Owczarek Emilia, Rybicki Marcin, Hawlicka Ewa
Institute of Applied Radiation Chemistry, Chemistry Department, Technical University, 94-924 Lodz, Zeromskiego 116, Poland.
J Phys Chem B. 2007 Dec 27;111(51):14271-8. doi: 10.1021/jp076233v. Epub 2007 Dec 7.
Molecular dynamics simulations of CaCl2 solutions in water and methanol-water mixtures, with methanol concentrations of 5, 10, 50, and 90 mol %, at room temperature, have been performed. The methanol and water molecules have been modeled as flexible three-site bodies. Solvation of the calcium ions has been discussed on the basis of the radial and angular distribution functions, the orientation of the solvent molecules, and their geometrical arrangement in the coordination shells. Analysis of the H-bonds of the solvent molecules coordinated by Ca2+ has been done. Residence time of the solvent molecules in the coordination shell has been calculated. The preferential hydration of the calcium ions has been found over the whole range of the mixture composition. The water concentration in the first and second coordination shells of Ca2+ significantly exceeds the water content in the solution, despite the very similar interaction energy of the calcium ion with water and methanol. In aqueous solution and methanol-water mixtures, the first coordination shell of Ca2+ is irregular and long-living. The solvent molecules prefer the anti-dipole arrangement, but, in aqueous solutions and water-rich mixtures, the water molecules in the primary shell have only one H-bonded neighbor.
已在室温下对甲醇浓度分别为5%、10%、50%和90%的水及甲醇 - 水混合物中的氯化钙溶液进行了分子动力学模拟。甲醇分子和水分子被建模为具有三个位点的柔性分子。基于径向分布函数和角分布函数、溶剂分子的取向及其在配位壳层中的几何排列,讨论了钙离子的溶剂化作用。对由Ca2+配位的溶剂分子的氢键进行了分析。计算了溶剂分子在配位壳层中的停留时间。在整个混合物组成范围内均发现了钙离子的优先水合作用。尽管钙离子与水和甲醇的相互作用能非常相似,但Ca2+第一和第二配位壳层中的水浓度显著超过溶液中的水含量。在水溶液和甲醇 - 水混合物中,Ca2+的第一配位壳层不规则且寿命长。溶剂分子倾向于反偶极排列,但在水溶液和富水混合物中,主壳层中的水分子只有一个氢键相邻分子。