对齐,而其密度可通过调节GaN QD的密度轻松调节,而GaN QD的密度可通过简单改变生长中断来调节。通过控制ZnO纳米棒阵列的密度,还可以改善其光学性能。这种方法打开了将一维(1D)与0D纳米结构相结合的可能性,以用于传感器阵列,压电天线阵列,光电器件和互连中。

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