首页> 外文期刊>The Journal of Chemical Physics >The 1-ethyl-3-methylimidazolium bis(trifluoro-methylsulfonyl)-imide ionic liquid nanodroplets on solid surfaces and in electric field: A molecular dynamics simulation study
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The 1-ethyl-3-methylimidazolium bis(trifluoro-methylsulfonyl)-imide ionic liquid nanodroplets on solid surfaces and in electric field: A molecular dynamics simulation study

机译:固体表面和电场上的1-乙基-3-甲基咪唑鎓双(三氟甲基磺酰基) - 酰亚胺离子液体纳米液体:分子动力学模拟研究

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摘要

Atomistic molecular dynamics simulations were conducted to study the wetting states of 1-ethyl-3- methylimidazolium bis(trifluoro-methylsulfonyl)-imide ionic liquid (IL) nanodroplets on surfaces with different strengths of van der Waals (VDW) interactions and in the presence of an electric field. By adjusting the depth of Lennard-Jones potential, the van der Waals interaction between the solid surface and ionic liquid was systematically varied. The shape of the droplets was analyzed to extract the corresponding contact angle utilized to characterize wetting states of the nanodroplets. The explored range of surface-IL interactions allowed contact angles ranging from complete IL spreading on the surface to poor wettability. The effect of the external electrical field was explored by adding point charges to the surface atoms. Systems with two charge densities (+/- 0.002 e/atom and +/- 0.004 e/atom) that correspond to 1.36 V/nm and 2.72 V/nm electric fields were investigated. Asymmetrical wetting states were observed for both cases. At 1.36 V/nm electric field, contributions of IL-surface VDW interactions and Coulombic interactions to the wetting state were competitive. At 2.72 V/nm field, electrostatic interactions dominate the interaction between the nanodroplet and surface, leading to enhanced wettability on all surfaces. Published by AIP Publishing.
机译:进行原子的分子动力学模拟,研究了在具有不同强度的范德华(VDW)相互作用的表面上的1-乙基-3-甲基咪唑鎓双(三氟甲基磺酰基)二(三氟 - 甲基磺酰基)二乙酰体液(IL)纳米液体的润湿状态电场。通过调整Lennard-Jones电位的深度,系统变化了固体表面和离子液体之间的范德华相互作用。分析液滴的形状以提取用于表征纳米辊的润湿状态的相应接触角。表面-IL相互作用的探索范围允许接触角范围从表面上完全散布到较差的润湿性。通过向表面原子添加点电荷来探索外部电场的效果。研究了对应于1.36 V / NM和2.72 V / NM电场的两个电荷密度(+/- 0.002 e /原子和+/- 0.004 e /原子)的系统。两种情况下观察到不对称润湿状态。在1.36 V / NM电场下,IL-Sureface VDW相互作用和对润湿状态的库仑相互作用的贡献具有竞争力。在2.72 v / nm域,静电相互作用主导了纳米射线和表面之间的相互作用,导致所有表面上的润湿性增强。通过AIP发布发布。

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