首页> 外文会议>Nanoelectronics Conference (INEC), 2010 >Growth and optical properties of ZnO nanorods prepared through hydrothermal growth followed by chemical vapor deposition
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Growth and optical properties of ZnO nanorods prepared through hydrothermal growth followed by chemical vapor deposition

机译:通过水热生长然后化学气相沉积制备的ZnO纳米棒的生长和光学性质

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Very well aligned vertical ZnO nanorods with high optical quality were successfully synthesized by sequentially employing an aqueous solution method on a ZnO seed layer and a thermal chemical vapor deposition (CVD). The process is growing the upper ZnO nanorods by using CVD on top of the bottom nanorods synthesized by using an aqueous solution method on a Si substrate with a ZnO seed layer. These double-structured-nanorods showed a significant improvement of optical quality. The CVD re-grown upper nanorods showed orders-of-magnitude enhancement of the band edge emission and complete compression of the deep level emissions, compared with the solution-grown bottom nanorods. By comparing emission spectra from the series of samples with and without the seed layer or the second CVD growth, we can conclude that the improvement can only be achieved by combining the CVD, the solution-based synthesis technique, and the seed layer.
机译:通过在ZnO种子层上依次采用水溶液法和热化学气相沉积(CVD)成功地合成了具有良好光学质量的取向良好的垂直ZnO纳米棒。该工艺是在底部纳米棒的顶部通过使用CVD生长上部ZnO纳米棒,而底部纳米棒是通过水溶液法在具有ZnO籽晶层的Si基板上合成的。这些双重结构的纳米结构显示出光学质量的显着改善。与溶液生长的底部纳米棒相比,CVD重新生长的上部纳米棒显示出带边缘发射的数量级增强和深能级发射的完全压缩。通过比较来自具有和不具有种子层或第二次CVD生长的一系列样品的发射光谱,我们可以得出结论,只有将CVD,基于溶液的合成技术和种子层结合起来才能实现改善。

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