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The Electronic Structure of the Pyranopterin Dithiolene Cofactor and Radical Reporters of Excited State Interactions.

机译:吡喃蝶呤二硫代辅因子的电子结构和激发态相互作用的自由基报道。

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摘要

Crystal structures of multiple molybdenum enzymes clearly demonstrate interesting structural distortions involving the pyranopterin dithiolene. These distortions can be correlated with pyranopterin oxidation state through the use of DFT geometry optimized structures of the possible oxidation states, and these are correlated with enzyme family. The potential role of the pyranopterin dithiolene in electron transfer in the varied enzyme familes has been explored through the use of non-equilibrium Green's function (NEGF) electron transport calculations. These calculations demonstrate clear differences in electron transport behavior as a function of pyranopterin oxidation state.;The Jahn-Teller effect can strongly impact the geometric and electronic structures of molecules which are Jahn-Teller or pseudo-Jahn-Teller active. An intriguing Jahn-Teller effect has been explored in Cp 2M(bdt) model compounds, which are shown to be useful models for studying pseudo Jahn-Teller effects in metal dithiolenes and pyranopterin molybdenum enzymes. Easily synthesized, flexible architecture, and small size enable for complete spectroscopic and theoretical characterization of these classic Cp2M(bdt) compounds. The three metals studied (M=Ti,V, or Mo) span the d-electron counts from n=0-2, which are the same d electron counts found in molybdenum enzymes. These model systems are shown to be susceptible to either a strong, weak, or no pseudo Jahn-Teller effect, which changes over several orders of magnitude upon oxidation or reduction.;Pendant radicals are shown to be powerful tools probes to better understand the electronic structures of molecules. Radical elaborated square-planar Pt(II) donor-acceptor systems are studied by MCD spectroscopy, even though the parent non-radical elaborated compound is formally diamagnetic. This allows for a level of understanding so far unseen for this well-studied family of molecules. Exchange mixing between the pendant radical and photogenerated open-shell singlet states is shown to be crucial to understanding the complexities associated with the MCD results. This has enabled the determination of many key spectroscopic and electronic structure parameters that are essentially unobtainable by any other methodologies.
机译:多种钼酶的晶体结构清楚地表明了涉及吡喃蝶呤二硫辛烯的有趣的结构变形。通过使用可能的氧化态的DFT几何优化结构,可以将这些变形与吡喃蝶呤的氧化态相关联,并且将这些变形与酶家族相关联。通过使用非平衡格林函数(NEGF)电子传输计算,探索了吡喃蝶呤二硫代烯在各种酶家族中电子转移的潜在作用。这些计算证明了电子传输行为与吡喃蝶呤氧化态的函数存在明显差异。Jahn-Teller效应可以强烈影响Jahn-Teller或拟Jahn-Teller活性分子的几何结构和电子结构。在Cp 2M(bdt)模型化合物中探索了一种引人入胜的Jahn-Teller效应,这些化合物被证明是研究金属二硫代辛烯和吡喃蝶呤钼酶中拟Jahn-Teller效应的有用模型。易于合成,灵活的结构以及较小的尺寸使得这些经典的Cp2M(bdt)化合物具有完整的光谱和理论特征。研究的三种金属(M = Ti,V或Mo)的d电子计数范围为n = 0-2,这与钼酶中的d电子计数相同。这些模型系统显示很容易受到强,弱或没有伪Jahn-Teller效应的影响,该效应在氧化或还原时会改变几个数量级。悬挂的自由基被证明是强大的工具探针,可以更好地理解电子分子的结构。即使母体非自由基修饰的化合物形式上是反磁性的,自由基修饰的方平面Pt(II)供体-受体系统也可以通过MCD光谱研究。这使得对这一分子分子家族的研究迄今尚不了解。侧基与光生开壳单线态之间的交换混合对于理解与MCD结果相关的复杂性至关重要。这使得能够确定许多其他方法基本上无法获得的许多关键光谱和电子结构参数。

著录项

  • 作者

    Stein, Benjamin William.;

  • 作者单位

    The University of New Mexico.;

  • 授予单位 The University of New Mexico.;
  • 学科 Inorganic chemistry.;Biochemistry.;Chemistry.
  • 学位 Ph.D.
  • 年度 2015
  • 页码 165 p.
  • 总页数 165
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:52:36

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