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Dynamics of electron transfer reactions in ruthenium-based donor-chromophore-acceptor complexes involving phenothiazine-type donors.

机译:涉及吩噻嗪型供体的钌基供体-发色团-受体复合物中电子转移反应的动力学。

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摘要

A series of electron donating groups were synthesized to study the effect of driving force on the electron transfer between the donor and a photoexcited trisbipyridineruthenium (II) chromophore. The driving force for the electron transfer reaction is directly related to the oxidation potential of the donor. The findings can be understood in terms of a combination of driving force and a π-π interaction between the donor and the chromophore.; The π-π interaction was investigated to determine its role in the electron transfer reaction. To this end, a series of bipyridine-like ligands were used to make chromophores that either favored or hindered the π-π interaction. The existence of the π-π interaction was shown by spectroscopy and NMR studies. The electron transfer rates for the ligand series reflect both the importance of the π-π interaction and driving force in these systems (ligand substitution affects the emission energy for a chromophore which in turn affects the driving force for the electron transfer reaction).; The effect of the π-π interaction on the electron transfers in donor-chromophore-acceptor complexes was investigated in bimolecular quenching experiments between donor and chromophore-acceptor complexes. The results can be understood in terms of a scheme where a ground state π-π interaction between the donor and the chromophore is the primary mode of electron transfer in these systems. The π-π interaction is also used to explain the high quantum efficiency to the charge-separated state, where both the donor and the acceptor have undergone electron transfers with the chromophore.
机译:合成了一系列电子给体基团,以研究驱动力对供体与光激发的三联吡啶钌(II)生色团之间电子转移的影响。电子转移反应的驱动力与施主的氧化电位直接相关。可以根据驱动力和供体与生色团之间的π-π相互作用的组合来理解这些发现。研究了π-π相互作用以确定其在电子转移反应中的作用。为此,使用了一系列联吡啶样配体来制造发色团,该发色团促进或阻碍了π-π相互作用。光谱和NMR研究表明存在π-π相互作用。配体系列的电子转移速率反映了这些系统中π-π相互作用和驱动力的重要性(配体取代影响生色团的发射能量,进而影响电子转移反应的驱动力)。在供体和生色团-受体配合物之间的双分子猝灭实验中研究了π-π相互作用对供体-生色团-受体配合物中电子转移的影响。这些结果可以通过一种方案来理解,其中供体与生色团之间的基态π-π相互作用是这些系统中电子转移的主要方式。 π-π相互作用还用于解释电荷分离状态的高量子效率,在该状态下,供体和受体都经历了生色团的电子转移。

著录项

  • 作者

    Limoges, Bradford Robert.;

  • 作者单位

    Colorado State University.;

  • 授予单位 Colorado State University.;
  • 学科 Chemistry Inorganic.
  • 学位 Ph.D.
  • 年度 2001
  • 页码 115 p.
  • 总页数 115
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 无机化学;
  • 关键词

  • 入库时间 2022-08-17 11:47:03

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