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Recent Progress in Lithium Lanthanum Titanate Electrolyte towards All Solid-State Lithium Ion Secondary Battery

机译:钛酸锂电解质近型固态锂离子二次电池的近期进展

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摘要

Lithium lanthanum titanate (LLTO) is one of the most promising solid electrolytes for next generation batteries owing to its high ionic conductivity of similar to 1 x 10 - 3 S/cm at room temperature. To comprehensively understand the microstructure and ion diffusion mechanism of LLTO, recent research in diffraction and spectroscopy techniques as well as computational study have been reviewed in this paper. The extremely low ionic conductivity at grain boundary as well as the increased electronic conductivity related to the direct contact with metallic lithium has impeded the practical application of LLTO for the solid-state batteries. Various studies including substitution, the introduction of grain boundary layer modifier, high temperature sintering, and synthesis of amorphous LLTO have been applied to solve these major challenges and their effectiveness are discussed in this review. Moreover, different types of synthesis methodologies of LLTO thin films are reviewed and compared in detail. In the end, the recent reports of solid-state battery system are reviewed and discussed.
机译:钛酸锂(LLTO)是下一代电池的最有希望的固体电解质之一,其在室温下的高离子电导率至1×10-3 S / cm。全面了解LLTO的微观结构和离子扩散机制,本文综述了最近衍射和光谱技术的研究以及计算研究。晶界的极低离子电导率以及与与金属锂直接接触相关的电子电导率的增加已经阻碍了LLTO对固态电池的实际应用。各种研究包括替代,晶界层改性剂,高温烧结和合成无定形LLTO的引入,以解决这些主要挑战,并在本综述中讨论了它们的有效性。此外,详细介绍了并比较了LLTO薄膜的不同类型的合成方法。最终,综述并讨论了最近关于固态电池系统的报告。

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