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Influence of cold sintering process on the structure and properties of garnet-type solid electrolytes

机译:冷烧结过程对石榴石型固体电解质结构与性能的影响

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摘要

Li-stuffed garnet oxides are one of the most promising solid electrolytes for Li batteries, but their development is impeded by the overly high sintering temperature (above 1000 degrees C), which causes uncontrollable Li evaporation and poor repeatability of synthesis. The present study evaluates the possibility of addressing this issue using a recently developed technique called cold sintering process (CSP). We demonstrates that CSP can easily realize a high density of 87.7% at an extremely low temperature of 350 degrees C. However, the material becomes air sensitive after CSP, and the conductivity is degraded. Detailed structural and chemical analyses reveal that such detrimental effects arise from the inter-granular phase induced by the preferential dissolution of Al and Li. Therefore, in order to take full advantage of CSP during solid-electrolyte fabrication, the incongruent dissolution issue must be the focal point of improvement. Our results suggest that CSP is a promising solution to the overly high sintering temperature of garnet electrolytes, and deserves more attention in future studies.
机译:锂填充的石榴石氧化物是Li电池最有希望的固体电解质之一,但它们的发育受到过高的烧结温度(高于1000℃)的影响,这导致无法控制的Li蒸发和合成的可重复性差。本研究评估了使用最近开发的技术来解决此问题的可能性(CSP)。我们证明,CSP可以在极低的温度为350℃的温度下容易地实现87.7%的高密度。然而,在CSP之后,材料变得空气敏感,并且导电性降低。详细的结构和化学分析表明,来自Al和Li的优先溶解诱导的颗粒状相产生的这种不利影响。因此,为了在固体电解质制造过程中充分利用CSP,不一致的溶解问题必须是改善的焦点。我们的研究结果表明,CSP是对石榴石电解质过度烧结温度的有希望的解决方案,并在未来的研究中值得关注。

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