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碱金属复合硼氢化物基固体电解质中的离子配位和迁移机制

Ion coordination and migration mechanisms in alkali metal complex borohydride-based solid electrolytes.

作者信息

Choudhary Shweta, Banerjee Swastika

机构信息

Department of Chemistry, Indian Institute of Technology Roorkee, Roorkee, 247667, Uttarakhand, India.

出版信息

Commun Chem. 2025 Apr 24;8(1):123. doi: 10.1038/s42004-025-01482-6.

Abstract

Solid electrolytes (SEs) typically consist of a static framework of anions (FA) and a sublattice of mobile cations (M), with non-covalent dispersion interactions (E) playing a key role in structural stability. However, the impact of these interactions on M-ion migration-whether they assist or hinder it-remains unclear. In this study, we investigate the diffusion barriers of M-ions in SE frameworks, focusing on the MBH family (M = Li, Na, K), and clarify the role of non-covalent interactions. Our computational analyses reveal that moving from Li to Na to K analogues in MBH results in significant changes in many-body dispersion (MBD) interactions. The MBD interactions act as springs embedded within the MBH framework, regulating the effective coordination number (ECN) of M-ions and shaping the potential energy landscape for their migration. A linear correlation is observed between ECN and E, consistent across different alkali ions. This correlation reveals a unified mechanism in which dispersion interactions regulate M-ion migration barrier and identifies a critical bottleneck for beyond-Li diffusion in MBH SEs. Intriguingly, MBD interactions further influence the prefactor in the diffusivity equation, driving anomalous diffusion behavior in SEs.

摘要

固体电解质(SEs)通常由阴离子(FA)的静态框架和可移动阳离子(M)的子晶格组成,非共价分散相互作用(E)在结构稳定性中起关键作用。然而,这些相互作用对M离子迁移的影响——是促进还是阻碍迁移——仍不清楚。在本研究中,我们研究了M离子在SE框架中的扩散势垒,重点关注MBH族(M = Li、Na、K),并阐明了非共价相互作用的作用。我们的计算分析表明,在MBH中从Li类似物到Na类似物再到K类似物的转变会导致多体色散(MBD)相互作用发生显著变化。MBD相互作用就像嵌入在MBH框架中的弹簧,调节M离子的有效配位数(ECN),并塑造其迁移的势能景观。在不同碱金属离子中,ECN和E之间均观察到线性相关性。这种相关性揭示了一种统一的机制,即色散相互作用调节M离子迁移势垒,并确定了MBH SEs中超越Li扩散的关键瓶颈。有趣的是,MBD相互作用进一步影响扩散率方程中的前置因子,导致SEs中出现反常扩散行为。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2e64/12022127/84d1145874aa/42004_2025_1482_Fig1_HTML.jpg

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