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Structure, thermodynamic and transport properties of imidazolium-based bis(trifluoromethylsulfonyl)imide ionic liquids from molecular dynamics simulations

机译:咪唑基双(三氟甲基磺酰基)酰亚胺离子液体的结构,热力学和传输性质的分子动力学模拟

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Molecular dynamics (MD) simulations have been performed in order to investigate the properties of [C n mim+][Tf2N−] (n = 4, 8, 12) ionic liquids (ILs) in a wide temperature range (298.15−498.15 K) and at atmospheric pressure (1 bar). A previously developed methodology for the calculation of the charge distribution that incorporates ab initio quantum mechanical calculations based on density functional theory (DFT) was used to calculate the partial charges for the classical molecular simulations. The wide range of time scales that characterize the segmental dynamics of these ILs, especially at low temperatures, required very long MD simulations, on the order of several tens of nanoseconds, to calculate the thermodynamic (density, thermal expansion, isothermal compressibility), structural (radial distribution functions between the centers of mass of ions and between individual sites, radial-angular distribution functions) and dynamic (relaxation times of the reorientation of the bonds and the torsion angles, self-diffusion coefficients, shear viscosity) properties. The influence of the temperature and the cation's alkyl chain length on the above-mentioned properties was thoroughly investigated. The calculated thermodynamic (primary and derivative) and structural properties are in good agreement with the experimental data, while the extremely sluggish dynamics of the ILs under study renders the calculation of their transport properties a very complicated and challenging task, especially at low temperatures.View full textDownload full textKeywordsionic liquids, imidazolium, molecular simulation, physical propertiesRelated var addthis_config = { ui_cobrand: "Taylor & Francis Online", services_compact: "citeulike,netvibes,twitter,technorati,delicious,linkedin,facebook,stumbleupon,digg,google,more", pubid: "ra-4dff56cd6bb1830b" }; Add to shortlist Link Permalink http://dx.doi.org/10.1080/00268976.2012.670280
机译:为了研究[C n mim + ] [Tf 2 N 的性质,进行了分子动力学(MD)模拟[sup>](n == 4、8、12)离子液体(ILs)在较宽的温度范围(298.15498498.15âK)和在大气压(1巴)下。以前开发的用于计算电荷分布的方法,该方法结合了基于密度泛函理论(DFT)的从头算起的量子力学计算,用于计算经典分子模拟的部分电荷。表征这些IL的分段动力学的时间范围很广,尤其是在低温下,需要非常长的MD模拟(数十纳秒的数量级)来计算热力学(密度,热膨胀,等温可压缩性),结构(离子质量中心之间以及各个部位之间的径向分布函数,径向角分布函数)和动态(键重新定向的松弛时间和扭转角,自扩散系数,剪切粘度)特性。彻底研究了温度和阳离子的烷基链长度对上述性质的影响。计算出的热力学(主要和导数)和结构特性与实验数据非常吻合,而所研究的IL的极慢的动力学特性使它们的传输特性的计算成为一项非常复杂且具有挑战性的任务,尤其是在低温下。全文下载全文关键词液体离子,咪唑鎓,分子模拟,物理性质相关var addthis_config = {ui_cobrand:“泰勒和弗朗西斯在线”,servicescompact:“ citeulike,netvibes,twitter,technorati,delicious,linkedin,facebook,stumbleupon,digg,google,更多“,pubid:” ra-4dff56cd6bb1830b“};添加到候选列表链接永久链接http://dx.doi.org/10.1080/00268976.2012.670280

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