Atomistic Insight into Ion Transport and Conductivity in Ga/Al-Substituted Li7La3Zr2O12 Solid Electrolytes

被引:53
作者
Garcia Daza, Fabian A. [1 ]
Bonilla, Mauricio R. [1 ]
Llordes, Anna [2 ,3 ]
Carrasco, Javier [2 ]
Aldimatskaya, Elena [1 ,3 ]
机构
[1] BCAM, Alameda Mazarredo 14, E-48009 Bilbao, Spain
[2] CIC EnergiGUNE, Albert Einstein 48, E-01510 Minano, Spain
[3] Basque Fdn Sci, Ikerbasque, Maria Diaz de Haro 3, E-48013 Bilbao, Spain
关键词
solid electrolytes; Ga/Al-substituted LLZO; molecular dynamics; enhanced sampling hybrid Monte Carlo; GSHMC; Li-ion conductivity/diffusion; MOLECULAR-DYNAMICS SIMULATIONS; AL-DOPED LI7LA3ZR2O12; ELECTROCHEMICAL PROPERTIES; SPLITTING INTEGRATORS; LI; GA; CONDUCTORS; 1ST-PRINCIPLES; DENSIFICATION; EFFICIENCY;
D O I
10.1021/acsami.8b17217
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
Garnet-structured Li7La3Zr2O12 is a promising solid electrolyte for next-generation solid-state Li batteries. However, sufficiently fast Li-ion mobility required for battery applications only emerges at high temperatures, upon a phase transition to cubic structure. A well-known strategy to stabilize the cubic phase at room temperature relies on aliovalent substitution; in particular, the substitution of Li+ by Al3+ and Ga3+ ions. Yet, despite having the same formal charge, Ga3+ substitution yields higher conductivities (10(-3) S/cm) than Al3+ (10(-4) S/cm). The reason of such difference in ionic conductivity remains a mystery. Here we use molecular dynamic simulations and advanced sampling techniques to precisely unveil the atomistic origin of this phenomenon. Our results show that Li+ vacancies generated by Al3+ and Ga3+ substitution remain adjacent to Ga3+ and Al3+ ions, without contributing to the promotion of Li+ mobility. However, while Ga3+ ions tend to allow limited Li+ diffusion within their immediate surroundings, the less repulsive interactions associated with Al3+ ions lead to a complete blockage of neighboring Li+ diffusion paths. This effect is magnified at lower temperatures, and explains the higher conductivities observed for Ga-substituted systems. Overall this study provides a valuable insight into the fundamental ion transport mechanism in the bulk of Ga/Al-substituted Li7La3Zr2O12 and paves the way for rationalizing aliovalent substitution design strategies for enhancing ionic transport in these materials.
引用
收藏
页码:753 / 765
页数:13
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