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首页> 外文期刊>The Journal of Chemical Physics >Hydrolysis of Al3+ from constrained molecular dynamics
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Hydrolysis of Al3+ from constrained molecular dynamics

机译:受约束的分子动力学水解Al3 +

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We investigated the hydrolysis reactions of Al3+ in AlCl3 aqueous solution using the constrained molecular dynamics based on the Car-Parrinello molecular-dynamics method. By employing the proton-aluminum coordination number as a reaction coordinate in the constrained molecular dynamics the deprotonation as well as dehydration processes are successfully realized. From our free-energy difference of Delta G(0)similar or equal to 8.0 kcal mol(-1) the hydrolysis constant pK(a1) is roughly estimated as 5.8, comparable to the literature value of 5.07. We show that the free-energy difference for the hydrolysis of Al3+ in acidic conditions is at least 4 kcal mol(-1) higher than that in neutral condition, indicating that the hydrolysis reaction is inhibited by the presence of excess protons located around the hydrated ion, in agreement with the change of the predominant species by pH. (c) 2006 American Institute of Physics.
机译:我们使用基于Car-Parrinello分子动力学方法的受限分子动力学研究了Al3 +在AlCl3水溶液中的水解反应。通过在约束的分子动力学中将质子-铝的配位数作为反应坐标,成功实现了去质子化和脱水过程。根据我们的Delta G(0)等于或等于8.0 kcal mol(-1)的自由能差,水解常数pK(a1)粗略估计为5.8,可与文献值5.07相比。我们表明,在酸性条件下水解Al3 +的自由能差至少比中性条件下高4 kcal mol(-1),这表明水解反应受到水合物周围过量质子的存在的抑制。离子,与主要物种的pH值变化一致。 (c)2006年美国物理研究所。

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