材料科学
离子电导率
快离子导体
四方晶系
电解质
电导率
离子
离子键合
扩散
工作(物理)
化学物理
固溶体
热传导
硫化物
电阻率和电导率
协调数
活化能
原子扩散
热力学
带隙
硫化铅
作者
Shaoxiong Shi,Liping Wang,Sifan Ling,Bei Deng,Baiqing Yu,Zhaohui Huang,R. Q. Zhang,W. J. Wu,Jinlong Zhu,Songbai Han,Pei Wang,Shukui Li,Juncao Bian
标识
DOI:10.1002/adfm.202527133
摘要
ABSTRACT Li thioborate solid electrolytes (SEs) have recently emerged as a typical SE system with theoretical room temperature (RT) ionic conductivity of 80 mS cm −1 . However, experimental explorations on this SE system are still insufficient, leading to a large gap between the experimental performance and the theoretical prediction. In this work, a high‐pressure high‐temperature method is developed for the first time to prepare the new Li thioborate of LiBS 2 with cubic and tetragonal phases. The cubic LiBS 2 SE exhibits the highest RT ionic conductivity of 0.43 mS cm −1 . The diffusion of the Li ions is accompanied with collective local Li‐S coordination and de‐coordination, termed as “Li‐S dynamic coordination”, which are beneficial for lowering the energy barrier and boosting the superionic conduction. The findings in this work can be applied as theoretical guidance for the design of novel sulfide based SE systems.
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