Mulliken Center for Theoretical Chemistry, Rheinische Friedrich-Wilhelms-Universität Bonn, Beringstr. 4+6, D-53115, Bonn, Germany.
Université de Strasbourg, CNRS, CMC UMR 7140, Laboratoire MSM, F-67000, Strasbourg, France.
Chemphyschem. 2022 Jan 5;23(1):e202100620. doi: 10.1002/cphc.202100620. Epub 2021 Nov 11.
Binary mixtures of hexafluoroisopropanol with either methanol or acetone are analyzed via classical molecular dynamics simulations and quantum cluster equilibrium calculations. In particular, their populations and thermodynamic properties are investigated with the binary quantum cluster equilibrium method, using our in-house code Peacemaker 2.8, upgraded with temperature-dependent parameters. A novel approach, where the final density from classical molecular dynamics, has been used to generate the necessary reference isobars. The hydrogen bond network in both type of mixtures at molar fraction of hexafluoroisopropanol of 0.2, 0.5, and 0.8 respectively is investigated via the molecular dynamics trajectories and the cluster results. In particular, the populations show that mixed clusters are preferred in both systems even at 0.2 molar fractions of hexafluoroisopropanol. Enthalpies and entropies of vaporization are calculated for the neat and mixed systems and found to be in good agreement with experimental values.
通过经典分子动力学模拟和量子团簇平衡计算分析了六氟异丙醇与甲醇或丙酮的二元混合物。特别地,使用我们内部的 Peacemaker 2.8 代码,并使用随温度变化的参数进行了二元量子团簇平衡方法,研究了它们的分布和热力学性质。一种新方法是使用经典分子动力学的最终密度来生成必要的参考等压线。通过分子动力学轨迹和团簇结果研究了摩尔分数分别为 0.2、0.5 和 0.8 的两种混合物中的氢键网络。特别是,分布表明即使在六氟异丙醇的摩尔分数为 0.2 的情况下,混合团簇在这两个体系中都是首选的。计算了纯物质和混合物体系的汽化焓和熵,并与实验值吻合良好。