二甲基锡(IV)与N,N,N ' -四乙基乙二胺的配位化合物:形成与理论途径

Safaa S. Hassan, M. Shoukry, A. A. Jbarah
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引用次数: 3

摘要

研究了二甲基锡(IV)与N,N,N ',N '四乙基乙二胺(Et4en)配合物在溶液中的形成平衡。测定了在不同温度(15℃~ 35℃)和不同成分(15% ~ 2.5%)的二氧六烷-水混合溶液中形成的络合物的化学计量学和稳定性常数。可接受的模型由110、111、11-1和11-2种组成。测定了N,N,N ',N ' -四乙基乙二胺(Et4en)质子化及其与二甲基锡(IV)络合物形成的热力学参数∆H°和∆S°。络合生成反应是放热的。计算了N,N,N ',N ' -四乙基乙二胺与二甲基锡(IV)配位的平衡常数。Keq值清楚地表明DNA能够从其二甲基锡(IV)络合物中取代配合的Et4en。核苷酸IMP和GMP的值最高。采用DFT/B3LYP方法,利用高斯09程序对配体和配合物进行几何优化。并对优化后的配体和配合物的振动频率进行了计算。结果表明,计算得到的振动频率中不存在虚频率。计算了二甲基锡配合物的结合能。所有计算出的结合能值都是负的。
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Cordination Compound of Dimethyltin(IV) with N,N,N’N’-Tetraethylethylenediamine: Speciation and Theoretical approach
The formation equilibria of the dimethyltin(IV) complexes with of N,N,N’,N’tetraethylethylenediamine (Et4en) in solution were investigated. The stoichiometry and stability constants of the complexes formed in solution phase were determined at different temperatures (15 oC – 35 oC) and in solutions of dioxane-water mixtures of different compositions (15% 62.5%). The accepted model is composed of the 110, 111, 11-1 and 11-2 species. The thermodynamic parameters ∆H° and ∆S° associated with the protonation of N,N,N`,N`-tetraethylethylendiamine (Et4en) and its complex formation with the dimethyltin(IV) species were determined. The complex formation reaction is exothermic. The equilibrium constant for the displacement of N,N,N’,N’-tetraethylethylenediamine coordinated to dimethyltin(IV) by some selected DNA constituents was calculated. The Keq values clearly indicate the ability of DNA to displace the coordinated Et4en from its dimethyltin(IV) complex. The nucleotides IMP and GMP have the highest values. The DFT/B3LYP method was used for geometric optimization of the ligand and the complex using the Gaussian 09 program. Also the vibrational frequencies of the ligands and complexes were computed for the optimized geometries. The results shows that there is no imaginary frequencies as found in the calculated vibrational frequencies. The binding energies of the dimethyltin(IV) complexes were calculated. All calculated binding energy values are negative.
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