焓
分子
化学
吉布斯自由能
热力学
质子核磁共振
大气温度范围
混合(物理)
分子动力学
物理化学
计算化学
有机化学
量子力学
物理
作者
Haiyun Hou,Xinzi Zhou,Xinlu Lin,Luohong Zhang,Xin Zhang,Yanping Du,Songtao Liu,Chang Liu
标识
DOI:10.1016/j.molliq.2020.114049
摘要
In order to explore the properties and molecular interactions in the binary systems of 1-alkylimidazole with molecular solvents, the system of x 1-ethylimidazole (herein referred to as 1-Eim) + (1-x) water, in the temperature range (288.15–328.15) K, the density ρ, sound velocity u, viscosity η, refractive index nD, pH and conductivity κ, and the 1H NMR δH, were measured at atmospheric pressure; the excess molar enthalpy HmE, the excess molar Gibbs free energy GmE, and the excess molar entropy SmE were predicted from the COSMO-RS model. The experimental and predicted properties indicate that the H-bonded interactions are the predominant interactions over the whole composition range. 1-Eim protons share more electron densities than water protons via the H-bonds, which are stronger between dissimilar molecules than between similar ones. The stable H-bonded structure of water molecules breaks when x is about 0.1, while the stable H-bonded structure of 1-Eim molecules forms when x is about 0.9. Temperature affects the H-bonded interactions more in the case of dissimilar molecules than similar molecules, especially in the water-rich region. The real mixing process is an enthalpy-driving spontaneous process with the liquid structure more ordered. A lower temperature more greatly benefits spontaneous mixing.
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