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Spectroscopic ellipsometry analysis on materials for energy efficient applications.

机译:在材料上进行椭圆偏振光谱分析,以实现节能应用。

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摘要

The improvement of technologies towards a more sustainable use of resources has received an increasing interest worldwide in recent decades. Particular technology examples include the generation of electricity using more efficient solar cells, the improvement in energy density capacity of batteries for the efficient storage of electricity, and the development of spintronic devices, for more energy efficient type of electronics. In the present work, we use spectroscopic ellipsometry as principal experimental technique to characterize (i) anti-reflection coatings on textured surfaces for solar cells, (ii) tungsten oxide upon hydrogen intercalation and (iii) the intrinsic and the magnetic field induced optical birefringence in Zn1-xMn xSe for potential spintronic applications. For topic (i), we analyze the effect of texture on the ellipsometry data and we present a method to determine the index of refraction and thickness of antireflecting films on textured substrates for solar cells. Particularly for alkaline etched monocrystalline silicon solar cells, we find specific measurement geometries that allow ellipsometry measurements in a wide range of angles of incidence and photon energies, despite of the strong surface roughness. In (ii), we investigate the proton intercalation of tungsten oxide, a material which has potential application in high energy density batteries. In particular, we investigate the polaron and phonon parameters dependence upon hydrogen ion intercalation, which provide insight into the related effects at the structural and microscopic level. Finally in topic (iii), we investigate the magnetooptic and birefringence properties of Zn 1-xMnxSe thin films in dependence of the Mn content. We provide a description of the found band gap anisotropy, the magnetization, and effective spin of the Mn-ions in dependence of x and its influence on the optical properties at room temperature.
机译:近几十年来,全球范围内对技术的改进以更可持续地利用资源已引起了越来越多的关注。具体的技术示例包括使用更高效的太阳能电池发电,提高用于有效存储电的电池的能量密度容量,以及开发用于更节能类型的电子产品的自旋电子设备。在目前的工作中,我们使用椭圆偏振光谱法作为主要实验技术来表征(i)太阳能电池纹理表面上的减反射涂层,(ii)氢嵌入时的氧化钨,以及(iii)本征和磁场引起的光学双折射在Zn1-xMn xSe中用于潜在的自旋电子学应用。对于主题(i),我们分析了椭圆偏振数据上纹理的影响,并提出了一种方法来确定太阳能电池纹理基材上的折射率和抗反射膜的厚度。特别是对于碱性蚀刻的单晶硅太阳能电池,我们发现了特定的测量几何形状,尽管表面粗糙度很强,但仍可以在大范围的入射角和光子能量范围内进行椭偏测量。在(ii)中,我们研究了氧化钨的质子嵌入,氧化钨在高能量密度电池中具有潜在的应用潜力。特别是,我们研究了极化子和声子参数对氢离子插层的依赖性,从而提供了有关结构和微观水平相关效应的见解。最后,在主题(iii)中,我们研究了Mn依赖于Zn 1-xMnxSe薄膜的磁光和双折射特性。我们对发现的带隙各向异性,磁化强度以及Mn离子的有效自旋(取决于x)及其对室温下光学性能的影响进行了描述。

著录项

  • 作者单位

    The University of Nebraska - Lincoln.;

  • 授予单位 The University of Nebraska - Lincoln.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 149 p.
  • 总页数 149
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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