首页> 外文期刊>Journal of the Chemical Society, Dalton Transactions. Inorganic Chemistry >Spectroscopic and electrochemical studies of a series of copper(I) and rhenium(I) complexes with substituted dipyrido[3,2-a : 2 ',3 '-c]phenazine ligands
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Spectroscopic and electrochemical studies of a series of copper(I) and rhenium(I) complexes with substituted dipyrido[3,2-a : 2 ',3 '-c]phenazine ligands

机译:一系列具有取代的吡啶并[3,2-a:2',3'-c]吩嗪配体的铜(I)和rh(I)配合物的光谱和电化学研究

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Copper(I) and rhenium(I) complexes with the ligand dipyrido[3,2,-a:2',3'-c]phenazine (dppz) and a number of substituted analogues have been synthesized. Their spectroscopic and electrochemical properties have been studied. It is found that the lowest-energy transition for the complexes is metal-to-ligand charge transfer (MLCT) in nature. This has a low epsilon value. The resonance Raman spectra for the complexes show groups of bands that shift with substitution at the ligand and groups that remain unchanged in wavenumber. Electrochemical reduction of the complexes resulted in the formation of the ligand radical anion species for all but one system. This was confirmed by UV/VIS spectroelectrochemistry. Using resonance Raman spectroelectrochemistry marker bands have been identified for the radical anion species. The excited states of the complexes were studied by excited-state electronic absorption and time-resolved resonance Raman techniques. The former spectra are ambiguous as to the nature of the lowest excited state; however, the latter spectra confirm that this state is ligand-centred for complexes of dppz and its 11-methyl derivative. Complexes with the 11-nitro derivative appear to form excited states that are MLCT in nature. [References: 48]
机译:铜(I)和rh(I)与配体二吡啶并[3,2,-a:2',3'-c]吩嗪(dppz)的配合物和许多取代的类似物已经合成。已经研究了它们的光谱和电化学性质。发现该络合物的最低能量跃迁本质上是金属至配体的电荷转移(MLCT)。这具有较低的ε值。配合物的共振拉曼光谱显示出在配体处随着取代而移动的能带组和在波数上保持不变的组。配合物的电化学还原导致除一个系统外的所有系统均形成配体自由基阴离子。通过UV / VIS光谱电化学证实了这一点。使用共振拉曼光谱电化学标记带已被确定为自由基阴离子种类。通过激发态电子吸收和时间分辨共振拉曼技术研究了配合物的激发态。前者的光谱对于最低激发态的性质是模棱两可的。但是,后一光谱证实了该状态对于dppz及其11-甲基衍生物的络合物是以配体为中心的。与11-硝基衍生物形成的复合物似乎形成了自然界中为MLCT的激发态。 [参考:48]

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