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首页> 外文期刊>Physical chemistry chemical physics: PCCP >Explicit consideration of spatial hydrogen bonding direction for activity coefficient prediction based on implicit solvation calculations
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Explicit consideration of spatial hydrogen bonding direction for activity coefficient prediction based on implicit solvation calculations

机译:基于隐含溶剂化计算的活性系数预测的空间氢键方向明确考虑

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摘要

The activity coefficient of a chemical in a mixture is important in understanding the thermodynamic properties and non-ideality of the mixture. The COSMO-SAC model based on the result of quantum mechanical implicit solvation calculations has been shown to provide reliable predictions of activity coefficients for mixed fluids. However, it is found that the prediction accuracy is in general inferior for associating fluids. Existing methods for describing the hydrogen-bonding interaction consider the strength of the interaction based only on the polarity of the screening charges, neglecting the fact that the formation of hydrogen bonds requires a specific orientation between the donor and acceptor pairs. In this work, we propose a new approach that takes into account the spatial orientational constraints in hydrogen bonds. Based on the Valence Shell Electron Pair Repulsion (VSEPR) theory, the molecular surfaces associated with the formation of hydrogen bonds are limited to those in the projection of the lone pair electrons of hydrogen bond acceptors, in addition to the polarity of the surface screening charges. Our results show that this new directional hydrogen bond approach, denoted as the COSMO-SAC( DHB) model, requires fewer universal parameters and is significantly more accurate and reliable compared to previous models for a variety of properties, including vapor-liquid equilibria (VLE), infinite dilution activity coefficient (IDAC) and water-octanol partition coefficient (K-ow).
机译:在混合物中的化学物质的活度系数是理解的热力学性质和混合物的非理想性很重要的。根据量子力学的隐式溶剂化计算的结果的COSMO-SAC模型已经显示出用于混合的流体提供活度系数的可靠的预测。然而,发现预测精度一般劣质的关联流体。用于描述氢键相互作用的现有方法考虑仅基于屏蔽电荷的极性的相互作用的强度,忽略该氢键的形成需要供体和受体对之间的特定取向的事实。在这项工作中,我们提出了一种新的方法,考虑了氢键的空间取向的约束。基于所述价壳层电子对互斥(VSEPR)理论,具有氢键的形成相关联的分子表面被限定于在氢键受体的孤对电子的突起,在除了表面屏蔽电荷的极性。我们的结果表明,这种新的定向的氢键的方法,表示为COSMO-SAC(DHB)模型,需要更少的通用参数,是显著更准确和可靠的以往的机型相比为各种性能,包括气液平衡(VLE ),无限稀释活度系数(IDAC)和水 - 辛醇分配系数(K-OW)。

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