Structure and Conductivity in LISICON Analogues within the Li 4 GeO 4 -Li 2 MoO 4 System.

Inorganic chemistry(2023)

引用 0|浏览6
暂无评分
摘要
New solid electrolytes are crucial for the development of all-solid-state lithium batteries with advantages in safety and energy densities over current liquid electrolyte systems. While some of the best solid-state Li-ion conductors are based on sulfides, their air sensitivity makes them less commercially attractive, and attention is refocusing on air-stable oxide-based systems. Among these, the LISICON-structured systems, such as LiZnGeO and LiVGeO, have been relatively well studied. However, other systems such as the LiGeO-LiMoO system, which also show LISICON-type structures, have been relatively little explored. In this work, the LiGeMoO solid solution is investigated systematically, including the solid solution limit, structural stability, local structure, and the corresponding electrical behavior. It is found that a γ-LISICON structured solution is formed in the range of 0.1 ≤ < 0.4, differing in structure from the two end members, LiGeO and LiMoO. With increasing Mo content, the β-phase becomes increasingly more stable than the γ-phase, and at = 0.5, a pure β-phase (β-LiGeMoO) is readily isolated. The structure of this previously unknown compound is presented, along with details of the defect structure of LiGeMoO ( = 0.2) based on neutron diffraction data. Two basic types of defects are identified in LiGeMoO involving interstitial Li-ions in octahedral sites, with evidence for these coming together to form larger defect clusters. The = 0.2 composition shows the highest conductivity of the series, with values of 1.11 × 10 S cm at room temperature rising to 5.02 × 10 S cm at 250 °C.
更多
查看译文
AI 理解论文
溯源树
样例
生成溯源树,研究论文发展脉络
Chat Paper
正在生成论文摘要