首页> 外文期刊>Inorganica Chimica Acta >Trinuclear and tetranuclear adduct formation between sodium perchlorate and copper(II) complexes of salicylaldimine type ligands: Structural characterization and theoretical investigation
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Trinuclear and tetranuclear adduct formation between sodium perchlorate and copper(II) complexes of salicylaldimine type ligands: Structural characterization and theoretical investigation

机译:高氯酸钠与水杨醛亚胺型配体的铜(II)配合物之间形成三核和四核加合物:结构表征和理论研究

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The synthesis of two new sodium perchlorate adducts (1:2 and 1:3) with copper(II) "ligand-complexes" is reported. One adduct is trinuclear [(CuL~1)_2NaClO_4] (1) and the other is tetranuclear [(CuL~2)_3Na]ClO_4·EtOH (2). The ligands are the tetradentate di-Schiff base of 1,3-propanediamines and salicylaldehyde (H_2L~1) or 2-hydroxyacetophenone (H _2L~2). Both complexes have been characterized by X-ray single crystal structure analyses. In both structures, the sodium cation has a six-coordinate distorted octahedral environment being bonded to four oxygen atoms from two Schiff-base complexes in addition to a chelated perchlorate anion in 1 and to six oxygen atoms from three Schiff-base complexes in 2. We have carried out a DFT theoretical study (RI-B97-D/def2-SVP level of theory) to compute and compare the formation energies of 1:2 and 1:3 adducts. The DFT study reveals that the latter is more stabilized than the former. The X-ray crystal structure of 1 shows that the packing of the trinuclear unit is controlled by unconventional C-H···O H-bonds and Cu~(2+)-π non-covalent interactions. These interactions explain the formation of 1 which is a priori disfavored with respect to 2.
机译:报道了两个新的高氯酸钠加合物(1:2和1:3)与铜(II)“配体配合物”的合成。一种加合物是三核[(CuL〜1)_2NaClO_4](1),另一种是四核[(CuL〜2)_3Na] ClO_4·EtOH(2)。配体是1,3-丙二胺和水杨醛(H_2L〜1)或2-羟基苯乙酮(H _2L〜2)的四齿二席夫碱。两种配合物均已通过X射线单晶结构分析进行了表征。在这两种结构中,钠阳离子均具有六配位扭曲的八面体环境,除与1中的螯合高氯酸根阴离子结合后,与两个席夫碱配合物中的四个氧原子键合,还与2中三个席夫碱配合物中的六个氧原子键合。我们进行了DFT理论研究(RI-B97-D / def2-SVP理论水平),以计算和比较1:2和1:3加合物的形成能。 DFT研究表明,后者比前者更稳定。 1的X射线晶体结构表明,三核单元的堆积受非常规的C-H··O H键和Cu〜(2 +)-π非共价相互作用的控制。这些相互作用解释了1的形成,它相对于2是先验的。

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