首页> 外文期刊>Journal of Chemical Sciences >Imidazolidine ring as a reduced heterocyclic spacer in a new all-N-donor e???-bis(bidentate) Schiff base ligand: Synthesis, characterization and electron transfer properties of imidazolidine-bridged dicopper complexes
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Imidazolidine ring as a reduced heterocyclic spacer in a new all-N-donor e???-bis(bidentate) Schiff base ligand: Synthesis, characterization and electron transfer properties of imidazolidine-bridged dicopper complexes

机译:咪唑烷环作为新型全N-供体e ???-双(双齿)席夫碱配体中的还原杂环间隔基:咪唑烷桥联的双铜配合物的合成,表征和电子转移性质

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Low-temperature stoichiometric Schiff base reaction in air in 3 : 1 mole ratio between benzaldehyde and triethylenetetramine (trien) in methanol yields a novel tetraaza m-bis(bidentate) acyclic ligand L. It was characterized by elemental analysis, IR, EI mass and NMR (1H and 13C) spectra. The formation of a five-membered imidazolidine ring from the ethylenediamine backbone as a spacer-cumbridging unit gives rise to a new type of imidazolidine-bridged ligand. A geometric optimisation was made of the synthesized ligand and its complexes by the method of molecular mechanics (MM2) method in order to establish the stable conformations. This hitherto unknown tetraaza acyclic ligand affords new cationic dicopper(I/I) and dicopper(II/II) complexes in good yield. Dicopper(II/II) complex displays weak e?‘‘-e?‘‘ transition bands in the visible region, while dicopper(I/I) complex displays strong MLCT band in the same region. Both the dinuclear complexes are of non-intimate nature and show interesting solution electrochemical behaviour. EPR spectral study of e???-bis(imidazolidino) bridged dicopper(II/II) complex also supports the non-communicative nature of the two copper centres within the same molecule.
机译:空气中的低温化学计量Schiff碱反应,在甲醇中的苯甲醛和三亚乙基四胺(trien)之间的摩尔比为3:1时,产生了一种新颖的四氮杂m-双(双齿)无环配体L。其特征在于元素分析,IR,EI质量和NMR(1H和13C)光谱。由乙二胺主链作为间隔基-杂桥单元形成五元咪唑烷环产生了新型的咪唑烷桥联配体。通过分子力学(MM2)方法对合成的配体及其配合物进行了几何优化,以建立稳定的构象。这种迄今未知的四氮杂非环状配体以良好的产率提供了新的阳离子双铜(I / I)和双铜(II / II)配合物。 Dicopper(II / II)复合物在可见光区域显示弱的e?'-e?'过渡带,而dicopper(I / I)复合物在同一区域显示强MLCT带。两种双核配合物均具有非亲密性质,并且显示出有趣的溶液电化学行为。 E--双(咪唑烷基)桥联双铜(Ⅱ/Ⅱ)配合物的EPR谱研究也支持同一分子内两个铜中心的非通信性质。

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