首页> 外文期刊>Russian Journal of General Chemistry >Application of Bader's Atoms in Molecules Theory to the Description of Coordination Bonds in the Complex Compounds of Ca~(2+) and Mg~(2+) with Methylidene Rhodanine and Its Anion
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Application of Bader's Atoms in Molecules Theory to the Description of Coordination Bonds in the Complex Compounds of Ca~(2+) and Mg~(2+) with Methylidene Rhodanine and Its Anion

机译:分子理论中的Bader原子在描述Ca〜(2+)和Mg〜(2+)与亚甲基罗丹宁及其阴离子配合物的配位键中的应用

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In the framework of Bader's atoms in molecules theory a complete analysis of the distribution function of electron density in molecules of complexes of Ca~(2+) and Mg~(2+) with methylidene rhodanine and its anion was carried out. The role of mutual polarization of the metal cation and the ligand in the formation of coordination bonds was demonstrated. The accumulation of electron density in the interatomic space of coordination bonds is assumed to be a consequence of the deformation of the ligand electron shell under the influence of the cation electric field. Based on the magnitude and sign of the Laplacian and the electron energy density at the critical points of coordination bonds the interactions were classified the in terms of the atoms in molecules theory. The energy of the coordination bonds was evaluated using the Espinoza's formula. The stability of metal-containing rings was considered basing on the values of the bond ellipticity.
机译:在分子中的巴德尔原子理论的框架下,对Ca〜(2+)和Mg〜(2+)与亚甲基罗丹宁及其阴离子的配合物分子中电子密度的分布函数进行了完整的分析。证明了金属阳离子和配体的相互极化在配位键形成中的作用。假定电子密度在配位键的原子间空间中的积累是在阳离子电场的作用下配体电子壳变形的结果。根据拉普拉斯算子的大小和符号以及配位键关键点的电子能量密度,将相互作用按照分子理论中的原子分类。使用Espinoza公式评估了配位键的能量。基于键椭圆率的值来考虑含金属环的稳定性。

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