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Copper(II) complexes of bidentate ligands containing nitrogen and sulfur donors: Synthesis, structures, electrochemistry and catalytic properties

机译:含氮和硫供体的二齿配体铜(II)配合物:合成,结构,电化学和催化性能

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Two nitrogen and sulfur containing ligands, 1-methyl-4-((4-methylimidazol-5-yl)methylthio)benzene (NS-mim) (1) and 1-methyl-4-(2-pyridylmethylthio)benzene (NS-mpy) (2) were synthesized and a series of their Cu(II) complexes, 3–10, prepared. The imidazole-containing complexes (3–6) have the form [Cu(NS-mim)2(solvent)2](X)2 where X = ClO4, BF4and [Cu(NS-mim)2(Y)2] where Y = Cl or Br and the pyridine- containing complexes (7–10) have the form [Cu(NS-mpy)2]X2 (where X = ClO4, BF4) and [Cu2(NSmpy) 2Y4] (where Y = Cl or Br). These complexes were characterized by a combination of elemental analysis, FAB-MS and electrochemistry. The X-ray structure of the imidazole-containing [Cu(NSmim) 2(DMF)2](ClO4)2 (3) was determined and it showed the copper(II) coordinated only by the nitrogen donors while the sulfurs remain uncoordinated. In comparison, the X-ray structure of the pyridinecontaining [Cu2(NS-mpy)2(Cl)4] (9) shows a dinuclear copper(II) complex with the nitrogens and the sulfurs coordinated along with a terminal chloride and two l-chloro atoms bridging the coppers. Cyclic voltammetry studies indicated that the complexes undergo quasi-reversible one-electron reductions in acetonitrile at potentials between 0.31 and 0.51 V versus SCE. The complexes were found to be active for the oxidation of di-tert-butyl catechol (DTBC) with the rate dependent on the ligand and the counterion present.
机译:两个含氮和硫的配体,1-甲基-4-((4-甲基咪唑-5-基)甲硫基)苯(NS-mim)(1)和1-甲基-4-(2-吡啶基甲硫基)苯(NS-合成了mpy)(2),并制备了3-10的一系列Cu(II)配合物。含咪唑的配合物(3–6)的形式为[Cu(NS-mim)2(溶剂)2](X)2,其中X = ClO4,BF4和[Cu(NS-mim)2(Y)2]其中Y = Cl或Br,含吡啶的配合物(7–10)的形式为[Cu(NS-mpy)2] X2(其中X = ClO4,BF4)和[Cu2(NSmpy)2Y4](其中Y = Cl或Br)。这些配合物通过元素分析,FAB-MS和电化学相结合来表征。确定了含咪唑的[Cu(NSmim)2(DMF)2](ClO 4)2(3)的X射线结构,结果表明铜(II)仅由氮供体配位,而硫保持未配位。相比之下,含吡啶的[Cu2(NS-mpy)2(Cl)4](9)的X射线结构显示双核铜(II)配合物,其氮和硫与末端氯化物和两个L配位。 -氯原子桥接铜。循环伏安法研究表明,与SCE相比,在0.31至0.51 V的电势下,络合物在乙腈中发生准可逆的单电子还原。发现该络合物对二叔丁基邻苯二酚(DTBC)的氧化具有活性,其速率取决于存在的配体和抗衡离子。

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