首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Structure and Dynamics of Ionic Liquid [MMIM][Br] Confined in Hydrophobic and Hydrophilic Porous Matrices: A Molecular Dynamics Simulation Study
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Structure and Dynamics of Ionic Liquid [MMIM][Br] Confined in Hydrophobic and Hydrophilic Porous Matrices: A Molecular Dynamics Simulation Study

机译:疏水和亲水多孔基体中离子液体[MMIM] [Br]的结构和动力学:分子动力学模拟研究

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The effects of confinement on the structural and dynamical properties of the ionic liquid (IL) 1,3dimethylimidazolium bromide ([MMIM] [Br]) have been investigated by molecular dynamics simulations. We used zeolite faujasite (NaY) as a hydrophilic confinement and dealuminated faujasite (DAY) as a hydrophobic confinement. The presence of an extra framework cation, [Na+], in NaY makes the host hydrophilic, whereas DAY, with no extra framework cation, is hydrophobic. Although both NaY and DAY have almost similar structures, the IL showed markedly different structural and dynamical properties in these confinements and in bulk. In the confinements, the cation cation radial distribution function, which strongly depends on temperature, exhibits a layer-like structure, whereas in bulk, it shows a liquid-like structure that hardly depends on temperature. Although the interaction between [MMIK](+) and Br- in DAY is stronger than that in both NaY and bulk, the strength of the interaction between them is almost invariant with temperature. Both [MMIM](+) and Br- strongly interact with Na+ of the host, and their interaction strongly depends on temperature, whereas the interaction of the IL with Si and O is very weak and invariant with temperature. In bulk, the self-diffusion coefficient, [D], of both [MMIM](+) and Br- increases exponentially with temperature, and the D of the cation is slightly higher than that of the anion at all studied temperatures, whereas in the confinements, [MMIM](+) moves much faster than Br. For example, in the hydrophilic confinement, the D of the cation is 20-30 times higher than that of the anion. The D of both the ions decreases significantly in the confinements as compared to that in bulk. During diffusion, [MMIM](+) diffuses closer to the inner surface in the hydrophilic confinement than that in the hydrophobic confinement. The diffusion pathway imperceptibly depends on temperature but strongly depends on the nature of the confinement. The self part of the time-dependent van Hoove correlation function of [MMIM](+) in the hydrophilic confinement shows a larger deviation from its Gaussian form than that in the hydrophobic confinement at all temperatures, indicating that the long-time dynamics of [MMIM](+) in NaY is more heterogeneous than that in DAY. Although the orientational relaxation time scales of [MMIM](+) in the confinements significantly slowed as compared to those in bulk, confinement does not affect the librational motion of the collective hydrogen-bond network present in the IL.
机译:通过分子动力学模拟研究了封闭对离子液体(IL)1,3二甲基咪唑鎓溴化物([MMIM] [Br])的结构和动力学性质的影响。我们使用沸石八面沸石(NaY)作为亲水性禁闭物,并且将脱铝八面沸石(DAY)作为疏水性禁闭物。 NaY中额外骨架阳离子[Na +]的存在使宿主具有亲水性,而没有额外骨架阳离子的DAY是疏水的。尽管NaY和DAY几乎都具有相似的结构,但IL在这些禁闭区和整体上显示出明显不同的结构和动力学特性。在禁闭区内,强烈依赖于温度的阳离子阳离子径向分布函数呈现出层状结构,而总体上却表现出几乎不依赖于温度的液体状结构。尽管DAY中[MMIK](+)与Br-之间的相互作用强于NaY和本体中的相互作用,但它们之间的相互作用强度随温度几乎不变。 [MMIM](+)和Br-都与宿主的Na +强烈相互作用,并且它们的相互作用强烈取决于温度,而IL与Si和O的相互作用非常弱,并且随温度不变。总体而言,[MMIM](+)和Br-的自扩散系数[D]随温度呈指数增长,并且在所有研究温度下阳离子的D均略高于阴离子的D。在限制条件下,[MMIM](+)的移动速度比Br快得多。例如,在亲水性禁闭中,阳离子的D比阴离子的D高20-30倍。与散装相比,两种离子的D在限定范围内均显着降低。在扩散过程中,[MMIM](+)在亲水区域的扩散比在疏水区域的扩散更靠近内表面。扩散途径不明显地取决于温度,但是强烈取决于限制的性质。 [MMIM](+)随时间变化的范霍夫相关函数的自相关部分在所有温度下均比其在疏水状态下的高斯形式具有更大的偏离,表明[ NaY中的MMIM](+)比DAY中的异构。尽管与大块的相比,[MMIM](+)的取向弛豫时间尺度显着减慢,但约束不会影响IL中存在的集体氢键网络的自由运动。

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