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Enhanced thermal diffusion of Li in graphite by alternating vertical electric field: A hybrid quantum-classical simulation study

机译:交替垂直电场增强锂在石墨中的热扩散:混合量子经典模拟研究

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Enhancing the diffusivity of the Li ion in a Li-graphite intercalation compound that has been used as a negative electrode in the Li-ion rechargeable battery, is important in improving both the recharging speed and power of the battery. In the compound, the Li ion creates a long-range stress field around itself by expanding the interlayer spacing of graphite. We advance the hybrid quantum-classical simulation code to include the external electric field in addition to the long-range stress field by first-principles simulation. In the hybrid code, the quantum region selected adaptively around the Li ion is treated using the real-space density-functional theory for electrons. The rest of the system is described with an empirical interatomic potential that includes the term relating to the dispersion force between the C atoms in different layers. Hybrid simulation runs for Li dynamics in graphite are performed at 423K under various settings of the amplitude and frequency of alternating electric fields perpendicular to C-layers. We find that the in-plane diffusivity of the Li ion is enhanced significantly by the electric field if the amplitude is larger than 0.2 V/? within its order and the frequency is as high as 1.7 THz. The microscopic mechanisms of the enhancement are explained.
机译:在已经被用作锂离子可再充电电池中的负极的锂-石墨嵌入化合物中,提高锂离子的扩散性对于提高电池的充电速度和功率都是重要的。在该化合物中,锂离子通过扩展石墨的层间间距在其周围产生一个长距离应力场。我们提出了混合量子经典模拟代码,以通过第一原理模拟将外部电场和远距离应力场包括在内。在混合码中,使用电子的实空间密度函数理论处理在Li离子周围自适应选择的量子区域。用经验原子间电势来描述系统的其余部分,其中包括与不同层中C原子之间的分散力有关的术语。在423K下,在垂直于C层的交变电场的幅度和频率的各种设置下,对石墨中的Li动力学进行了混合仿真。我们发现,如果振幅大于0.2 V /Ω,则电场会大大增强Li离子的面内扩散率。在其阶数之内,频率高达1.7 THz。解释了增强的微观机制。

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