首页> 外文OA文献 >ELECTRONIC STRUCTURE AND BONDING FACTORS OF TRANSITION METAL - PENTADIENYL AND (FLUOROALKYL)PHOSPHINE COMPLEXES: PHOTOELECTRON SPECTROSCOPY AND COMPUTATIONAL METHODS
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ELECTRONIC STRUCTURE AND BONDING FACTORS OF TRANSITION METAL - PENTADIENYL AND (FLUOROALKYL)PHOSPHINE COMPLEXES: PHOTOELECTRON SPECTROSCOPY AND COMPUTATIONAL METHODS

机译:过渡金属-戊二烯和(氟代烷基)膦配合物的电子结构和键合因子:光电子能谱和计算方法

摘要

The research detailed in this dissertation focuses primarily on analyzing the electronic structure and bonding interactions of phosphines and pentadienyl ligands with transition metal center using valence photoelectron spectroscopy (PES) and computational methodologies. Valence photoelectron spectroscopy is the most direct experimental probe of electronic structure and bonding. The ionization features provide information on orbital interactions and characters separate from other effects, charge distributions, electron richness, electron configurations and molecular symmetry.The electronic and bonding factors of the pentadienyl ligands have been explored in the first series of high-valent pentadienyl transition metal molecules, Cp(6,6-dmch)ZrX2 (Cp = eta5-cyclopentadienyl, X = Cl, Br, I; 6,6-dmch = eta5-6,6-dimethylcyclohexadienyl). Unlike the well known Cp2ZrX2 analogues, these Cp(6,6-dmch)ZrX2 molecules are intensely colored, and reflect a dramatic reversal in the favorability of the bonding depending on the metal oxidation state. The results indicate that the color of the Cp(6,6-dmch)ZrX2 complexes is due to a 6,6-dmch ligand-to-metal charge transfer band. Compared to the Cp2ZrX2 analogs, the Cp(6,6-dmch)ZrX2 molecules have a considerably less stable HOMO that is pentadienyl-based, and an essentially unchanged metal-based LUMO. The lowest unoccupied orbital of pentadienyl is stabilized relative to cyclopentadienyl and becomes a better potential δ electron acceptor, thus contributing to the differences in structure and reactivity of the low-valent and high-valent metal complexes.The key electronic and bonding differences between simple pentadienyl, heterodienyl and cyclopentadienyl ligands in Cp*Ru(L) systems are also probed. The Cp*Ru(heteropentadienyl) molecules have extensively delocalized electronic structures and show unique electronic features compared to their simple pentadienyl counterparts. The ionization features for these systems are reassigned in this work according to experimental observations.The sigma and pi bonding effects of a fluorinated phosphine chelate ligand, dfepe, in Mo(CO)4(dfepe) and CpMn(CO)(dfepe) molecules are investigated. The PES studies reveal that the dfepe ligand is similar and slightly less effective in stabilizing the metal-based orbitals by backbonding, and the amount of stabilization is dependent on the electron richness at the metal center. The theoretical calculations do not agree well with the experimental results.
机译:本文的主要研究重点是利用价电子光谱法和计算方法分析膦和戊二烯基配体与过渡金属中心的电子结构和键相互作用。价态光电子能谱是电子结构和键合最直接的实验探针。电离特征提供了关于轨道相互作用和特性的信息,这些特性与其他效应,电荷分布,电子富集,电子构型和分子对称性分开。戊二烯基配体的电子和键合因子已在第一系列高价戊二烯基过渡金属中得到了探索。分子Cp(6,6-dmch)ZrX2(Cp = eta5-环戊二烯基,X = Cl,Br,I; 6,6-dmch = eta5-6,6-二甲基环己二烯基)。与众所周知的Cp2ZrX2类似物不同,这些Cp(6,6-dmch)ZrX2分子具有强烈的颜色,并根据金属的氧化态反映出键合性的显着逆转。结果表明,Cp(6,6-dmch)ZrX2配合物的颜色归因于6,6-dmch配体至金属的电荷转移带。与Cp2ZrX2类似物相比,Cp(6,6-dmch)ZrX2分子的戊二烯基HOMO稳定性要低得多,而金属LUMO则基本不变。相对于环戊二烯基,戊二烯基的最低未占据轨道是稳定的,并具有更好的潜力。电子受体,从而有助于低价和高价金属络合物的结构和反应性的差异。还探讨了Cp * Ru(L)系统中简单戊二烯基,杂二烯基和环戊二烯基配体之间的关键电子键和键合差异。与简单的戊二烯基对应物相比,Cp * Ru(异戊二烯基)分子具有广泛的离域电子结构,并显示出独特的电子特征。根据实验观察结果,这些系统的电离特性被重新分配。氟化膦螯合配体dfepe在Mo(CO)4(dfepe)和CpMn(CO)(dfepe)分子中的σ和pi键作用为调查。 PES研究表明,dfepe配体在通过回键稳定金属基轨道方面相似且效果稍差,并且稳定程度取决于金属中心的电子富集度。理论计算与实验结果不一致。

著录项

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    Rajapakshe Senanayake Asha;

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  • 年度 2005
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  • 原文格式 PDF
  • 正文语种 EN
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