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首页> 外文期刊>Journal of Materiomics >Revisiting the ionic diffusion mechanism in Li3PS4 via the joint usage of geometrical analysis and bond valence method
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Revisiting the ionic diffusion mechanism in Li3PS4 via the joint usage of geometrical analysis and bond valence method

机译:通过几何分析和键合价方法的结合重新研究Li3PS4中的离子扩散机理

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Inorganic solid electrolytes have obvious advantages on safety and electrochemical stability compared to organic liquid electrolytes, but the advance on high ionic conductivity of typical electrolytes is still undergoing. Although the first-principles calculation in the ion migration simulation is an important strategy to develop high-performance solid electrolyte, the process is very time-consuming. Here, we propose an effective method by combining the geometrical analysis and bond valance sum calculation to obtain an approximate minimum energy path preliminarily, in parallel to pave the way for the interoperability of low-precision and high-precision ion transport calculation. Taking a promising electrolyte Li_(3)PS_(4) as an example, we revisit its Li-ionic transport behavior. Our calculated Li-ion pathways and the activation energies (the corresponding values: 1.09?eV vs . 0.88?eV vs . 0.86?eV) in γ -, β - and α -Li_(3)PS_(4) are consistent with the ones obtained from the first-principles calculations. The variations of the position of P-ions lead the rearrangement of the host PS_(4) tetrahedron, affecting the diffusion positions of Li-ions and further enabling high Li~(+) conductivity in β -Li_(3)PS_(4).
机译:与有机液体电解质相比,无机固体电解质在安全性和电化学稳定性方面具有明显的优势,但是典型电解质在高离子电导率方面的进步仍在继续。尽管离子迁移模拟中的第一性原理计算是开发高性能固体电解质的重要策略,但该过程非常耗时。在此,我们提出了一种有效的方法,将几何分析和键价和计算相结合,初步获得了近似的最小能量路径,与此同时也为低精度和高精度离子迁移计算的互操作性铺平了道路。以有希望的电解质Li_(3)PS_(4)为例,我们重新探讨了其Li离子迁移行为。我们计算出的γ-,β-和α-Li_(3)PS_(4)的锂离子途径和活化能(相应的值:1.09?eV vs. 0.88?eV vs. 0.86?eV)与从第一性原理计算中获得的结果。 P离子位置的变化导致主体PS_(4)四面体的重排,影响Li离子的扩散位置,并进一步在β-Li_(3)PS_(4)中实现高Li〜(+)电导率。

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