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首页> 外文期刊>Journal of Molecular Structure >Influence of metal to ligand molar ratios on the supramolecular structure formation of Cu(II) with diaminopropane and iodide: Synthesis, structure, spectroscopic and DFT studies
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Influence of metal to ligand molar ratios on the supramolecular structure formation of Cu(II) with diaminopropane and iodide: Synthesis, structure, spectroscopic and DFT studies

机译:金属配体摩尔比对二氨基丙烷和碘化物形成Cu(II)的超分子结构的影响:合成,结构,光谱和DFT研究

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摘要

Two new copper(II) complexes with 1,3-diaminopropane and iodide, viz., [{Cu ((1,3-diaminopropane)_2 I (I_3))}] (1) and [{Cu ((1,3 diaminopropane)2(I)2)}] (2) have been synthesized under self assembly conditions and structurally characterised to observe the structural variations brought about by varying ligand molar ratios, towards studying the effect of external factors on supramolecular structure formation, with a long term goal of obtaining magnetic materials. Corresponding to the variation in metal to ligand molar ratios from one to two, totally different products are obtained whose gross structural features are entirely different. The formation of 1, is unpredicted under given synthetic conditions and hence is interesting. The formation of 2, is as generally expected for the reacting components under given conditions. In case of 1, the metal ion's choice to adopt a square pyramidal geometry by coordinating to two ligand units and a coordinated iodide, even in the absence of sufficient moles of ligand, as in 2, is due to sub-molar ligand ratios complemented by weak hydrogen bonding interactions, operating between the ligand amino hydrogens and coordinated iodide and uncoordinated triiodide moiety. This approach of providing sub-molar amounts of ligand to the metal to satisfy its coordination requirements, appear to be a promising strategy towards obtaining novel solid systems of material relevance. Both the complexes are characterised structurally and spectroscopically. Further, both the structures were satisfactorily modelled by calculations based on Density Functional Theory (DFT), and their UV-visible spectra were analyzed in depth with the help of Time Dependent DFT (TD-DFT).
机译:两个新的具有1,3-二氨基丙烷和碘化物,即[{Cu((1,3-diaminopropane)_2 I(I_3))}](1)和[{Cu((1,3二氨基丙烷)2(I)2)}](2)已在自组装条件下合成,并进行结构表征以观察由不同配体摩尔比引起的结构变化,从而研究外部因素对超分子结构形成的影响,获得磁性材料的长期目标。对应于金属与配体摩尔比从一到二的变化,获得了总结构特征完全不同的完全不同的产物。 1的形成在给定的合成条件下是不可预测的,因此很有趣。如在给定条件下反应组分通常预期的那样形成2。在1的情况下,金属离子选择通过与两个配体单元和一个配位的碘配位而采用方形金字塔几何形状,即使在没有足够摩尔摩尔的配体的情况下(如2),也是由于亚摩尔配体比例由在配体氨基氢与配位碘化物和未配位三碘化物部分之间起作用的弱氢键相互作用。这种向金属提供亚摩尔量的配体以满足其配位要求的方法,似乎是一种获得新型材料相关固体系统的有前途的策略。两种配合物在结构和光谱上都有特征。此外,通过基于密度泛函理论(DFT)的计算对两种结构进行了令人满意的建模,并借助时变DFT(TD-DFT)对它们的UV-可见光谱进行了深入分析。

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