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Heterogeneous dynamics of ionic liquids in confined films with varied film thickness

机译:不同膜厚度孔膜中离子液体的异质动态

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摘要

Dynamical behavior and characteristics of l-butyl-3-methylimidazolium hexafluorophosphate ([BMIM][PF6]) ionic liquid (IL) in confined films with varied film thickness have been investigated using atomistic molecular dynamics simulations. Simulation results indicate that the dynamics of confined ionic groups in interfacial regions is highly heterogeneous and depends strongly on their relative layered positions in the confined IL film. The dynamics and relaxation times of the ionic groups in the bulk region of confined IL films are very similar to that in the corresponding pure bulk simulation, in contrast, the diffusion of the corresponding ionic groups slows down and can be characterized by slaved diffusion while the corresponding relaxation times increase remarkably as these ionic groups come closer to the neutral graphene surface. While at the IL-vacuum interface, the diffusion and relaxation of terminal carbon atoms of butyl chains of [BMIM] cations are much faster than in other layers of the confined IL film and in the bulk region of the simulation system without confinement, due to their librated motion in this interfacial region. The dynamical heterogeneity of the confined ionic groups is intrinsically related to microscopic ionic structures and the orientational preference of [BMIM[[PF6] ion pairs in interfacial regions.
机译:已经研究了使用原子分子动力学模拟研究了由不同膜厚度的限制膜的L-丁基-3-甲基咪唑六氟磷酶([BMIM] [PF6])离子液体(IL)的动力学行为和特征。仿真结果表明,界面区域中狭窄的离子基团的动态是高度异质的,并且在密闭IL膜中强烈依赖于它们的相对分层位置。密闭IL膜的块状区域中的离子基团的动态和弛豫时间非常类似于相应的纯散装模拟中,相反,相应的离子基团的扩散减慢,并且可以通过蜗杆扩散来表征随着这些离子基团更接近中性石墨烯表面,相应的弛豫时间显着增加。虽然在IL真空界面中,终端碳原子的末端碳原子的扩散和松弛比在镜孔的其他层和仿真系统的块状区域中,而不会限制它们在这种界面区域中的光滑运动。受限离子基团的动态异质性与微观离子结构有本质上,以及界面区域中[BMIM [[PF6]离子对的定向偏好。

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    Department of Materials and Environmental Chemistry Arrhenius Laboratory Stockholm University Stockholm S-10691 Sweden.;

    Institute of Theoretical Chemistry State Key Laboratory of Theoretical and Computational Chemistry Jilin University Changchun 130023 China;

    Department of Materials and Environmental Chemistry Arrhenius Laboratory Stockholm University Stockholm S-10691 Sweden.;

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  • 正文语种 eng
  • 中图分类 物理学;化学;
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