首页> 外文期刊>Physical chemistry chemical physics: PCCP >Exploration of bulk and interface behavior of gas molecules and 1-butyl-3-methylimidazolium tetrafluoroborate ionic liquid using equilibrium and nonequilibrium molecular dynamics simulation and quantum chemical calculation
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Exploration of bulk and interface behavior of gas molecules and 1-butyl-3-methylimidazolium tetrafluoroborate ionic liquid using equilibrium and nonequilibrium molecular dynamics simulation and quantum chemical calculation

机译:探讨气体分子和1-丁基-3-甲基咪唑鎓四氟硼酸盐离子液体的促进和界面行为使用平衡和非醌分子动力学模拟和量子化学计算

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摘要

Ionic liquids (ILs) show brilliant performance in separating gas impurities, but few researchers have performed an in-depth exploration of the bulk and interface behavior of penetrants and ILs thoroughly. In this research, we have performed a study on both molecular dynamics (MD) simulation and quantum chemical (QC) calculation to explore the transport of acetylene and ethylene in the bulk and interface regions of 1-butyl-3-methylimidazolium tetrafluoroborate ([BMIM]-[BF4]). The diffusivity, solubility and permeability of gas molecules in the bulk were researched with MD simulation first. The subdiffusion behavior of gas molecules is induced by coupling between the motion of gas molecules and the ions, and the relaxation processes of the ions after the disturbance caused by gas molecules. Then, QC calculation was performed to explore the optical geometry of ions, ion pairs and complexes of ions and penetrants, and interaction potential for pairs and complexes. Finally, nonequilibrium MD simulation was performed to explore the interface structure and properties of the IL-gas system and gas molecule behavior in the interface region. The research results may be used in the design of IL separation media.
机译:离子液体(ILS)在分离气体杂质方面表现出辉煌的性能,但少数研究人员对彻底探讨了散热剂和ILS的散装和界面行为的深入探索。在该研究中,我们已经对分子动力学(MD)模拟和量子化学(QC)计算进行了研究,以探讨乙炔和乙烯在1-丁基-3-甲基咪唑鎓四氟硼酸盐的堆积和乙烯中的转运([Bmim ] - [bf4])。首先用MD模拟研究散装中气体分子的扩散性,溶解度和渗透性。通过在气体分子和离子的运动之间偶联,以及在气体分子引起的干扰后的离子的弛豫过程之间诱导气体分子的沉积行为。然后,进行QC计算以探索离子,离子对和离子的复合物和渗透剂的光学几何形状,以及对和复合物的相互作用电位。最后,进行非QuiBribrium MD模拟以探讨界面区域中IL - 气体系统的界面结构和性质和气体分子行为。研究结果可用于IL分离介质的设计。

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