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从密度泛函理论计算看 Al3+ 水解反应中的协同性。

Cooperativity in Al3+ hydrolysis reactions from density functional theory calculations.

机构信息

Eenheid Algemene Chemie, Vrije Universiteit Brussel, Faculteit Wetenschappen, Pleinlaan 2, 1050 Brussels, Belgium.

出版信息

J Phys Chem A. 2010 Jul 29;114(29):7791-9. doi: 10.1021/jp102787e.

Abstract

Aqua/hydroxo mononuclear Al(3+) species in aqueous solution are investigated using density functional theory (DFT B3LYP/6-311++G(d,p)) and the polarized continuum model (PCM). Optimized gas-phase geometries have been obtained for the species Al(OH)(n)(H(2)O)(m)((3-n)+) in which n = 0, 1, 2, 3, or 4 while (n + m) = 4, 5, or 6. For Al(OH)(2)(H(2)O)(4)(1+) the cis and trans geometries were considered. The structures were analyzed in terms of water and hydroxide M-O and O-H distances, which are shown to be strongly modulated by water hydrolysis. The atomic charges were computed and the electronic structure of these complexes is discussed. The conversion from one aqua-/hydroxo- species to another follows independent hydrolysis and dehydration reactions for which the aqueous Gibbs free energies have been estimated by means of constructing thermodynamic cycles. Results clearly demonstrate that the dehydration reaction is increasingly favorable as hydrolysis proceeds. Similarly, as the complex coordination number decreases the hydrolysis reaction proceeds increasingly more favorably. The aqueous Gibbs free energy of each species, relative to Al(H(2)O)(6)(3+), has been determined by combining the appropriate Gibbs free energies of the hydrolysis and dehydration reactions demonstrating that the additive effect is quite complex showing a gradual transition from preferring the 6-coordination to 5-coordination to 4-coordination as a function of ligand hydrolysis, in agreement with published experimental and theoretical work. We have also computed the equilibrium constants of each of the above reactions and, using [H(+)] as a parameter, estimated the mole fraction of each species as a function of pH. This offers a clear demonstration that the qualitative hydrolysis behavior, e.g., cooperativity, of aqueous Al(3)+ species is obtained at the B3LYP/IEF-PCM level of theory.

摘要

采用密度泛函理论(DFT B3LYP/6-311++G(d,p))和极化连续模型(PCM)研究了水溶液中单核水合/羟基金属铝(Al)物种。优化了物种 Al(OH)(n)(H(2)O)(m)((3-n)+)(其中 n = 0、1、2、3 或 4,而 (n + m) = 4、5 或 6)在气相中的几何结构。对于 Al(OH)(2)(H(2)O)(4)(1+),考虑了顺式和反式几何结构。根据水和氢氧化物 M-O 和 O-H 距离对结构进行了分析,这些距离强烈受到水解的调制。计算了原子电荷,并讨论了这些配合物的电子结构。通过构建热力学循环,估算了从一种水合/羟基金属铝物种转化为另一种水合/羟基金属铝物种的水解和脱水反应的吉布斯自由能。结果清楚地表明,随着水解的进行,脱水反应变得越来越有利。同样,随着配合物配位数的减少,水解反应变得越来越有利。通过结合水解和脱水反应的适当吉布斯自由能,确定了每种物种相对于 Al(H(2)O)(6)(3+)的水合吉布斯自由能,证明加和效应非常复杂,表明随着配体水解的进行,从优先 6 配位到 5 配位再到 4 配位逐渐过渡,这与已发表的实验和理论工作一致。我们还计算了上述每个反应的平衡常数,并使用 [H(+)]作为参数,估算了每个物种在 pH 值下的摩尔分数。这清楚地表明,在 B3LYP/IEF-PCM 理论水平上,可以获得水合金属铝(Al)物种的定性水解行为,例如协同作用。

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