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Design of a Multifunctional Interlayer for NASCION-Based Solid-State Li Metal Batteries

机译:基于纳瓦利纳瓦固态Li金属电池的多功能中间层设计

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摘要

NASCION-type Li conductors have great potential to bring high capacity solid-state batteries to realization, related to its properties such as high ionic conductivity, stability under ambient conditions, wide electrochemical stability window, and inexpensive production. However, their chemical and thermal instability toward metallic lithium (Li) has severely hindered attempts to utilize Li as anode material in NASCION-based battery systems. In this work, it is shown how a tailored multifunctional interlayer between the solid electrolyte and Li anode can successfully address the interfacial issues. This interlayer is designed by creating a quasi-solid-state paste in which the functionalities of LAGP (Li1.5Al0.5Ge1.5(PO4)(3)) nanoparticles and an ionic liquid (IL) electrolyte are combined. In a solid-sate cell, the LAGP-IL interlayer separates the Li metal from bulk LAGP and creates a chemically stable interface with low resistance (approximate to 5 omega cm(2)) and efficiently prevents thermal runaway at elevated temperatures (300 degrees C). Solid-state cells designed with the interlayer can be operated at high current densities, 1 mA cm(-2), and enable high rate capability with high safety. Here developed strategy provides a generic path to design interlayers for solid-state Li metal batteries.
机译:纳瓦利型锂导体具有巨大的潜力,可以实现高容量的固态电池实现,与其高离子电导率,环境条件下的稳定性,宽电化学稳定性窗口和廉价的生产等性能。然而,它们对金属锂(Li)的化学和热不稳定性具有严重阻碍了利用Li作为阳极材料在纳瓦硫化电池系统中的阳极材料的尝试。在这项工作中,示出了固体电解质和锂阳极之间定制的多功能层间在界面问题中的定制多功能层间。该中间层是通过产生准固态浆料来设计的,其中LAGP(Li1.5Al0.5Ge1.5(PO4)(3))纳米颗粒和离子液体(IL)电解质组合。在固体静脉中,LAGP-IL中间层与体LAGP分离Li金属,并产生具有低电阻的化学稳定的界面(近似为5ωcm(2)),有效地防止在升高的温度下的热失控(300摄氏度)。设计与中间层设计的固态电池可以在高电流密度,1mA cm(-2)处操作,并具有高安全性的高速率能力。此处开发的策略提供了设计用于固态Li金属电池的中间层的通用路径。

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