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High resolution TEM and 3D imaging of polymer-based and dye-sensitized solar cells.

机译:聚合物基和染料敏化太阳能电池的高分辨率TEM和3D成像。

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摘要

Since 1950s, solar energy has been the most attractive energy source as an alternative to fossil fuels including oil and natural gas. However, these types of solar cells have high raw material and manufacturing costs. So, alternative solar cells using low cost materials and manufacturing processes have been actively studied for more than 10 years. The power conversion efficiency of some of the alternative solar cells has been recently improved so much as to be used for real life applications in the near future. However, their relatively short lifetime still remains as a bottleneck in their commercialized use.;In this dissertation, we studied cross sections of three types of solar cells using TEM micrographs and TEM related analysis methods; selected area diffraction, energy dispersive spectroscopy, electron tomography, and nanobeam diffraction. A thin Ag layer used for a top metal electrode in an inverted polymer solar cell was broken down into particles. Absorption of water by the PEDOT:PSS layer followed by corrosion of the Ag layer was thought to be the main cause of this phenomenon. The structure and materials of the photoactive layer in hybrid polymer solar cells have an important influence on the performance of the solar cell devices. Three kinds of efforts were made to improve the electrical characteristics of the devices; removal of a dark TiO2 layer at the polymer/TiO2 interface, using bulk heterojunction structures, and coating a fullerene interlayer on the inorganic nanostructure. An optimum concentration of carbon nanotubes (CNTs) combined with Ru could increase the interface area of CNTs, and improve the performances of dye sensitized solar cells. In order to develop plastic solar cell, two different methods of mixing TiO2 particles with either nanoglues or PMMA were tried. Cross-sectional TEM microstructures were examined to come up with optimum processing parameters such as the sintering temperature and the amount of PMMA added into the structure. Cross-sectional TEM and electron tomography have been very useful for developing new kinds of solar cell structures as well as finding various defects in the structures.
机译:自1950年代以来,太阳能一直是最有吸引力的能源,可替代石油和天然气等化石燃料。然而,这些类型的太阳能电池具有高的原材料和制造成本。因此,使用低成本材料和制造工艺的替代太阳能电池已经被积极研究了10多年。最近,一些替代太阳能电池的功率转换效率已经得到了很大的提高,可以在不久的将来用于现实生活中。然而,它们相对较短的寿命仍然是其商业化应用的瓶颈。本文采用TEM显微照片和TEM相关分析方法研究了三种类型的太阳能电池的截面。选择区域衍射,能量色散谱,电子断层扫描和纳米束衍射。将用于反向聚合物太阳能电池中的顶部金属电极的薄银层分解成颗粒。认为PEDOT:PSS层吸收水并随后腐蚀Ag层是造成此现象的主要原因。混合聚合物太阳能电池中光敏层的结构和材料对太阳能电池器件的性能具有重要影响。为了改善设备的电气特性,进行了三方面的努力。使用本体异质结结构去除聚合物/ TiO2界面上的深色TiO2层,并在无机纳米结构上涂覆富勒烯中间层。碳纳米管与钌结合的最佳浓度可以增加碳纳米管的界面面积,并提高染料敏化太阳能电池的性能。为了开发塑料太阳能电池,尝试了两种不同的将TiO2颗粒与纳米胶或PMMA混合的方法。检查了横截面TEM微结构,以得出最佳的工艺参数,例如烧结温度和添加到结构中的PMMA的量。截面TEM和电子断层扫描对于开发新型太阳能电池结构以及发现结构中的各种缺陷非常有用。

著录项

  • 作者

    Suh, Youngjoon.;

  • 作者单位

    The University of Texas at Dallas.;

  • 授予单位 The University of Texas at Dallas.;
  • 学科 Alternative Energy.;Engineering Materials Science.;Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2012
  • 页码 136 p.
  • 总页数 136
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 康复医学;
  • 关键词

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