Prediction of aqueous solubility of a strongly soluble solute from molecular simulation.

IF 3.1 2区 化学 Q3 CHEMISTRY, PHYSICAL Journal of Chemical Physics Pub Date : 2023-07-28 DOI:10.1063/5.0159402
James Carruthers, Mauro Ferrario, Jamshed Anwar
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Abstract

The prediction of solubilities of compounds by means of molecular simulation has been receiving increasing attention due to the key role played by solubility in countless applications. We have predicted the aqueous solubility of urea at 300 K from chemical potential calculations for two urea model combinations: Özpinar/TIP3P and Hölzl/(TIP4P/2005). The methodology assumes that the intramolecular contribution of the urea molecule to the chemical potentials is identical in the crystal and in solution and, hence, cancels out. In parallel to the chemical potential calculations, we also performed direct coexistence simulations of a urea crystal slab in contact with urea-water solutions with the aim to identify upper and lower bounds to the solubility value using an independent route. The chemical potential approach yielded similar solubilities for both urea models, despite the actual chemical potential values showing a significant dependence on the force field. The predicted solubilities for the two models were 0.013-0.018 (Özpınar) and 0.008-0.012 (Hölzl) mole fraction, which are an order of magnitude lower than the experimental solubility that lies in a range of 0.125-0.216 mole fraction. The direct coexistence solubility bounds were relatively wide and did not encompass the chemical potential based solubilities, although the latter were close to the lower bound values.

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用分子模拟方法预测强溶溶质的溶解度。
由于溶解度在许多应用中起着关键作用,用分子模拟方法预测化合物的溶解度越来越受到人们的重视。我们通过对两种尿素模型组合Özpinar/TIP3P和Hölzl/(TIP4P/2005)的化学势计算,预测了尿素在300 K时的水溶性。该方法假定在晶体和溶液中尿素分子对化学势的分子内贡献是相同的,因此可以相互抵消。在化学势计算的同时,我们还进行了尿素结晶板与尿素-水溶液接触的直接共存模拟,目的是利用独立的途径确定溶解度值的上限和下限。化学势方法对两种尿素模型产生了相似的溶解度,尽管实际的化学势值显示出对力场的显著依赖。两种模型的预测溶解度分别为0.013-0.018 (Özpınar)和0.008-0.012 (Hölzl)摩尔分数,比实验溶解度0.125-0.216摩尔分数低一个数量级。直接共存溶解度边界相对较宽,不包括基于化学势的溶解度,尽管后者接近下限值。
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来源期刊
Journal of Chemical Physics
Journal of Chemical Physics 物理-物理:原子、分子和化学物理
CiteScore
7.40
自引率
15.90%
发文量
1615
审稿时长
2 months
期刊介绍: The Journal of Chemical Physics publishes quantitative and rigorous science of long-lasting value in methods and applications of chemical physics. The Journal also publishes brief Communications of significant new findings, Perspectives on the latest advances in the field, and Special Topic issues. The Journal focuses on innovative research in experimental and theoretical areas of chemical physics, including spectroscopy, dynamics, kinetics, statistical mechanics, and quantum mechanics. In addition, topical areas such as polymers, soft matter, materials, surfaces/interfaces, and systems of biological relevance are of increasing importance. Topical coverage includes: Theoretical Methods and Algorithms Advanced Experimental Techniques Atoms, Molecules, and Clusters Liquids, Glasses, and Crystals Surfaces, Interfaces, and Materials Polymers and Soft Matter Biological Molecules and Networks.
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