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Li+ solvation and kinetics of Li+-BF4-/PF6- ion pairs in ethylene carbonate. A molecular dynamics study with classical rate theories

机译:Li +碳酸酯Li + -BF4- / PF6离子对的溶剂化和动力学。 具有古典速率理论的分子动力学研究

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Using our polarizable force-field models and employing classical rate theories of chemical reactions, we examine the ethylene carbonate (EC) exchange process between the first and second solvation shells around Li+ and the dissociation kinetics of ion pairs Li+-[BF4] and Li+-[PF6] in this solvent. We calculate the exchange rates using transition state theory and correct them with transmission coefficients computed by the reactive flux, Impey, Madden, and McDonald approaches, and Grote-Hynes theory. We found that the residence times of EC around Li+ ions varied from 60 to 450 ps, depending on the correction method used. We found that the relaxation times changed significantly from Li+-[BF4] to Li+-[PF6] ion pairs in EC. Our results also show that, in addition to affecting the free energy of dissociation in EC, the anion type also significantly influences the dissociation kinetics of ion pairing. Published by AIP Publishing.
机译:利用我们的可极化力场模型和使用化学反应的经典速率理论,我们在Li +周围的第一和第二溶剂化壳和离子对的解离动力学之间检查碳酸乙酯(EC)交换过程Li + - [Bf4]和Li + - [PF6]在该溶剂中。 我们使用过渡状态理论计算汇率,并用反应通量,临近,MADDEN和麦当劳方法计算的传输系数,以及格雷特 - 海恩斯理论。 我们发现EC周围的Li +离子的停留时间从60到450 ps变化,具体取决于所使用的校正方法。 我们发现,在EC中,弛豫时间从Li + - [BF4]到Li + - [PF6]离子对中显着变化。 我们的结果还表明,除了影响EC中解离的自由能外,阴离子型还会影响离子配对的解离动力学。 通过AIP发布发布。

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