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Dynamics in a room-temperature ionic liquid:A computer simulation study of 1,3-dimethylimidazolium chloride

机译:室温离子液体中的动力学:氯化1,3-二甲基咪唑鎓的计算机模拟研究

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摘要

The transport properties and solvation dynamics of model 1,3-dialkylimidazolium chloride melt at 425 K is studied using molecular-dynamics simulations.Long trajectories of a large system have been generated and quantities such as the self-diffusion coefficient of ions,shear viscosity,and ionic conductivity have been calculated.Interestingly,the diffusion of the heavier cation is found to be faster than the anion,in agreement with experiment.The interaction model is found to predict a higher viscosity and lower electrical conductivity compared to experimental estimates.Analysis of the latter calculations points to correlated ion motions in this melt.The solvation time correlation function for dipolar and ionic probes studied using equilibrium simulations exhibits three time components,which include an ultrafast(subpicosecond)part as well as one with a time constant of around 150 ps.The ultrafast solvent relaxation is ascribed to the rattling of anions in their cage,while the slow component could be related to the reorientation of the cations as well as to ion diffusion.
机译:利用分子动力学模拟研究了1,3-二烷基咪唑鎓氯化物模型在425 K时的输运性质和溶剂化动力学,生成了大系统的长轨迹,并计算了离子的自扩散系数,剪切粘度,有趣的是,与实验一致,发现较重的阳离子的扩散快于阴离子的扩散。与实验估计值相比,发现相互作用模型可预测更高的粘度和更低的电导率。使用平衡模拟研究的偶极和离子探针的溶剂化时间相关函数具有三个时间分量,其中包括超快(亚皮秒)部分以及一个时间常数约为150的时间分量,该溶剂化时间相关函数具有三个时间分量。 ps。超快的溶剂松弛归因于其笼子中阴离子的嘎嘎声,而缓慢的组分可能与阳离子的重新取向以及离子扩散有关。

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