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Fabrication and characterization of ordered arrays of nanostructures.

机译:纳米结构的有序阵列的制造和表征。

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摘要

Nanostructures are currently of great interest because of their unique properties and potential applications in a wide range of areas such as opto-electronic and biomedical devices. Current research in nanotechnology involves fabrication and characterization of these structures, as well as theoretical and experimental studies to explore their unique and novel properties. Not only do nanostructures have the potential to be both evolutionary (state-of-the-art ICs have more and more features on the nanoscale) but revolutionary (quantum computing) as well.; In this thesis, a combination of bottom-up and top-down approaches is explored to fabricate ordered arrays of nanostrucutures. The bottom-up approach involves the growth of self-organized porous anodic aluminum oxide (AAO) films. AAO films consist of a well ordered hexagonal array of close-packed pores with diameters and spacings ranging from around 5 to 500 nm. Via a top-down approach, these AAO films are then used as masks or templates to fabricate ordered arrays of nanostructures (i.e. dots, holes, meshes, pillars, rings, etc.) of various materials using conventional deposition and/or etching techniques. Using AAO films as masks allows a simple and economical method to fabricate arrays of structures with nano-scale dimensions. Furthermore, they allow the fabrication of large areas (many millimeters on a side) of highly uniform and well-ordered arrays of nanostructures, a crucial requirement for most characterization techniques and applications. Characterization of these nanostructures using various techniques (electron microscopy, atomic force microscopy, UV-Vis absorption spectroscopy, photoluminescence, capacitance-voltage measurements, magnetization hysteresis curves, etc.) will be presented. Finally, these structures provide a unique opportunity to determine the single and collective properties of nanostructure arrays and will have various future applications including but not limited to: data storage, light emitting or sensing devices, nano-tribological coatings for surfaces, bio-sensors, filters, and more.
机译:纳米结构由于其独特的特性以及在诸如光电和生物医学设备等广泛领域中的潜在应用,目前引起人们极大的兴趣。纳米技术的当前研究涉及这些结构的制造和表征,以及探索其独特和新颖性质的理论和实验研究。纳米结构不仅具有发展的潜力(最先进的集成电路在纳米尺度上具有越来越多的功能),而且具有革命性的潜力(量子计算)。本文研究了自下而上和自上而下方法的组合,以制造纳米结构的有序阵列。自下而上的方法涉及自组织多孔阳极氧化铝(AAO)膜的生长。 AAO薄膜由排列紧密的孔的六角形有序排列组成,这些孔的直径和间距范围为5至500 nm。然后,通过自上而下的方法,将这些AAO膜用作掩模或模板,以使用常规沉积和/或蚀刻技术制造各种材料的纳米结构的有序阵列(即点,孔,网格,柱,环等)。使用AAO膜作为掩模允许一种简单且经济的方法来制造具有纳米级尺寸的结构阵列。此外,它们允许制造高度均匀且排列良好的纳米结构阵列的大面积(一侧为数毫米),这是大多数表征技术和应用的关键要求。将介绍使用各种技术(电子显微镜,原子力显微镜,UV-Vis吸收光谱,光致发光,电容电压测量,磁化磁滞曲线等)表征这些纳米结构。最后,这些结构为确定纳米结构阵列的单一和集体特性提供了独特的机会,并将具有各种未来的应用,包括但不限于:数据存储,发光或传感设备,用于表面的纳米摩擦涂层,生物传感器,过滤器等等。

著录项

  • 作者

    Larson, Preston.;

  • 作者单位

    The University of Oklahoma.;

  • 授予单位 The University of Oklahoma.;
  • 学科 Physics Condensed Matter.
  • 学位 Ph.D.
  • 年度 2005
  • 页码 204 p.
  • 总页数 204
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 O49;
  • 关键词

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