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Transport properties of room-temperature ionic liquids from classical molecular dynamics

机译:基于经典分子动力学的室温离子液体的传输性质

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Room-temperature ionic liquids (RTILs) have attracted much attention in the scientific community in the past decade due their novel and highly customizable properties. Nonetheless, their high viscosities pose serious limitations to the use of RTILs in practical applications. To elucidate some of the physical aspects behind transport properties of RTILs, extensive classical molecular dynamics calculations are reported. Here, in particular, bulk viscosities and ionic conductivities of butyl-methyl-imidazole based RTILs are presented over a wide range of temperatures. The dependence of the properties of the liquids on simulation parameters, e.g., system-size effects or the choice of the interaction potential, is analyzed in detail
机译:在过去的十年中,室温离子液体(RTIL)由于其新颖且高度可定制的特性而在科学界引起了广泛关注。但是,它们的高粘度严重限制了在实际应用中使用RTIL。为了阐明RTIL转运特性背后的一些物理方面,已报道了广泛的经典分子动力学计算。在此,尤其是,丁基甲基-咪唑基RTIL的体积粘度和离子电导率在很宽的温度范围内均存在。详细分析了液体性质对模拟参数的依赖性,例如系统尺寸效应或相互作用势的选择

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