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Intramolecular, environmental and spin state contributions to electron transfer reactivity of transition metal complexes.

机译:分子内,环境和自旋态对过渡金属配合物的电子转移反应性的贡献。

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摘要

The object of this research is to understand relationships between structure and electron transfer reactivity of transition metal complexes by examining electrochemical activation parameters for several MN63+/2+ (M = Fe, Ni, Co, Ru) couples that undergo varying amounts of structural change as a result of oxidation or reduction. For cases involving Fe and Co unusually large values of enthalpies (ΔH‡ exp) and entropies (ΔS‡exp) of activation as well as values of electrode half-reaction entropies (ΔS Orc) are determined from measurements of the temperature dependence of electrochemical rate constants (ks,h) and formal electrode potentials (EO′). This work examines the possibility that these anomolous parameters reflect the influence of either coupled inner- and outer-shell reorganizations or spin multiplicity changes that accompany electron transfer. Electrode half-reaction entropies, ΔSO rc are measured for four M(tacn)23+/2+ (M = Fe, Ni, Co, Ru; tacn = 1,4,7-triazacyclononane) redox couples as a function of solvent and electrolyte type and concentration. These couples undergo differing amounts of inner-shell reorganization as a result of electron transfer and thereby serve to probe the possibility of coupling between inner and outer-shell reorganizations. Values of ΔSOrc are observed to be metal dependent and are shown to arise primarily from vibrational and electronic contributions to intramolecular entropy. Entropy measurements are referenced to the Ru3+/2+ couple, which is characterized by small inner-shell reorganization and should be controlled mostly by outer-shell effects. Values of Δ(ΔSOrc)M-Ru obtained from data in seven solvents are roughly solvent independent indicating that, if inner- and outer-shell reorganizations are coupled during electron transfer, this fact is not reflected in the solvent dependence of ΔS Orc.
机译:这项研究的目的是通过检查几种MN63 + / 2 +(M = Fe,Ni,Co,Ru)偶对的电化学活化参数,以了解过渡金属配合物的结构与电子转移反应性之间的关系。氧化或还原的结果。对于涉及Fe和Co的情况,通过测量电化学速率对温度的依赖性,可以确定活化的焓(ΔH‡exp)和熵(ΔS‡exp)以及电极半反应熵(ΔSOrc)的值异常大常数(ks,h)和形式电极电位(EO')。这项工作检验了这些阳极参数反映了耦合的内壳和外壳重组或伴随电子转移的自旋多重性变化的影响的可能性。测量了四个M(tacn)23 + / 2 +(M = Fe,Ni,Co,Ru; tacn = 1,4,7-三氮杂环壬烷)氧化还原对的电极半反应熵ΔSOrc与溶剂和电解质类型和浓度。这些对由于电子转移而经历不同程度的内壳重组,因此用于探究内壳重组和外壳重组之间耦合的可能性。观察到ΔSOrc的值与金属有关,并且显示出主要是由于振动和电子对分子内熵的贡献所致。熵的测量参考Ru3 + / 2 +对,其特征是内壳重组小,应主要由外壳效应控制。从七种溶剂中的数据获得的Δ(ΔSOrc)M-Ru值大致与溶剂无关,这表明,如果在电子转移过程中内壳和外壳重组发生耦合,则这一事实不会反映在ΔSOrc的溶剂依赖性上。

著录项

  • 作者

    Turner, Jeffrey Wayne.;

  • 作者单位

    Purdue University.;

  • 授予单位 Purdue University.;
  • 学科 Chemistry Inorganic.
  • 学位 Ph.D.
  • 年度 2000
  • 页码 124 p.
  • 总页数 124
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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