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Li7La3Zr2O12 solid electrolyte sintered by the ultrafast high-temperature method

机译:Li7la3zR2O12通过超快高温方法烧结固体电解质

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摘要

All-solid-state Li batteries (ASSLBs) are regarded as the systems of choice for future electrochemical energy storage. Particularly, the garnet Li7La3Zr2O12 (LLZO) is one of the most promising solid electrolytes due to its stability against Li metal. However, its integration into ASSLBs is challenging due to high temperature and long dwell time required for sintering. Advanced sintering techniques, such as Ultrafast High-temperature Sintering, have shown to significantly increase the sintering rate. Direct contact to graphite heaters allows sintering of LLZO within 10 s due to extremely high heating rates (up to 10(4) K min(-1)) and temperatures up to 1500 degrees C to a density around 80 %. The LLZO sintered in vacuum and Ar atmosphere has good mechanical stability and high phase purity, but kinetic de-mixing at the grain boundaries was observed. Nevertheless, the Li-ion conductivity of 1 mS cm(-1) at 80 degrees C was comparable to conventional sintering, but lower than for Field-Assisted Sintering Technique/Spark Plasma Sintering.
机译:全固态锂电池(ASSLB)被认为是未来电化学储能的首选系统。尤其是石榴石Li7La3Zr2O12(LLZO)由于其对锂金属的稳定性而成为最有前途的固体电解质之一。然而,由于烧结所需的高温和长停留时间,其与ASSLB的集成具有挑战性。先进的烧结技术,如超快高温烧结,已证明能显著提高烧结速率。由于极高的加热速率(高达10(4)K min(-1))和高达1500°C的温度,密度约为80%,直接接触石墨加热器可使LLZO在10秒内烧结。在真空和氩气气氛下烧结的LLZO具有良好的机械稳定性和较高的相纯度,但在晶界处观察到了动力学脱混。然而,在80℃下1 mS cm(-1)的锂离子电导率与传统烧结相当,但低于场辅助烧结技术/火花等离子体烧结。

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