首页> 外文期刊>Acta Chimica Slovenica >Effects of Translational and Rotational Degrees of Freedom on the Hydration of Ionic Solutes as Seen by the Popular Water Models
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Effects of Translational and Rotational Degrees of Freedom on the Hydration of Ionic Solutes as Seen by the Popular Water Models

机译:从流行的水模型可以看出,平移和旋转自由度对离子溶质水化的影响

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摘要

We employed molecular dynamics simulations with separate thermostats for translational and rotational temperatures in order to study the effects of these degrees of freedom on the hydration of ions. In this work we examine how water models, differing in charge distribution, respond to the rise of rotational temperature. The study shows that, with respect to the distribution of negative charge, popular water models lead to different responses upon an increase of the rotational temperature. The differences arise in hydration of cations, as the negative charge distribution on the model solvent represents the determining factor in such cases. The cation-water correlation increases with the increasing rotational temperature if negative charge is placed in (or close to) the centre of the water molecule (a typical example is the SPC water model) and decreases, when the negative charge is shifted from the centre (as in the TIP5P model of water). Because all the water models examined here have similar distributions of positive charge, they all exhibit similar trends in solvation of anions. In contrast to above, the effect of translational temperature variation is similar for all water-solute pairs; any increase in translational temperature decreases the solute-water correlations.
机译:为了研究这些自由度对离子水化的影响,我们采用了带有独立恒温器的分子动力学模拟来分析平移和旋转温度。在这项工作中,我们研究了电荷分布不同的水模型如何响应旋转温度的升高。研究表明,就负电荷的分布而言,流行的水模型在旋转温度升高时会导致不同的响应。阳离子的水合会产生差异,因为在这种情况下模型溶剂上的负电荷分布代表决定因素。如果将负电荷置于(或靠近)水分子的中心(典型的例子是SPC水模型),则阳离子-水的相关性随旋转温度的升高而增加,而当负电荷从中心移开时,阳离子-水的相关性会降低。 (就像在水的TIP5P模型中一样)。由于此处检查的所有水模型均具有相似的正电荷分布,因此它们在阴离子溶剂化方面均表现出相似的趋势。与上述相反,所有水-溶质对的平移温度变化的影响都相似。平移温度的任何升高都会降低溶质与水的相关性。

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