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The growth and characterisation of ordered arrays of zinc oxide nanostructures and optical studies of defects in zinc oxide

机译:有序氧化锌纳米结构阵列的生长和表征及氧化锌缺陷的光学研究

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摘要

In this work the growth of c-axis aligned zinc oxide nanorods on non-epitaxially matched substrates is examined. Nanorod arrays were deposited on silicon by seeding and chemical bath deposition (CBD), carbothermal vapour phase transport (CTR-VPT) and a hybrid CBD / CTR-VPT method. The best optical quality nanorods were obtained by the hybrid CBD / CTR-VPT method. This hybrid method was extended further and a method was developed to deposit hexagonally close packed positioned c-axis aligned arrays using a facile nanosphere technique in conjunction with silica templating. The varying factors affecting the deposition process were examined, including the growth conditions, transformations in the CBD layer during high temperature CTR-VPT deposition and the formation of new interfaces between the substrates and nanorods. The optical properties of the nanorod arrays were examined by low temperature Fourier transform photoluminescence spectroscopy, where it was found that the quality of both the positioned and unpositioned nanorods was excellent. Work on an important deep level emission in ZnO (the structured green band) was also undertaken, both in nanostructures by deliberately introducing copper into the growth process and also by a soft Cu isotopically specific doping technique into highly perfect single crystals. These samples’ properties were then studied by low temperature photoluminescence spectroscopy.
机译:在这项工作中,研究了在非外延匹配的基板上c轴对齐的氧化锌纳米棒的生长。通过播种和化学浴沉积(CBD),碳热汽相传输(CTR-VPT)和混合CBD / CTR-VPT方法将纳米棒阵列沉积在硅上。通过混合CBD / CTR-VPT方法获得了最佳的光学质量纳米棒。进一步扩展了这种混合方法,并开发了一种方法,该方法使用便捷的纳米球技术结合二氧化硅模板法沉积六角形紧密堆积的c轴对齐阵列。检查了影响沉积过程的各种因素,包括生长条件,高温CTR-VPT沉积过程中CBD层的转变以及基底和纳米棒之间新界面的形成。通过低温傅里叶变换光致发光光谱法检查了纳米棒阵列的光学性质,其中发现定位和未定位的纳米棒的质量均优良。 ZnO(结构化绿色带)中重要的深能级发射工作也在研究中,既在纳米结构中通过有意地将铜引入生长过程中,又通过将软铜同位素特异性掺杂技术引入高度完美的单晶中来进行。然后通过低温光致发光光谱法研究了这些样品的性质。

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  • 作者

    Byrne Daragh;

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  • 年度 2012
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  • 原文格式 PDF
  • 正文语种 en
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