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首页> 外文期刊>Journal of Physical Organic Chemistry >The key Cl- ligand for metal-to-ligand charge transfer in mononuclear terpyridine ruthenium(II) and binuclear ruthenium(II) tetrapyridylpyrazine complexes
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The key Cl- ligand for metal-to-ligand charge transfer in mononuclear terpyridine ruthenium(II) and binuclear ruthenium(II) tetrapyridylpyrazine complexes

机译:单核环吡啶钌(II)和双核钌(II)四吡啶基吡嗪配合物中金属至配体电荷转移的关键Cl-配体

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摘要

Electronic structures of binuclear ruthenium complexes [Ru _2(terpy)_2(tppz)]~(4+) (1A) and [Ru _2Cl_2(L)_2(tppz)]~(2+) {L = bpy (2A), phen (3A), and dpphen (4A)} were studied by density functional theory calculations. Abbreviations of the ligands (Ls) are bpy = 2,2′-bipyridine, phen = 1,10-phenanthroline, dpphen = 4,7-diphenyl-1,10-phenanthroline, terpy = 2,2′:6′,2″-terpyridine, and tppz = tetrakis(2-pyridyl) pyrazine. Their mononuclear reference complexes [Ru(terpy)_2] ~(2+) (1B) and [RuClL(terpy)]+ {L = bpy (2B), phen (3B), and dpphen (4B)} were also examined. Geometries of these mononuclear and binuclear Ru(II) complexes were fully optimized. Their geometric parameters are in good agreement with the experimental data. The binuclear complexes were characterized by electrospray ionization mass spectrometry, UV-Vis spectroscopy, and cyclic voltammograms. Hexafluorophosphate salts of binuclear ruthenium complexes of 3A and 4A were newly prepared. The crystal structure of binuclear complex 1A(PF_6)_4 was also determined. Orbital interactions were analyzed to characterize the metal-to-ligand charge-transfer (MLCT) states in these complexes. The Cl- ligand works to raise the orbital energy of the metal lone pair, which leads to the low MLCT state.
机译:双核钌配合物[Ru _2(terpy)_2(tppz)]〜(4+)(1A)和[Ru _2Cl_2(L)_2(tppz)]〜(2+){L = bpy(2A),通过密度泛函理论计算研究了phen(3A)和dpphen(4A)}。配体(Ls)的缩写是bpy = 2,2'-联吡啶,phen = 1,10-菲咯啉,dpphen = 4,7-二苯基-1,10-菲咯啉,terpy = 2,2':6',2 ″-吡啶并tppz =四(2-吡啶基)吡嗪。还检查了它们的单核参考复合物[Ru(terpy)_2]〜(2+)(1B)和[RuClL(terpy)] + {L = bpy(2B),phen(3B)和dpphen(4B)}。这些单核和双核Ru(II)配合物的几何形状已完全优化。它们的几何参数与实验数据非常吻合。通过电喷雾电离质谱,UV-Vis光谱和循环伏安图对双核络合物进行表征。新制备了3A和4A双核钌配合物的六氟磷酸盐。还确定了双核络合物1A(PF_6)_4的晶体结构。分析了轨道相互作用以表征这些配合物中的金属至配体电荷转移(MLCT)状态。 Cl-配体起着提高金属孤对的轨道能的作用,从而导致低MLCT状态。

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