首页> 外文期刊>Inorganica Chimica Acta >Synthesis, spectroscopic and redox properties of some ruthenium(II) thiosemicarbazone complexes: Structural description of four of these complexes
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Synthesis, spectroscopic and redox properties of some ruthenium(II) thiosemicarbazone complexes: Structural description of four of these complexes

机译:某些硫代半碳钌(II)配合物的合成,光谱和氧化还原性质:其中四种配合物的结构描述

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Sixteen neutral mixed ligand thiosemicarbazone complexes of ruthenium having general formula [Ru(PPh3)(2)L-2], where LH = 1-(arylidine)4-aryl thiosemicarbazones, have been synthesized and characterized. All complexes are diamagnetic and hence ruthenium is in the +2 oxidation state (low-spin d(6), S = 0). The complexes show several intense peaks in the visible region due to allowed metal to ligand charge transfer transitions. The structures of four of the complexes have been determined by single-crystal X-ray diffraction and they show that thiosemicarbazone ligands coordinate to the ruthenium center through the hydrazinic nitrogen and sulfur forming four-membered chelate rings with ruthenium in N2S2P2 coordination environment. In dichloromethane solution, the complexes show two quasi-reversible oxidative responses corresponding to loss of electron from HOMO and HOMO - 1. The E-0 values of the above two oxidations shows good linear relationship with Hammett substituents constant (sigma) as well as with the HOMO energy of the molecules calculated by the EHMO method. A DFT calculation on one representative complex suggests that there is appreciable contribution of the sulfur p-orbitals to the HOMO and HOMO - 1. Thus, assignment of the oxidation state of the metal in such complexes must be made with caution. (c) 2005 Elsevier B.V. All rights reserved.
机译:合成并表征了十六种具有通式[Ru(PPh3)(2)L-2]的钌的中性混合配位体硫半碳氮鎓络合物,其中LH = 1-(芳基)4-芳基硫半碳氮酮。所有复合物都是抗磁性的,因此钌处于+2氧化态(低旋转d(6),S = 0)。由于允许的金属到配体的电荷转移跃迁,该络合物在可见光区域显示出几个强烈的峰。四个配合物的结构已通过单晶X射线衍射确定,结果表明,在N2S2P2配位环境中,硫代半脲配体通过肼氮和硫与钌形成四元螯合环而与钌中心配位。在二氯甲烷溶液中,配合物显示出两个准可逆的氧化反应,对应于HOMO和HOMO-1中的电子损失。上述两个氧化的E-0值与Hammett取代基常数(sigma)以及与通过EHMO方法计算的分子的HOMO能量。通过对一个代表性络合物的DFT计算表明,硫p轨道对HOMO和HOMO-1的贡献很大。因此,在此类络合物中金属的氧化态的分配必须谨慎。 (c)2005 Elsevier B.V.保留所有权利。

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