首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Tracing Dynamics, Self-Diffusion, and Nanoscale Structural Heterogeneity of Pure and Binary Mixtures of Ionic Liquid 1-Hexyl-2,3-dimethylimidazolium Bis(fluorosulfonyl)imide with Acetonitrile: Insights from Molecular Dynamics Simulations
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Tracing Dynamics, Self-Diffusion, and Nanoscale Structural Heterogeneity of Pure and Binary Mixtures of Ionic Liquid 1-Hexyl-2,3-dimethylimidazolium Bis(fluorosulfonyl)imide with Acetonitrile: Insights from Molecular Dynamics Simulations

机译:离子液体1-己基-2,3-二甲基咪唑双(氟磺酰基)酰亚胺与乙腈的纯和二元混合物的示踪动力学,自扩散和纳米级结构异质性:分子动力学模拟的启示

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All-atom molecular dynamics (MD) simulations of the ionic liquid (IL) 1-hexyl-2,3-dimethylimidazolium bis(fluorosulfonyl)imide ([C(6)mmirn] [PSI]) and its binary mixtures with acetonitrile (ACN) have been reported for the first time. The presence of ACN as a cosolvent, similar to the effect of increasing temperature, causes enhancements in the ion translational motion and fluidity of the IL, leading to significant improvement of ionic conductivity and self diffusion, which is well explained by a microscopic structural analysis. In neat IL and a concentrated IL mixture, self diffusion of the cation is higher than that of the corresponding anion; however, further addition of ACN into the diluted mixtures with IL molar fractions (x(IL)'s) below 0.50 results in more weakened interactions among the nearest ACN-anion neighbors compared to those among the ACN-cation neighbors so that the number of isolated anions is more than that of isolated cations under this condition, and the anions diffuse faster than the cations, as expected on the basis of their relative sizes. The velocity autocorrelation function analysis indicates an inverse relation between x(IL) and the mean collision time of each species. Additionally, at a fixed x(IL), both the mean collision time and velocity randomization time of ACN are shorter than those of the ions. Gradual addition of ACN changes the morphology of nanosegregated domains and tends to disrupt ionic clusters (i.e., it scatters and decomposes both the polar and nonpolar domains) compared with pure IL, whereas both the radial and spatial distribution functions show the stabilization role of ACN in the close-contact ion-pair association. On the other hand, increasing ACN causes weakening of the structural correlations of the cation-cation and anion-anion neighbors in the solutions. ACN molecules appeared as a bridge, with balanced affinities between the polar and nonpolar domains, and no indication was observed for aggregation of ACN molecules in the studied mixtures that can rationalize good miscibility with imidazolium-based ILs.
机译:离子液体(IL)1-己基-2,3-二甲基咪唑双(氟磺酰基)酰亚胺([C(6)mmirn] [PSI])及其与乙腈的二元混合物(ACN)的全原子分子动力学(MD)模拟)已首次报告。 ACN作为助溶剂的存在,类似于温度升高的影响,会导致IL的离子平移运动和流动性增强,从而导致离子电导率和自扩散的显着改善,这在微观结构分析中得到了很好的解释。在纯净IL和浓IL混合物中,阳离子的自扩散高于相应阴离子的自扩散;但是,将ACN进一步添加到稀释后的混合物中,其IL摩尔分数(x(IL)'s低于0.50)会导致与ACN阳离子邻居之间的相互作用最弱,与ACN阳离子邻居之间的相互作用更弱。在这种条件下,孤立的阴离子比孤立的阳离子要多,并且阴离子的扩散要比阳离子快,这是基于它们的相对大小所预期的。速度自相关函数分析表明x(IL)与每种物质的平均碰撞时间成反比。此外,在固定的x(IL)下,ACN的平均碰撞时间和速度随机化时间都比离子的短。与纯IL相比,逐渐添加ACN会改变纳米隔离域的形态,并趋向于破坏离子簇(即分散和分解极性和非极性域),而径向和空间分布函数均显示ACN在紧密接触离子对缔合。另一方面,增加的ACN会导致溶液中阳离子-阳离子和阴离子-阴离子邻居的结构相关性减弱。 ACN分子以桥的形式出现,在极性和非极性结构域之间具有平衡的亲和力,并且在所研究的混合物中未观察到ACN分子聚集的迹象,这些迹象可合理化与咪唑类ILs的良好混溶性。

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