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首页> 外文期刊>The Journal of Chemical Physics >Rate theory of solvent exchange and kinetics of Li+-BF4-/PF6- ion pairs in acetonitrile
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Rate theory of solvent exchange and kinetics of Li+-BF4-/PF6- ion pairs in acetonitrile

机译:乙腈中Li + -BF4- / PF6-离子对的溶剂交换速率理论和动力学

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In this paper, we describe our efforts to apply rate theories in studies of solvent exchange around Li+ and the kinetics of ion pairings in lithium-ion batteries (LIBs). We report one of the first computer simulations of the exchange dynamics around solvated Li+ in acetonitrile (ACN), which is a common solvent used in LIBs. We also provide details of the ion-pairing kinetics of Li+-[BF4] and Li+-[PF6] in ACN. Using our polarizable force-field models and employing classical rate theories of chemical reactions, we examine the ACN exchange process between the first and second solvation shells around Li+. We calculate exchange rates using transition state theory and weighted them with the transmission coefficients determined by the reactive flux, Impey, Madden, and McDonald approaches, and Grote-Hynes theory. We found the relaxation times changed from 180 ps to 4600 ps and from 30 ps to 280 ps for Li+-[BF4] and Li+-[PF6] ion pairs, respectively. These results confirm that the solvent response to the kinetics of ion pairing is significant. Our results also show that, in addition to affecting the free energy of solvation into ACN, the anion type also should significantly influence the kinetics of ion pairing. These results will increase our understanding of the thermodynamic and kinetic properties of LIB systems. Published by AIP Publishing.
机译:在本文中,我们描述了将速率理论应用于研究Li +周围的溶剂交换以及锂离子电池(LIBs)中离子对动力学的努力。我们报告了乙腈(ACN)中溶剂化的Li +周围交换动力学的第一个计算机模拟,这是LIB中常用的溶剂。我们还提供了ACN中Li +-[BF4]和Li +-[PF6]的离子对动力学的详细信息。使用我们可极化的力场模型并使用经典的化学反应速率理论,我们研究了Li +周围第一和第二溶剂化壳之间的ACN交换过程。我们使用过渡状态理论计算汇率,并使用由无功通量,Impey,Madden和McDonald方法以及Grote-Hynes理论确定的传输系数对它们进行加权。我们发现,Li +-[BF4]和Li +-[PF6]离子对的弛豫时间分别从180 ps变为4600 ps,从30 ps变为280 ps。这些结果证实溶剂对离子对动力学的响应是显着的。我们的结果还表明,除影响溶剂化成乙腈的自由能外,阴离子类型还应显着影响离子对的动力学。这些结果将增加我们对LIB系统的热力学和动力学性质的了解。由AIP Publishing发布。

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