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Theoretical Study of the Models of Ca~(2+) and Mg~(2+) Ions Binding by the Methylidene Rhodanine Neutral and Anionic Forms

机译:亚甲基罗丹宁中性和阴离子形式的Ca〜(2+)和Mg〜(2+)离子结合模型的理论研究

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摘要

The equilibrium geometry and energy parameters of the complexes of Ca~(2+) and Mg~(2+) with 5-methyl-2-thioxotiazolidin-4-one (methylidene rhodanine) and its anion in a 1:1 ratio in different conformations were calculated by the quantum-chemical method with the density functional theory on the level of hybrid functional B3LYP in the basis of atomic orbitals 6-31+G(d). The influence of metal ion size on the number of possible isomeric coordinations was indicated. The principles of stabilization and destabilization of the structures depending on their conformations al structure were described. Based on the calculated equilibrium geometry parameters of the complexes conformations the effect of complexation on the structure of rhodanine ligand was elucidated. In the framework of a polarizable continuum the relative stability of the possible tautomeric forms of methylidene rhodanine in water was investigated. A new structure of the methylidene rhodanine anion distinquished by a specific distribution of negative charge is suggested.
机译:Ca〜(2+)和Mg〜(2+)与5-甲基-2-硫代氧杂唑啉-4-酮(亚甲基若丹丹)及其阴离子的1:1配比的配合物的平衡几何和能量参数通过量子化学方法,利用密度泛函理论,在原子轨道6-31 + G(d)的基础上,在杂合官能团B3LYP的水平上计算构象。指出了金属离子尺寸对可能的异构体配位数的影响。描述了取决于结构的构象的结构的稳定化和去稳定化的原理。基于所计算的配合物构型的平衡几何参数,阐明了配合物对罗丹宁配体结构的影响。在可极化连续体的框架内,研究了亚甲基罗丹宁可能的互变异构形式在水中的相对稳定性。提出了由负电荷的特定分布所区分的亚甲基罗丹宁阴离子的新结构。

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