化学计量学
材料科学
亚稳态
尖晶石
相(物质)
化学物理
导线
降水
离子键合
导电体
结晶学
离子
物理化学
化学
冶金
有机化学
复合材料
物理
气象学
作者
Yu Chen,Xinye Zhao,Ke Chen,Krishna Prasad Koirala,Raynald Giovine,Xiaochen Yang,Shilong Wang,Nathan J. Szymanski,Shuoyan Xiong,Zhengyan Lun,Huiwen Ji,Chongmin Wang,Jianming Bai,Feng Wang,Bin Ouyang,Gerbrand Ceder
标识
DOI:10.1002/adma.202416342
摘要
Rationalizing synthetic pathways is crucial for material design and property optimization, especially for polymorphic and metastable phases. Over-stoichiometric rocksalt (ORX) compounds, characterized by their face-sharing configurations, are a promising group of materials with unique properties; however, their development is significantly hindered by challenges in synthesizability. Here, taking the recently identified Li superionic conductor, over-stoichiometric rocksalt Li-In-Sn-O (o-LISO) material as a prototypical ORX compound, the mechanisms of phase formation are systematically investigated. It is revealed that the spinel-like phase with unconventional stoichiometry forms as coherent precipitate from the high-temperature-stabilized cation-disordered rocksalt phase upon fast cooling. This process prevents direct phase decomposition and kinetically locks the system in a metastable state with the desired face-sharing Li configurations. This insight enables us to enhance the ionic conductivity of o-LISO to be >1 mS cm
科研通智能强力驱动
Strongly Powered by AbleSci AI