The COMPLEX FORMATION OF CADMIUM (II) WITH 2-METHYLIMIDAZOLE IN AQUEOUS AND AQUEOS-ALCOHOL SOLUTIONS

S. M. Safarmamadov, Dilovar Ch. Mirzokhonov, K. S. Mabatkadamzoda
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引用次数: 1

Abstract

Using potentiometric titration data, titration curves of the protonated form of 2-methylimidazole [H2-MI]+ in water and water-alcohol solutions were constructed. Forms of formation curves correspond to weak monobasic acids. The value of the formation function () for the studied systems varies between 0.45-0.87, which corresponds to the formation of one protonated form of 2-methylimidazole in aqueous and aqueous - alcoholic solutions. The acid dissociation constant (pKa) of 2-methylimidazole at 298 K was determined by the pH - metric method in aqueous and aqueous - methanol (ethanol) solutions at different contents of the organic solvent. It was revealed that the maximum proportion of molecular form accumulation falls on pH 10-10.5. Below pH 10, the protonated form of 2-methylimidazole begins to accumulate in the solution. Starting from pH = 7.2-methylimidazole exists completely in protonated form in solution. With an increase in the concentration of alcohol in solution, an increase in the acidic properties of the protonated form of 2-methylimidazole is observed. The pKa value of 2-methylimidazole in aqueous ethanol solutions is higher than that of aqueous methanol. The potentiometric method was used to study the complexation of cadmium (II) with 2-methylimidazole (2-MI) at 278-318 K. The effect of the nature and composition of the aqueous-organic solution on the stability of the complexes formed is established. It was revealed that during the interaction of cadmium (II) with 2-methylimidazole in aqueous and aqueous-alcoholic solutions four complex forms are formed. For each complex form, stability constants are found depending on the temperature and the content of non-aqueous solvent. It is shown that when methanol is added to water, an increase in the stability of all complex forms is observed. In contrast to water-methanol solutions in water-ethanol solutions, in addition to the complex particle [CdL4]2+, the stability of other complex forms pass through a minimum. Based on our own and published data, we conclude that the degree of influence that an organic solvent has on the stability of complexes cadmium (II) largely depends on changes in the solvation condition of the ligand molecule and the central atom.  
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镉(II)与2-甲基咪唑在水和水-醇溶液中的络合形成
利用电位滴定数据,构建了2-甲基咪唑[H2-MI]+质子化形式在水和水-醇溶液中的滴定曲线。地层曲线的形式与弱一碱性酸相对应。所研究体系的生成函数()值在0.45-0.87之间变化,对应于2-甲基咪唑在水和水醇溶液中形成一种质子化形式。用pH法测定了2-甲基咪唑在不同有机溶剂含量的水溶液和水溶液甲醇(乙醇)溶液中298 K时的酸解离常数(pKa)。结果表明,pH值为10 ~ 10.5时,分子形态积累的比例最大。pH值低于10时,2-甲基咪唑的质子化形式开始在溶液中积累。从pH = 7.2开始,甲基咪唑在溶液中以质子化形式完全存在。随着溶液中酒精浓度的增加,2-甲基咪唑质子化形式的酸性性质增加。2-甲基咪唑在乙醇水溶液中的pKa值高于甲醇水溶液。采用电位法研究了镉(II)与2-甲基咪唑(2-MI)在278 ~ 318 K下的络合反应。确定了有机水溶液的性质和组成对形成的配合物稳定性的影响。结果表明,镉(II)与2-甲基咪唑在水溶液和乙醇水溶液中相互作用时形成了四种络合物。对于每种络合物形式,稳定性常数取决于温度和非水溶剂的含量。结果表明,当甲醇加入水中时,观察到所有复杂形式的稳定性都有所增加。与水-甲醇溶液相比,在水-乙醇溶液中,除了复杂颗粒[CdL4]2+外,其他复杂形式的稳定性通过最小。根据我们自己和已发表的数据,我们得出结论,有机溶剂对镉(II)配合物稳定性的影响程度在很大程度上取决于配体分子和中心原子的溶剂化条件的变化。
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