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Preferential Solvation in Urea Solutions at Different Concentrations: Properties from Simulation Studies

机译:不同浓度尿素溶液中的优先溶剂化:模拟研究的性质

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摘要

We performed molecular dynamics simulations of urea solutions at different concentrations with two urea models (OPLS and KBFF) to examine the structures responsible for the thermodynamic solution properties. Our simulation results showed that hydrogen-bonding properties such as the average number of hydrogen bonds and their lifetime distributions were nearly constant at all concentrations between infinite dilution and the solubility limit. This implies that the characterization of urea–water solutions in the molarity concentration scale as nearly ideal is a result of facile local hydrogen bonding rather than a global property. Thus, urea concentration does not influence the local propensity for hydrogen bonds, only how they are satisfied. By comparison, the KBFF model of urea donated fewer hydrogen bonds than OPLS. We found that the KBFF urea model in TIP3P water better reproduced the experimental density and diffusion constant data. Preferential solvation analysis showed that there were weak urea–urea and water–water associations in OPLS solution at short distances, but there were no strong associations. We divided urea molecules into large, medium, and small clusters to examine fluctuation properties and found that any particular urea molecule did not stay in the same cluster for a long time. We found neither persistent nor large clusters.
机译:我们使用两个尿素模型(OPLS和KBFF)对不同浓度的尿素溶液进行了分子动力学模拟,以研究负责热力学溶液特性的结构。我们的模拟结果表明,在无限稀释和溶解度极限之间的所有浓度下,氢键性质(例如氢键的平均数目及其寿命分布)几乎恒定。这意味着在摩尔浓度范围内将尿素-水溶液的特性描述为接近理想状态是由于局部氢键易于形成而不是整体性质的结果。因此,尿素浓度不会影响氢键的局部倾向,而只会影响其满足程度。相比之下,尿素的KBFF模型提供的氢键少于OPLS。我们发现,在TIP3P水中的KBFF尿素模型可以更好地再现实验密度和扩散常数数据。优先溶剂化分析显示,OPLS溶液在短距离内尿素-尿素和水-水的缔合较弱,但没有强缔合。我们将尿素分子分为大簇,中簇和小簇,以检查波动特性,发现任何特定的尿素分子不会长时间停留在同一簇中。我们既没有发现持久的集群,也没有发现大型的集群。

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  • 期刊名称 other
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  • 年(卷),期 -1(111),19
  • 年度 -1
  • 页码 5233–5242
  • 总页数 27
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