Honti Barbara, Idrissi Abdenacer, Jedlovszky Pál
Budapest University of Technology and Economics, Szt. Gellért tér 4, H-1111 Budapest, Hungary.
CNRS, UMR 8516-LASIRe-Laboratoire Avancé de Spectroscopie pour les Interactions la Réactivité et l'environnement, University of Lille, F-5900 Lille, France.
J Phys Chem B. 2021 May 13;125(18):4819-4830. doi: 10.1021/acs.jpcb.1c01749. Epub 2021 May 5.
The Helmholtz free energy, energy, and entropy of mixing of ,-dimethylformamide (DMF) and water are calculated in the entire composition range by means of Monte Carlo computer simulations and thermodynamic integration using all possible combinations of five DMF and three widely used water models. Our results reveal that the mixing of DMF and water is highly non-ideal. Thus, in their dilute solutions, both molecules induce structural ordering of the major component, as evidenced by the concomitant decrease in the entropy. Among the 15 model combinations considered, only 4 reproduce the well-known full miscibility of DMF and water, 3 of which strongly exaggerate the thermodynamic driving force of the miscibility. Thus, the combination of the CS2 model of DMF and the TIP4P/2005 water model reproduces the properties of the DMF-water mixtures far better than the other combinations tested. Our results also reveal that moving a fractional negative charge from the N atom to the O atom of the DMF molecule, leading to the increase in its dipole moment, improves the miscibility of the model with water. Starting from the CS2 model and optimizing the charge to be moved, we propose a new model of DMF that reproduces very accurately both the Helmholtz free energy of mixing of aqueous DMF solutions in the entire composition range (when used in combination with the TIP4P/2005 water model) and also the internal energy of neat DMF.
通过蒙特卡罗计算机模拟和热力学积分,利用五种二甲基甲酰胺(DMF)和三种广泛使用的水模型的所有可能组合,计算了DMF与水混合时的亥姆霍兹自由能、能量和熵,计算范围涵盖了整个组成范围。我们的结果表明,DMF与水的混合是高度非理想的。因此,在它们的稀溶液中,两种分子都会诱导主要成分的结构有序化,这表现为熵随之降低。在所考虑的15种模型组合中,只有4种能够重现DMF与水众所周知的完全互溶性,其中3种极大地夸大了互溶性的热力学驱动力。因此,DMF的CS2模型与TIP4P/2005水模型的组合比其他测试组合能更好地重现DMF-水混合物的性质。我们的结果还表明,将部分负电荷从DMF分子的N原子转移到O原子上,导致其偶极矩增加,可改善该模型与水的互溶性。从CS2模型出发并优化要转移的电荷,我们提出了一种新的DMF模型,该模型在整个组成范围内(与TIP4P/2005水模型结合使用时)能非常准确地重现DMF水溶液混合时的亥姆霍兹自由能,以及纯DMF的内能。