首页> 外文期刊>Inorganica Chimica Acta >Ligand mediated structural diversity and role of different weak interactions in molecular self-assembly of a series of copper(II)-sodium(I) Schiff-base heterometallic complexes
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Ligand mediated structural diversity and role of different weak interactions in molecular self-assembly of a series of copper(II)-sodium(I) Schiff-base heterometallic complexes

机译:配体介导的结构多样性以及不同弱相互作用在一系列铜(II)-钠(I)Schiff碱异金属配合物分子自组装中的作用

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摘要

We report three new Cu-Na heterometallic complexes namely [Cu(L1 ~(2-))Na(NO_3)(CH_3OH)] (1), [Cu(L2 ~(2-))Na(NO_3) (CH_3OH)] (2) and [Cu Na (L3 ~(3-))]_n (3) where the topology of the synthon is directly governed by the π-π interaction involving the Cu-Schiff base chelate rings. The crystal structure analysis also reveals how the systematic variation in the ligand framework influences the supramolecular assembly and the mutual cooperation of different π-forces and the hydrogen bonding forces in the supramolecular assembly. The π-forces are more important than the hydrogen bonding forces in such compounds is evident from the supramolecular assembly of compound 3. Most interesting revelation of the studies are the presence of relatively uncommon π-forces such as chelate ringa?chelate ring and metal-π interactions in the supramolecular architecture of the complexes. The analysis of the supramolecular assembly of the complexes 1-3 reveals that metal-chelate rings play prominent role in the organization of the molecular complexes and should seriously consider along with other π-stacking forces.
机译:我们报告了三种新的铜钠杂金属配合物,即[Cu(L1〜(2-))Na(NO_3)(CH_3OH)](1),[Cu(L2〜(2-))Na(NO_3)(CH_3OH)] (2)和[Cu Na(L3〜(3-))] _ n(3),其中合成子的拓扑结构直接由涉及Cu-席夫碱螯合环的π-π相互作用控制。晶体结构分析还揭示了配体骨架中的系统变化如何影响超分子组装以及不同π力和超分子组装中的氢键合力的相互作用。从化合物3的超分子组装中可以明显看出,在这些化合物中,π力比氢键合力更重要。最有趣的发现是,存在相对不常见的π力,例如螯合的环,螯合环和金属。络合物的超分子结构中的π相互作用。配合物1-3的超分子组装分析表明,金属螯合物环在分子配合物的组织中起着重要作用,应与其他π堆积力一起认真考虑。

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