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Computational study of lithium nucleation tendency in Li_7La_3Zr_2O_(12) (LLZO) and rational design of interlayer materials to prevent lithium dendrites

机译:Li_7La_3Zr_2O_(12)(LLZO)中锂成核趋势的计算研究和防止锂枝晶的中间层材料的合理设计

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摘要

The driving force for the metallic lithium formation in solid electrolytes, such as the cubic Li2La3Zr2O12 (cLLZO), is still puzzling, considering the large band gap of c-LLZO and the preference of Li being ionic in oxides. In this paper, density functional theory (DFT) calculations were performed to investigate the ability of the pore surfaces to trap excess electrons, which is essential to Li nucleation tendency. Two interlayer materials were also studied, tetragonal LLZO (t-LLZO) and Li2PO2N (atomic layer deposited UPON). It was found that excess electrons would be trapped, either around the La atoms on the surface of c-LLZO or dispersed on the surface of t-LLZO. It is also thermodynamically favorable for the excess electrons on La3+ to reduce Li+. In contrast, the excess electrons were located underneath the surface in Li2PO2N, making it hard to reduce Li+. Thus the surfaces in c-LLZO provide a possible electron pathway for metallic Li formation, and the t-LLZO interlayer observed at the Li/c-LLZO interface would not stop Li dendrites due to its similar Li nucleation tendency as c-LLZO. Furthermore, we propose that an interlayer of Li2PO2N at the Li/c-LLZO interface would be efficient and defect tolerant to suppress Li dendrite formation.
机译:考虑到c-LLZO的大带隙以及在氧化物中优先选择Li离子,固态电解质(例如立方Li2La3Zr2O12(cLLZO))中形成金属锂的驱动力仍然令人困惑。本文通过密度泛函理论(DFT)计算来研究孔表面捕获多余电子的能力,这对于Li成核趋势至关重要。还研究了两种中间层材料,四方LLZO(t-LLZO)和Li2PO2N(原子层沉积的UPON)。已经发现,过量的电子将被捕获,或者在c-LLZO表面的La原子周围或在t-LLZO表面的分散。 La3 +上的多余电子还原Li +在热力学上也很有利。相反,过量的电子位于Li2PO2N中的表面之下,因此很难还原Li +。因此,c-LLZO中的表面为金属Li的形成提供了可能的电子途径,并且在Li / c-LLZO界面观察到的t-LLZO中间层不会阻止Li树枝状晶体,因为它的Li成核趋势与c-LLZO类似。此外,我们建议在Li / c-LLZO界面处的Li2PO2N中间层将有效且具有缺陷容忍性,以抑制Li树枝状晶体的形成。

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