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The synthesis, spectroscopic and electrochemical characterisation of ruthenium(II) and osmium(II) polypyridyl complexes containing aryl-bridged 1, 2,4-traizole ligands

机译:含有芳基桥联1,2,4-三唑配体的钌(II)和锇(II)多吡啶配合物的合成,光谱和电化学表征

摘要

The synthesis, spectroscopic and electrochemical characterisation of ruthenium(II) and osmium(II) polypyridyl mononuclear and dinuclear complexes containing arylsubstituted 5-(2-pyridyl)-l,2,4-triazoles are described. The methods of characterisation include High Performance Liquid Chromatography, ’H-NMR, UV/Visible spectroscopy, fluorimetry, electrochemistry and spectroelectrochemistry. The synthesis and characterisation of the bridging ligands used in the metal complexes are described in Chapter 3. The main chapter, Chapter 4, details the synthesis and characterisation of the mononuclear and dinuclear Ru(II) and Os(II) bipyridyl complexes of two of these ligands, 1,3- and l,4-bis(5-(2-pyridyl)-4//-l,2,4- triazol-3-yl)benzene. An examination of the electrochemical absorption and emission data for the mononuclear and dinuclear complexes reveals that the interaction between the metal centres in the dinuclear complexes is in fact very weak. Evidence for this comes from the identical first oxidation and reduction potentials and absorption and emission maxima (within experimental error) for the mononuclear and corresponding dinuclear complexes. Further confirmation of a weak metal-metal interaction comes from the observation that identical absorption spectra are exhibited by the mixed-metal Ru/Os complexes and 1:1 mixtures of their corresponding homometallic dinuclear complexes. However spectroelectrochemical studies indicate the presence of intervalence transitions in some cases for the mixed-valence species. Metal-metal interactions of 200-300 cm"1 are calculated. Furthermore, luminescence studies on the Ru/Os complexes in both their deprotonated and protonated forms suggest that an intramolecular energy transfer from the Ru-based unit to the osmium component takes place.ududChapter 5 describes the synthesis and characterisation of the Ru(II) and Os(II) complexes of the 7V,iV-methylated ligand. l,2-bis(l-methyl-3-(2-pyridyl)-l,2,4- triazol-5-yl)benzene. Two isomers in which the M(bpy) 2 unit is coordinated via the pyridyl nitrogen and either the N2 or N4 site of the triazole ring are isolated for the mononuclear complexes. In the case of the dinuclear complexes, although two isomers can be distinguished using HPLC, only the N2/N2 coordinated isomers were isolated. Photophysical and electrochemical data for these complexes indicate that the substitution of N1 of the triazole ring results in the ligand having reduced adonor capacity and increased ^-acceptor capability.ududFinally, Chapter 6 describes the preliminary synthesis and characterisation of the ruthenium mononuclear and dinuclear complexes of the hydroquinone-substituted pyridyltriazole ligand, l,4-dihydroxy-2,5-bis(3-(2-pyridyl)-l,2,4-triazol-l-yl)benzene. The properties of these complexes are complicated by the presence of a redox-active bridge. Nevertheless it appears that the metal-metal interaction found for all the complexes used in this study is quite weak. Therefore it may be concluded that aryltype spacers are weak mediators of metal-metal interaction.
机译:描述了含有芳基取代的5-(2-吡啶基)-1,2,4-三唑的钌(II)和(II)多吡啶基单核和二核配合物的合成,光谱和电化学表征。表征方法包括高效液相色谱,1 H-NMR,紫外/可见光谱,荧光法,电化学和光谱电化学。金属配合物中使用的桥联配体的合成与表征在第3章中进行了描述。第四章的主要章节详细介绍了两种金属的单核和双核Ru(II)和Os(II)联吡啶配合物的合成与表征。这些配体,1,3-和1,4-双(5-(2-吡啶基)-4 / -1,2,4-三唑-3-基)苯。对单核和双核配合物的电化学吸收和发射数据的检查表明,双核配合物中金属中心之间的相互作用实际上非常弱。证明来自单核和相应的双核配合物的相同的第一氧化和还原电势以及吸收和发射最大值(在实验误差内)。弱金属与金属相互作用的进一步确认来自以下观察:混合金属Ru / Os配合物及其对应的同金属双核配合物的1:1混合物显示出相同的吸收光谱。然而,光谱电化学研究表明,在某些情况下,混合价物种存在间隔跃迁。计算出200-300 cm-1的金属-金属相互作用。此外,对Ru / Os配合物的去质子化和质子化形式的发光研究表明,发生了分子内能量从Ru基单元转移到the组分上。 ud ud第5章介绍了7V,iV-甲基化配体的Ru(II)和Os(II)配合物的合成和表征.l,2-双(1-甲基-3-(2-吡啶基)-1 ,2,4-三唑-5-基)苯分离出两个异构体,其中M(bpy)2单元通过吡啶基氮与三唑环的N2或N4位点配位,形成单核络合物。在双核配合物的情况下,尽管可以使用HPLC区分两个异构体,但仅分离了N2 / N2配位的异构体,这些配合物的光物理和电化学数据表明,三唑环的N1取代导致配体的供体能力降低并提高了^-受体的功能。 ud ud最后,Chapte r 6描述了对苯二酚取代的吡啶基三唑配体1,4-二羟基-2,5-双(3-(2-吡啶基)-1,2,4-三唑)钌的单核和双核配合物的初步合成和表征-l-基)苯。氧化还原活性桥的存在使这些配合物的性质变得复杂。然而,似乎这项研究中使用的所有配合物之间的金属-金属相互作用都非常弱。因此可以得出结论,芳基间隔基是金属与金属相互作用的弱介体。

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  • 作者

    Weldon Frances;

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  • 年度 1998
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  • 原文格式 PDF
  • 正文语种 en
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