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首页> 外文期刊>Zeitschrift fur Anorganische und Allgemeine Chemie >Complexes of 2,6-bis(hydroxymethyl)pyridine with different copper(II) salts involving the anions chloride, perchlorate, nitrate and acetate. Synthesis and crystal structures of the complexes
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Complexes of 2,6-bis(hydroxymethyl)pyridine with different copper(II) salts involving the anions chloride, perchlorate, nitrate and acetate. Synthesis and crystal structures of the complexes

机译:2,6-双(羟甲基)吡啶与氯离子,高氯酸根,硝酸根和乙酸根的不同铜(Ⅱ)盐的配合物。配合物的合成和晶体结构

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Complexes of 2,6-bis(hydroxymethyl)pyridine (dhmp) with different Cu-II salts [CuCl(2)(.)6H(2)O, Cu(ClO4)(2)(.)6H(2)O, Cu(NO3)(2)(.)3H(2)O, Cu(CH3COO)(2)-H2O] are prepared (1-5, respectively), studied by IR, and their crystal structures reported. Dependent on the anion kind, influences on the distortion of the coordination polyhedron, the distribution of donor sites, the formation of a mono- or binuclear complex, and the resultant packing structure of the complex are observed, although in no case the counterions of the used Cu-II salts or water of hydration were found in the co-ordination sphere. Crystal structures of 1-5 indicate hexaco-ordination of the Cu-II ions with N2O4-environment and show that 1-4 are mononuclear 2:1 (L:M) complexes, but 5 is a binuclear 4:2 complex. Crystallization of Cu(ClO4)(2)(.)6H(2)O with dhmp yielded two different complexes (2/3). In 3, one of the dhmp components is mono-deprotonated and acts as an anionic ligand. The same behavior. is found in 5. Whereas in the neutral ligand complexes 1, 2 and 4 the basal planes are occupied by 0 donors, and N atoms are in the axial positions of the octahedrons, in 3 and 5 the bases are formed by two 0 and two N donor atoms, and 0 atoms are in the axes. Moreover, complex 3 shows the N atoms in trans position, but 5 in cis position. The packing of the cationic complex units is typical of strong and weak H bond interactions involving the counterions and hydroxylic or aromatic hydrogen atoms to yield complex network structures.
机译:2,6-双(羟甲基)吡啶(dhmp)与不同Cu-II盐的配合物[CuCl(2)(。)6H(2)O,Cu(ClO4)(2)(。)6H(2)O,制备了Cu(NO3)(2)(。)3H(2)O,Cu(CH3COO)(2)-H2O](分别为1-5),并通过IR进行了研究,并报道了其晶体结构。取决于阴离子的种类,对配位多面体的变形,施主位点的分布,单核或双核络合物的形成以及所得络合物的堆积结构的影响都可以观察到,尽管在任何情况下都不会观察到。在配位球中发现了用过的Cu-II盐或水合水。 1-5的晶体结构表明Cu-II离子与N2O4-环境的六配位,表明1-4是单核2:1(L:M)配合物,而5是双核4:2配合物。用dhmp结晶Cu(ClO4)(2)(。)6H(2)O产生两种不同的络合物(2/3)。在图3中,dhmp组分之一被单去质子化并且充当阴离子配体。相同的行为。在5中发现。而在中性配体配合物1、2和4中,基面被0个供体占据,N原子在八面体的轴向位置,而在3和5中,碱基由两个0和两个形成N个供体原子,0个原子在轴上。此外,络合物3显示N原子处于反式位置,而5原子处于顺式位置。阳离子络合物单元的堆积是涉及抗衡离子和羟基或芳族氢原子以产生络合物网络结构的强和弱H键相互作用的典型特征。

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