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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Synthesis and characterization of mono- and dinuclear phenanthroline- extended tetramesitylporphyrin complexes as well as UV-Vis and EPR studies on their one-electron reduced species
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Synthesis and characterization of mono- and dinuclear phenanthroline- extended tetramesitylporphyrin complexes as well as UV-Vis and EPR studies on their one-electron reduced species

机译:单和双核菲咯啉扩展的四甲基卟啉配合物的合成与表征,以及对单电子还原物种的UV-Vis和EPR研究

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The syntheses of mononuclear compounds based on the fused porphyrin phenanthroline ligand (H_2-1) and their corresponding dinuclear porphyrin bis-bipyridine ruthenium complexes are reported. The extended π-system of the ligand is able to store electron equivalents as could be proven by the single electron reduction with KC_8 (and/or Na(Hg)) followed by subsequent UV-Vis and EPR analysis. Electron reduction could also be achieved under light illumination in a dichloromethane-triethylamine mixture. The two coordination spheres of the ligand are different so that mononuclear or (hetero)dinuclear complexes can be isolated depending on the reaction conditions. We could successfully introduce Zn, Cu and Pd into the porphyrinic unit leading to a series of mononuclear (M-1) compounds. Further, we could attach the bis-(4,4′-di-tert-butyl-2,2′-bipyridine) ruthenium fragment (Ru(tbbpy)_2 ~(2+)) to obtain dinuclear (M-1-Ru) metal complexes. In the case of Zn-1 an X-ray crystal structure could be obtained confirming the selective metallation in the porphyrinic unit. All metal complexes were isolated and characterized with standard analytical tools (elemental analysis, mass spectrometry and NMR (or EPR) spectroscopy).
机译:报道了基于稠合的卟啉菲咯啉配体(H_2-1)及其相应的双核卟啉双联吡啶钌配合物的单核化合物的合成。配体的扩展π系统能够存储电子当量,这可以通过用KC_8(和/或Na(Hg))进行单电子还原,随后的UV-Vis和EPR分析来证明。在二氯甲烷-三乙胺混合物中在光照下也可实现电子还原。配体的两个配位域不同,因此可以根据反应条件分离出单核或(杂)双核配合物。我们可以成功地将Zn,Cu和Pd引入卟啉单元,从而生成一系列单核(M-1)化合物。此外,我们可以将双-(4,4'-二叔丁基-2,2'-联吡啶)钌片段(Ru(tbbpy)_2〜(2+))附着以获得双核(M-1-Ru )金属配合物。在Zn-1的情况下,可以获得X射线晶体结构,从而证实了卟啉单元中的选择性金属化。使用标准分析工具(元素分析,质谱和NMR(或EPR)光谱)分离并表征所有金属络合物。

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