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首页> 外文期刊>Inorganic Chemistry Communications >Synthesis of new macrobicyclic tricompartmental ligands and site preference of metal ion: structural and electrochemical properties of mononuclear copper(II) complexes
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Synthesis of new macrobicyclic tricompartmental ligands and site preference of metal ion: structural and electrochemical properties of mononuclear copper(II) complexes

机译:新的大双环三格配体的合成和金属离子的位点偏好:单核铜(II)配合物的结构和电化学性质

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New macrobicyclic tricompartmental ligands and their mononuclear copper(II) complexes of type [CuH_2L](ClO_4)_2 have been synthesized from the precursor compound 3,4:10,11-dibenzo-1,13[N,N'{bis(3-formyl-2-hydroxy-5-methyl)benzyl}diaza]-5,9-dioxacycloheptadecane with diamines like en, pn and bn by template method. These complexes have been characterized by IR, UV spectral and X-ray studies. complex [CuH_2L~3](ClO_4)_2 (in L~3 the diamine used is bn) crystallized as triclinic system with space group p-1. The crystal structure explains that the grometry around copper is distorted square planar. Among the three compartments, it is interesting to observe that the metal ion prefers to be encompassed by the compartment containing phenolic oxygens and imine nitrogens (N_2O_2). From X-ray studies the presence of perchlorate anions, acetonitrile solvent molecules and the protonation of tertiary nitrogen atoms were well understood. All the complexes show hyperfine splittings in ESR spectra. The #mu#_(eff) values observed in the range 1.69-1.72 BM are close to the spin only value of single copper(II) ion. Cyclic voltammetry studies of these complexes depict one electron quasireversible reduction in the range -8.80 to -9.90 V at negative potential. A red shift in UV-Visible spectra and shifting of reduction potential towards anodic in cyclic voltammetry were witnessing the distortion of the geometry around metal center from the planarity as the macrocyclic chain length in mine nitrogen compartment increases.
机译:从前体化合物3,4:10,11-dibenzo-1,13 [N,N'{bis(3)模板法用二胺如en,pn和bn合成-甲酰基-2-羟基-5-甲基)苄基}二氮杂] -5,9-二氧杂环庚烷。这些复合物已通过红外,紫外光谱和X射线研究进行了表征。配合物[CuH_2L〜3](ClO_4)_2(在L〜3中使用的二胺为bn)结晶为三斜晶系,空间群为p-1。晶体结构解释了铜周围的磨光是扭曲的方形平面。在这三个部分中,有趣的是,金属离子更倾向于被包含酚氧和亚胺氮(N_2O_2)的部分包围。通过X射线研究,高氯酸根阴离子,乙腈溶剂分子的存在和叔氮原子的质子化已得到很好的理解。所有的配合物在ESR光谱中均显示出超精细分裂。在1.69-1.72 BM范围内观察到的#mu #_(eff)值接近单个铜(II)离子的自旋值。对这些络合物的循环伏安研究表明,在负电势下,一个电子准可逆还原范围为-8.80至-9.90V。随着矿井氮室中大环链长度的增加,循环伏安法中紫外可见光谱的红移和还原电势向阳极的移位都证明了金属中心周围的几何形状从平面度开始发生扭曲。

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