首页> 外文期刊>Inorganica Chimica Acta >Tuning of redox potential and visible absorption band of ruthenium(II) complexes of (benzimidazolyl) derivatives: Synthesis, characterization, spectroscopic and redox properties, X-ray structures and DFT calculations
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Tuning of redox potential and visible absorption band of ruthenium(II) complexes of (benzimidazolyl) derivatives: Synthesis, characterization, spectroscopic and redox properties, X-ray structures and DFT calculations

机译:(苯并咪唑基)衍生物的钌(II)配合物的氧化还原电势和可见吸收带的调节:合成,表征,光谱和氧化还原性质,X射线结构和DFT计算

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Six ruthenium(II) complexes have been prepared using the tridentate ligands 2,6-bis(benzimidazolyl) pyridine and bis(2-benzimidazolyl methyl) amine and having 2,2'-bipyridine, 2,2':6',2 ''-terpyridine, PPh3, MeCN and chloride as coligands. The crystal structures of three of the complexes trans-[Ru(bbpH(2))(PPh3)(2)(CH3CN)I(ClO4)(2) center dot 2H(2)O (2), [Ru(bbpH(2))(bpy)Cl]ClO4 (3) and [Ru(bbpH(2))(terpy)](ClO4)(2) (4) are also reported. The complexes show visible region absorption at 402-517 nm, indicating that it is possible to tune the visible region absorption by varying the ancillary ligand. Luminescence behavior of the complexes has been studied both at RT and at liquid nitrogen temperature (LNT). Luminescence of the complexes is found to be insensitive to the presence of dioxygen. Two of the complexes [Ru(bbpH(2))(bpy)Cl]ClO4 (3) and [Ru(bbpH(2))(terpy]ClO4)(2) (4) show RT emission in the NIR region, having lifetime, quantum yield and radiative constant values suitable for their application as NIR emitter in the solid state devices. The DFT calculations on these two complexes indicate that the metal t(2g) electrons are appreciably delocalized over the ligand backbone. (C) 2006 Elsevier B.V. All rights reserved.
机译:使用三齿配体2,6-双(苯并咪唑基)吡啶和双(2-苯并咪唑基甲基)胺制备了六种钌(II)配合物,它们具有2,2'-联吡啶,2,2':6',2' -吡啶,PPh3,MeCN和氯化物为大肠菌。三种配合物的晶体结构反式[Ru(bbpH(2))(PPh3)(2)(CH3CN)I(ClO4)(2)中心点2H(2)O(2),[Ru(bbpH( 2))(bpy)Cl] ClO4(3)和[Ru(bbpH(2))(terpy)](ClO4)(2)(4)也有报道。该络合物在402-517nm处显示可见光区吸收,表明可以通过改变辅助配体来调节可见光区吸收。在室温和液氮温度(LNT)下都研究了配合物的发光行为。发现复合物的发光对双氧的存在不敏感。两种配合物[Ru(bbpH(2))(bpy)Cl] ClO4(3)和[Ru(bbpH(2))(terpy] ClO4)(2)(4)在NIR区域显示RT发射,具有寿命,量子产率和辐射常数值适合用作固态设备中的NIR发射器。对这两个络合物的DFT计算表明,金属t(2g)电子在配体主链上明显地离域。 (C)2006 Elsevier B.V.保留所有权利。

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