首页> 外文期刊>Physical chemistry chemical physics: PCCP >Monte Carlo simulation and SAFT modeling study of the solvation thermodynamics of dimethylformamide, dimethylsulfoxide, ethanol and 1-propanol in the ionic liquid trimethylbutylammonium bis(trifluoromethylsulfonyl)imide
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Monte Carlo simulation and SAFT modeling study of the solvation thermodynamics of dimethylformamide, dimethylsulfoxide, ethanol and 1-propanol in the ionic liquid trimethylbutylammonium bis(trifluoromethylsulfonyl)imide

机译:离子液体三甲基丁基铵双(三氟甲基磺酰基)酰亚胺中二甲基甲酰胺,二甲基亚砜,乙醇和1-丙醇的溶剂化热力学的蒙特卡罗模拟和SAFT建模研究

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摘要

Understanding fundamental solvation phenomena and mixture thermodynamic properties for organic molecules in ionic liquids is essential to the development of ionic liquids in many application areas. In the present work, molecular simulations were used to compute a wide range of properties for the pure ionic liquid trimethylbutylammonium bis(trifluoromethylsulfonyl)imide as well as mixtures of this ionic liquid with ethanol, 1-propanol, dimethylformamide, and dimethylsulfoxide. A new force field for the ionic liquid was developed and validated by computing ionic liquid surface tension and density as a function of temperature. Force fields for ethanol and propanol were taken from the literature, while new force fields were developed for dimethylformamide and dimethylsulfoxide. These force fields were shown to yield vapor-liquid coexistence curves, vapor pressure curves and critical points in excellent agreement with experimental data. Absorption isotherms, enthalpies of mixing and mixture volumes were then computed and shown to agree well with available literature. The simulations help rationalize the observed trends in solubility and enthalpy of mixing in terms of the relative strength of hydrogen bonding between the solutes and the ionic liquid. It was found that the entropy of absorption plays a very important role in the solvation process. The PCIP-SAFT equation of state was able to fit the experimental data (or simulation results when experiments were unavailable) very accurately with only small adjustable binary interaction parameters.
机译:了解离子液体中有机分子的基本溶剂化现象和混合物的热力学性质对于在许多应用领域中开发离子液体至关重要。在本工作中,分子模拟用于计算纯离子液体双(三氟甲基磺酰基)酰亚胺三甲基丁基铵以及该离子液体与乙醇,1-丙醇,二甲基甲酰胺和二甲基亚砜的混合物的各种性能。通过计算离子液体的表面张力和密度随温度的变化,开发并验证了离子液体的新力场。乙醇和丙醇的力场取自文献,而二甲基甲酰胺和二甲基亚砜的新力场得到了发展。这些力场显示出气液共存曲线,蒸气压力曲线和临界点,与实验数据非常吻合。然后计算吸收等温线,混合焓和混合物体积,并显示出与现有文献非常吻合。根据溶质和离子液体之间氢键的相对强度,模拟有助于合理化所观察到的溶解度和混合焓趋势。发现吸收的熵在溶剂化过程中起非常重要的作用。 PCIP-SAFT状态方程仅需很小的可调节二元相互作用参数就能非常准确地拟合实验数据(或无法进行实验时的模拟结果)。

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