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Spatially resolved stoichiometry determination of Li7La3Zr2O12 solid-state electrolytes using LA-ICP-OES

机译:使用La-ICP-OES的空间上解决的化学计量测定Li7la3zR2O12固态电解质

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摘要

Cubic Li7La3Zr2O12 (LLZO) garnets are among the most promising solid-state electrolytes for next-generation Li batteries. However, despite intensive research in recent years, little effort is spent on proper chemical analysis of the material. For reliable LLZO investigation, knowledge about the exact chemical composition, especially the Li content, is of uttermost importance. Herein, we present a method for the laterally resolved stoichiometry determination of Al stabilized LLZO (Li7-3xAlxLa3Zr2O12) using LA-ICP-OES. To ensure reliable signal quantification, matrix-matched standards are prepared and carefully characterized using sample digestion and liquid ICP-OES measurement. An internal standard-independent calibration strategy based on 100 m% normalization is applied, enabling the quantification of all cations within the material. By comparing the obtained high-precision LA-ICP-OES calibrations with analog LA-ICP-MS measurements, it is shown that ICP-OES is the superior choice for the analysis of Li. The developed method is applied to record quantitative distribution images of an Al stabilized LLZO pellet, revealing macroscopic stoichiometry variations within the sample. To verify the analysis, the average stoichiometry obtained by the LA measurements is compared with the bulk composition determined via liquid ICP-OES analysis after sample fusion. The obtained values show excellent agreement, confirming the accuracy of the developed method.
机译:立方体Li7la3zR2O12(LLZO)Garnet是下一代LI电池最有前途的固态电解质之一。然而,尽管近年来,尽管研究了密集的研究,但在对材料的适当化学分析中花费了很少的努力。对于可靠的LLZO调查,关于确切化学成分,特别是李含量的知识是最重要的。在此,我们使用La-ICP-OES提出了一种用于横向分辨的化学计量的横向分辨的化学计量法测定Al稳定的LLZO(Li7-3×3 Zr2O12)。为了确保可靠的信号量化,使用样品消化和液体ICP-OES测量来制备和仔细表征矩阵匹配的标准。应用基于100 m%归一化的内部标准无关校准策略,从而能够定量材料内的所有阳离子。通过将获得的高精度La-ICP-OES校准与模拟LA-ICP-MS测量进行比较,表明ICP-OES是LI分析的优越选择。施加开发方法以记录Al稳定的LLZO颗粒的定量分布图像,揭示样品内的宏观化学计量变化。为了验证分析,将通过La测量结果获得的平均化学计量与样品融合后通过液体ICP-OES分析测定的本体组合物进行比较。所获得的值显示出良好的一致性,确认了开发方法的准确性。

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