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Ab initio prediction for the ionic conduction of lithium in LiInSiO4 and LiInGeO4 olivine materials

机译:LiInSiO4和LiInGeO4橄榄石材料中锂离子传导的从头预测

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摘要

In this paper, olivine-type LiInSiO4 and LiInGeO4 as fast ionic conductors are predicted by ab initio density functional studies. The nudged elastic band approach showed extremely small energy barrier for lithium ion hopping to neighboring sites with 0.23 eV for LiInGeO4 and 0.36 eV for LiInSiO4. However, formation energy for the intrinsic defects including lithium ion vacancy sites is expected to be large (more than similar to 1.5 eV), which suppresses ionic conductivity severely. Therefore it is expected that doping these olivine-type materials with higher valent cations may be a better option to create lithium ion vacancies.
机译:本文通过从头密度泛函研究预测了橄榄石型LiInSiO4和LiInGeO4作为快离子导体.轻推松紧带方法显示锂离子跳跃到邻近位点的能量势垒极小,LiInGeO4为0.23 eV,LiInSiO4为0.36 eV。然而,包括锂离子空位点在内的本征缺陷的形成能预计会很大(超过1.5 eV),这严重抑制了离子电导率。因此,预计用更高价阳离子掺杂这些橄榄石型材料可能是产生锂离子空位的更好选择。

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