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首页> 外文期刊>Physical chemistry chemical physics: PCCP >Acidity constants from vertical energy gaps: density functional theory based molecular dynamics implementation
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Acidity constants from vertical energy gaps: density functional theory based molecular dynamics implementation

机译:来自垂直能隙的酸度常数:基于密度泛函理论的分子动力学实现

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The question of how to compute acidity constants (pK_a) treating solvent and solute at the same level of theory remains of some interest, for example in the case of high or low pH conditions. We have developed a density functional theory based molecular dynamics implementation of such a method. The method is based on a half reaction scheme computing free energies of dissociation from the vertical energy gaps for insertion or removal of protons. Finite system size effects are important, but largely cancel when half reactions are combined to full reactions. We verified the method by investigating a series of organic and inorganic acids and bases spanning a wide range of pK_a values (20 units). We find that the response of the aqueous solvent to vertical protonation/ deprotonation is almost always asymmetric and correlated with the strength of the hydrogen bonding of the deprotonated base. We interpret these observations in analogy with the picture of solvent response to electronic ionization.
机译:在相同的理论水平下如何计算处理溶剂和溶质的酸度常数(pK_a)的问题仍然引起人们的兴趣,例如在高或低pH条件下。我们已经开发了一种基于密度泛函理论的分子动力学方法。该方法基于半反应方案,该方案计算了从垂直能隙解离的自由能以用于质子的插入或去除。有限的系统大小影响很重要,但是当半反应合并为完整反应时,很大程度上会抵消。我们通过研究一系列范围广泛的pK_a值(20个单位)的有机和无机酸和碱验证了该方法。我们发现,水性溶剂对垂直质子化/去质子化的响应几乎总是不对称的,并且与去质子化碱的氢键强度有关。我们将这些观察结果与溶剂对电子电离反应的图片进行类比解释。

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