首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Structural origin of the superionic Na conduction in Na2B10H10 closo-borates and enhanced conductivity by Na deficiency for high performance solid electrolytes
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Structural origin of the superionic Na conduction in Na2B10H10 closo-borates and enhanced conductivity by Na deficiency for high performance solid electrolytes

机译:高性能固体电解质中Na2B10H10硼砂酸盐中超离子Na传导的结构起源和Na缺乏引起的电导率提高

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Recently reported superionic Na closo-borates have drawn considerable attention due to their potential as solid-state electrolytes for Na ion batteries. However, a fundamental understanding of the ion transport mechanism in these materials is still missing. We studied Na conduction in Na2B10H10, a model material, using first-principles calculations. We found that the superior Na diffusivity is closely linked to the behavior of the large B10H102- anionic groups. The reorientations and disorder of these groups facilitate the Na+ hopping to the octahedral (Oh) sites, which link the tetrahedral (Td) sites to form a connected diffusion network. We also found that, in spite of the frequent Na hopping events, the diffusional paths are often blocked, thereby hindering Na transport. Such a mechanism suggests that the Na conductivity can be improved by introducing extrinsic vacancies. By simulating Na-deficient systems, we found that at high temperatures, even a minimal amount of additional Na vacancies significantly increases the ionic diffusivity.
机译:最近报道的超离子型钠杂硼酸盐由于其作为钠离子电池的固态电解质的潜力而备受关注。但是,仍然缺少对这些材料中离子迁移机理的基本理解。我们使用第一性原理计算研究了Na2B10H10(一种模型材料)中的Na传导。我们发现,优异的Na扩散性与大B10H102-阴离子基团的行为密切相关。这些基团的重新定向和无序促进了Na +跃迁到八面体(Oh)部位,后者将四面体(Td)部位连接起来,形成连接的扩散网络。我们还发现,尽管发生频繁的Na跳跃事件,但扩散路径经常被阻塞,从而阻碍了Na的运输。这种机制表明,可以通过引入外在空位来提高Na的电导率。通过模拟Na缺乏系统,我们发现在高温下,即使极少量的额外Na空位也会显着增加离子扩散率。

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