Department of Chemistry, Clemson University, Clemson, SC 29634-0973, USA.
Dalton Trans. 2011 Apr 14;40(14):3711-23. doi: 10.1039/c1dt10104h. Epub 2011 Mar 7.
Coordination of Cu(I) halides with N,N'-dimethylimidazole selone (dmise) and thione (dmit) ligands was examined by treating CuX (X = Cl, Br, I) with one or two equivalents of dmise or dmit. The reaction of CuI and CuBr with one molar equivalent of dmise results in unusual selenium-bridged tetrameric Cu(4)(μ-dmise)(4)(μ-X)(2)X(2) copper complexes with average Cu-Se bond lengths of 2.42 Å and a Cu(2)(μ-X)(2) core (X = I (1) or Br (6)) that's in a rhomboidal structure. The reaction of CuX (X = Cl, Br, and I) with two equivalents of dmit or dmise results in trigonal planar Cu(I) complexes of two different conformations with the formula Cu(dmit)(2)X (3a, 3b, 4, and 7) or Cu(dmise)(2)X (2, 5, and 8) with average Cu-S and Cu-Se bond lengths of 2.23 Å and 2.34 Å, respectively. The coordination geometry around the copper center in complexes 1 to 8 is determined by the type of halide and chalcogenone ligand used, intramolecular π-π interactions, and short contact interactions between X-H (X = I, Br, Cl, Se or S). The theoretical DFT calculations are in good agreement with experimental X-ray structural data and indicate that dmise ligands are required for formation of the tetrameric complexes 1 and 6. Electrochemical studies show that the trigonal copper selone complexes have more negative potentials relative to analogous copper thione complexes by an average of 108 mV.
通过用 N,N'-二甲基咪唑硒酮(dmise)和硫酮(dmit)配体处理 CuX(X = Cl,Br,I),研究了 Cu(I)卤化物与 N,N'-二甲基咪唑硒酮(dmise)和硫酮(dmit)配体的配位。CuI 和 CuBr 与一当量的 dmise 反应生成了不寻常的硒桥联四聚体 Cu(4)(μ-dmise)(4)(μ-X)(2)X(2)铜配合物,其平均 Cu-Se 键长为 2.42 Å,具有 Cu(2)(μ-X)(2)核(X = I(1)或 Br(6)),呈菱形结构。CuX(X = Cl,Br 和 I)与两当量的 dmit 或 dmise 反应生成两种不同构象的平面三角形 Cu(I)配合物,其化学式为 Cu(dmit)(2)X(3a,3b,4 和 7)或 Cu(dmise)(2)X(2,5 和 8),平均 Cu-S 和 Cu-Se 键长分别为 2.23 Å和 2.34 Å。配合物 1 至 8 中铜中心的配位几何形状由卤化物和杂环酮配体的类型、分子内 π-π 相互作用以及 X-H(X = I,Br,Cl,Se 或 S)之间的短接触相互作用决定。理论 DFT 计算与实验 X 射线结构数据吻合良好,表明 dmise 配体是形成四聚体配合物 1 和 6 的必需条件。电化学研究表明,与类似的铜硫酮配合物相比,三价铜硒酮配合物具有更负的电位,平均负移 108 mV。