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Mechanical properties of the solid electrolyte Al-substituted Li7La3Zr2O12 (LLZO) by utilizing micro-pillar indentation splitting test

机译:通过利用微柱压痕分裂试验,固体电解质Al-取代的Li7La3zR2O12(LLZO)的力学性能

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摘要

Garnet structured Al-substituted Li7La3Zr2O12 (Al:LLZO) is a promising candidate as electrolyte in all-solid-state Li-ion batteries due to its chemical stability against Li-metal and high voltage cathode materials. In order to ensure long-term stable operation, electrolyte crack growth induced and/or the volume change of the active material on the cathode side needs to be avoided, requiring in particular knowledge of local and global mechanical properties of the electrolyte material. Micro-pillar splitting test was used for the first time on this material to determine the microscopic fracture toughness of single grains and compare it with conventional Vickers indentation fracture toughness (VIF), which represents macroscopic fracture toughness. Both methods yielded comparative results. In conclusion, the micro-pillar splitting test can be used as an advanced locally resolved characterization method that can open up new experimental directions for characterizing and understanding battery materials and enable a targeted approach for material improvements.
机译:石榴石结构al-取代的Li7la3zR2O12(Al:Llzo)是所有固态锂离子电池中的有希望的候选者,因为其化学稳定性对Li金属和高压阴极材料。为了确保长期稳定操作,需要避免诱导和/或活性材料对阴极侧的活性材料的体积变化,需要特别地了解电解质材料的局部和全局力学性能。在该材料上首次使用微柱分裂试验以确定单晶的显微裂缝韧性,并将其与常规维氏缩进断裂韧性(VIF)进行比较,这代表宏观断裂韧性。两种方法都产生了比较结果。总之,微柱分裂试验可用作先进的局部解析的表征方法,可以打开新的实验方向,用于表征和理解电池材料,并实现有针对性的材料改进方法。

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