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首页> 外文期刊>Polyhedron: The International Journal for Inorganic and Organometallic Chemistry >Synthesis and characterization of rigid +2 and +3 heteroleptic dinuclear ruthenium(II) complexes
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Synthesis and characterization of rigid +2 and +3 heteroleptic dinuclear ruthenium(II) complexes

机译:刚性+2和+3杂配双核钌(II)配合物的合成与表征

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Synthesis and characterization of the dinuclear ruthenium coordination complexes with heteroleptic ligand sets, [Cl(terpy)Ru(tpphz)Ru(terpy)Cl](PF _6)_2 (7) and [(phen)_2Ru(tpphz)Ru(terpy)Cl] (PF_6)_3 (8), are reported. Both structures contain a tetrapyrido[3,2-α:2′,3′-c:3″,2″-h:2″, 3″-j]phenazine (tpphz) (6) ligand bridging the two metal centers. Complex 7 was obtained via ligand exchange between, RuCl_2(terpy)DMSO (5) and a tpphz bridge. Complex 8 was obtained via ligand exchange between, [Ru(phen)_2tpphz](PF_6)_2 (4) and RuCl _2(terpy)DMSO (5). Metal-to-ligand-charge-transfer (MLCT) absorptions are sensitive to ligand set composition and are significantly red-shifted due to more electron donating ligands. Complexes 7-9 have been characterized by analytical, spectroscopic (IR, NMR, and UV-Vis), and mass spectrometric techniques. The electronic spectral properties of 7, 8, and [(phen) _2Ru(tpphz)Ru(phen)_2](PF_6)_4 (9), a previously reported +4 analog, are presented together. The different terminal ligands of 7, 8, and 9 shift the energy of the MLCT and the π-π* transition of the bridging ligand. These shifts in the spectra are discussed in the context of density functional theory (DFT). A model is proposed suggesting that low-lying orbitals of the bridging ligand accept electron density from the metal center which can facilitate electron transfer to nanoparticles like single walled carbon nanotubes and colloidal gold.
机译:具有杂配基集[Cl(terpy)Ru(tpphz)Ru(terpy)Cl](PF _6)_2(7)和[(phen)_2Ru(tpphz)Ru(terpy)的双核钌配位化合物的合成与表征报道[C1](PF_6)_3(8)。两个结构均包含桥接两个金属中心的四吡啶并[3,2-α:2',3'-c:3“,2” -h:2“,3” -j]吩嗪(tpphz)(6)配体。通过RuCl_2(terpy)DMSO(5)和tpphz桥之间的配体交换获得了配合物7。通过[Ru(phen)_2tpphz](PF_6)_2(4)和RuCl _2(terpy)DMSO(5)之间的配体交换获得配合物8。金属到配体的电荷转移(MLCT)吸收对配体组组成敏感,并且由于有更多的供电子配体而明显红移。配合物7-9已通过分析,光谱(IR,NMR和UV-Vis)和质谱技术进行了表征。一起显示了先前报道的+4类似物7、8和[[phen] _2Ru(tpphz)Ru(phen)_2](PF_6)_4(9)的电子光谱性质。 7、8和9的不同末端配体会转移MLCT的能量和桥接配体的π-π*跃迁。光谱中的这些变化是在密度泛函理论(DFT)的背景下讨论的。提出了一个模型,该模型表明架桥配体的低轨道接受来自金属中心的电子密度,这可以促进电子转移到纳米粒子,如单壁碳纳米管和胶体金。

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