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Electronic structure measurements of metal-organic solar cell dyes using x-ray absorption spectroscopy.

机译:使用X射线吸收光谱法测量金属有机太阳能电池染料的电子结构。

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摘要

The focus of this thesis is twofold: to report the results of X-ray absorption studies of metal-organic dye molecules for dye-sensitized solar cells and to provide a basic training manual on X-ray absorption spectroscopy techniques and data analysis. The purpose of our research on solar cell dyes is to work toward an understanding of the factors influencing the electronic structure of the dye: the choice of the metal, its oxidation state, ligands, and cage structure.;First we study the effect of replacing Ru in several common dye structures by Fe. First-principles calculations and X-ray absorption spectroscopy at the C 1s and N 1s edges are combined to investigate transition metal dyes in octahedral and square planar N cages. Octahedral molecules are found to have a downward shift in the N 1s-to-pi* transition energy and an upward shift in C 1s-to-pi* transition energy when Ru is replaced by Fe, explained by an extra transfer of negative charge from Fe to the N ligands compared to Ru. For the square planar molecules, the behavior is more complex because of the influence of axial ligands and oxidation state.;Next the crystal field parameters for a series of phthalocyanine and porphyrins dyes are systematically determined using density functional calculations and atomic multiplet calculations with polarization-dependent X-ray absorption spectra. The polarization dependence of the spectra provides information on orbital symmetries which ensures the determination of the crystal field parameters is unique. A uniform downward scaling of the calculated crystal field parameters by 5-30% is found to be necessary to best fit the spectra.;This work is a part of the ongoing effort to design and test new solar cell dyes. Replacing the rare metal Ru with abundant metals like Fe would be a significant advance for dye-sensitized solar cells. Understanding the effects of changing the metal centers in these dyes in terms of optical absorption, charge transfer, and electronic structure enables the systematic design of new dyes using less expensive materials.
机译:本论文的重点有两个方面:报告用于染料敏化太阳能电池的金属有机染料分子的X射线吸收研究结果,并提供有关X射线吸收光谱技术和数据分析的基本培训手册。我们对太阳能电池染料的研究目的是努力理解影响染料电子结构的因素:金属的选择,其氧化态,配体和笼状结构。首先,我们研究取代的效果钌在几种常见的染料结构中由铁组成。结合第一性原理计算和C 1s和N 1s边缘的X射线吸收光谱研究八面体和正方形平面N笼中的过渡金属染料。当Ru被Fe取代时,发现八面体分子的N 1s到pi *跃迁能下降,而C 1s到pi *跃迁能上升,这可以解释为: Fe与N的配体相比Ru。对于方形平面分子而言,由于轴向配体和氧化态的影响,行为更加复杂;接着,使用密度泛函计算和原子多重态(带极化)系统地确定了一系列酞菁和卟啉染料的晶体场参数-依赖的X射线吸收光谱。光谱的偏振依赖性提供了关于轨道对称性的信息,这确保了确定晶体场参数的唯一性。为了使光谱最佳拟合,必须将计算出的晶体场参数均匀向下缩放5-30%。;这项工作是正在进行的设计和测试新型太阳能电池染料的工作的一部分。用诸如Fe的丰富金属代替稀有金属Ru对于染料敏化太阳能电池而言将是一个重大进步。了解在光吸收,电荷转移和电子结构方面改变这些染料中金属中心的影响,可以使用较便宜的材料进行新染料的系统设计。

著录项

  • 作者

    Johnson, Phillip S.;

  • 作者单位

    The University of Wisconsin - Madison.;

  • 授予单位 The University of Wisconsin - Madison.;
  • 学科 Physics Molecular.
  • 学位 Ph.D.
  • 年度 2014
  • 页码 112 p.
  • 总页数 112
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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