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首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Di- and tetranuclear ruthenium(II) and/or osmium(II) complexes of polypyridyl ligands bridged by a fully conjugated aromatic spacer: Synthesis, characterization, and electrochemical and photophysical studies
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Di- and tetranuclear ruthenium(II) and/or osmium(II) complexes of polypyridyl ligands bridged by a fully conjugated aromatic spacer: Synthesis, characterization, and electrochemical and photophysical studies

机译:由完全共轭芳族间隔基桥接的聚吡啶基配体的二核和四核钌(II)和/或(II)配合物:合成,表征以及电化学和光物理研究

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A series of mono-, di-, and tetranuclear homo/heterometallic complexes of Ru(II) and Os(II) based on the bridging ligand dppz(11-11')dppz (where dppz = dipyrido[3,2-a:2',3'-c]phenazine) (BL) have been synthesized and characterized. This bridging ligand is a long rigid rod with only one rotational degree of freedom and provides complete conjugation between the chromophores. The complexes synthesized are of general formula [(bpy)(2)Ru-BL](2+) [(phen)(2)/(bpy)(2)M-BL-M(bpy)(2)/(phen)(2)](4+) (M = Ru(II) and Os(II)), [(bpy)(2)Ru-BL-Os(bpy)(2)](4+), and [{(bpy)(2)Ru-BL}(3)M](8+). Detailed H-1 NMR studies of these complexes revealed that each chiral center does not influence its neighbor because of the long distance between the metal centers and the superimposed resonances of the diastereoisomers, which allowed the unambiguous assignment of the signals, particularly for homonuclear complexes. Concentration-dependent H-1 NMR studies show molecular aggregation of the mono- and dinuclear complexes in solution by pi-pi stacking. Electrospray mass spectrometry data are consistent with dimerization of mono- and dinuclear complexes in solution. Electrochemical studies show oxidations of Ru(II) and Os(II) in the potential ranges +1.38 to +1.40 and +0.92 to +1.01 V, respectively. The bridging ligand exhibits two one-electron reductions, and it appears that the added electrons are localized on the phenazene moieties of the spacer. All of these complexes show strong metal-to-ligand charge-transfer (MLCT) absorption and (MLCT)-M-3 luminescence at room temperature. Quantum yields have been calculated, and the emission lifetimes of all complexes have been measured by laser flash photolysis experiments. The luminescence intensity and lifetime data suggest that the emission due to the Ru center of the heteronuclear complexes is strongly quenched (>90%) compared to that of the corresponding model complexes. This quenching is attributed to intramolecular energy transfer from the Ru(II) center to the Os(II) center (k = (3-5) x 10(7) s(-1)) across the bridging ligand. [References: 74]
机译:基于桥联配体dppz(11-11')dppz的Ru(II)和Os(II)的单,双和四核均/杂金属配合物(其中dppz = dipyrido [3,2-a: 2',3'-c] phenazine)(BL)已合成并表征。这种桥联配体是长的刚性杆,只有一个旋转自由度,并且在生色团之间提供了完全的共轭。合成的配合物具有通式[(bpy)(2)Ru-BL](2+)[(phen)(2)/(bpy)(2)M-BL-M(bpy)(2)/(phen )(2)](4+)(M = Ru(II)和Os(II)),[(bpy)(2)Ru-BL-Os(bpy)(2)](4+)和[{ (bpy)(2)Ru-BL}(3)M](8+)。对这些配合物的详细H-1 NMR研究表明,由于金属中心之间的距离较长以及非对映异构体的叠加共振,每个手性中心均不会影响其相邻分子,这使得信号的分配明确无误,尤其是对于同核配合物。浓度依赖的H-1 NMR研究表明,通过pi-pi堆积可以使溶液中的单核和双核配合物发生分子聚集。电喷雾质谱数据与溶液中单核和双核配合物的二聚化相一致。电化学研究表明,Ru(II)和Os(II)的氧化分别在+1.38至+1.40和+0.92至+1.01 V的电位范围内。桥接配体表现出两个单电子还原,并且似乎添加的电子位于间隔基的苯并部分上。所有这些络合物在室温下均显示出强大的金属至配体电荷转移(MLCT)吸收和(MLCT)-M-3发光。已经计算出了量子产率,并且通过激光闪光光解实验测量了所有配合物的发射寿命。发光强度和寿命数据表明,与相应的模型配合物相比,由于异核配合物的Ru中心引起的发射被强烈淬灭(> 90%)。这种淬灭归因于分子内能量从桥接配体从Ru(II)中心转移到Os(II)中心(k =(3-5)x 10(7)s(-1))。 [参考:74]

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