Qiu Yuxin, Nian Yao, Ma Yonghui, Xu Lei, Hu Yubing, Song Jian, Luo Langli, Han You, Zhang Lifeng
Institute of Molecular Plus, Department of Chemistry, Tianjin University & Haihe Laboratory of Sustainable Chemical Transformations, Tianjin 300072, China.
School of Chemical Engineering and Technology, Collaborative Innovation Center of Chemical Science and Chemical Engineering (Tianjin), Tianjin University, Tianjin 300350, China.
ACS Appl Mater Interfaces. 2024 Oct 9;16(40):53793-53800. doi: 10.1021/acsami.4c10641. Epub 2024 Sep 28.
The lithium lanthanum titanium oxide (LLTO) perovskite is one type of superior lithium (Li)-ion conductor that is of great interest as a solid-state electrolyte for all-solid-state lithium batteries. Structural defects and impurity phases formed during the synthesis of LLTO largely affect its Li-ion conductivity, yet the underlying Li diffusion mechanism at the atomic scale is still under scrutiny. Herein, we use aberration-corrected transmission electron microscopy to perform a thorough structural characterization of the LLTO ceramic pellet. We reveal a prevalent transient phase transition of (La, Ti)O existing at the antiphase boundaries between single-crystalline LLTO domains. This transient phase exhibits a specific crystal orientation with the LLTO phase and shows a gradual structural transition to a tetragonal LLTO structure, which enables detailed crystallographic analysis to correlate their formation to the sintering process of LLTO powders into ceramic pellets. We also find that Li diffusion is retarded by this phase and correlated with the excess amount of La, which is corroborated by the theoretical evaluation of the atomistic mechanisms of Li diffusion across this phase.
锂镧钛氧化物(LLTO)钙钛矿是一种优质的锂离子导体,作为全固态锂电池的固态电解质备受关注。LLTO合成过程中形成的结构缺陷和杂质相在很大程度上影响其锂离子电导率,然而在原子尺度上潜在的锂扩散机制仍在研究之中。在此,我们使用像差校正透射电子显微镜对LLTO陶瓷片进行全面的结构表征。我们揭示了在单晶LLTO畴之间的反相边界处存在普遍的(La,Ti)O瞬态相变。该瞬态相与LLTO相呈现特定的晶体取向,并显示出向四方LLTO结构的逐渐结构转变,这使得详细的晶体学分析能够将它们的形成与LLTO粉末烧结成陶瓷片的过程相关联。我们还发现锂扩散受此相阻碍,并与过量的La相关,这通过对锂跨此相扩散的原子机制的理论评估得到了证实。