通过可扩展的露天等离子体处理在 LLZTO 固态电解质上实现 Li2CO3 表面还原

Mohammed Sahal, J. Guo, Candace K. Chan, Nicholas Rolston
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引用次数: 0

摘要

我们报告了使用常压露天等离子体处理技术从石榴石型掺杂钽的锂镧锆氧化物(Li6.4La3Zr1.4Ta0.6O12,LLZTO)固态电解质颗粒表面去除 Li2CO3 物种的情况。我们的研究表明,石榴石表面在暴露于环境湿度和二氧化碳的 3 分钟内形成的 Li2CO3 层会增加 LLZTO 的界面(表面)电阻。等离子体处理完全是在环境中进行的,通过在等离子体喷嘴周围放置一个定制的金属护罩来防止水分和二氧化碳与样品发生反应。等离子处理后,N2 压缩气体流经护罩,以冷却样品并防止大气中的物质与 LLZTO 发生反应。我们证明这种方法能有效去除 LLZTO 表面的 Li2CO3。我们利用 X 射线光电子能谱对表面化学进行了表征,以评估工艺参数(等离子体暴露时间和护罩气体化学成分)对去除表面物质的影响。我们还表明,露天等离子处理可显著降低界面电阻。该平台展示了一条通往露天处理固态电池的道路。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Surface Reduction of Li2CO3 on LLZTO Solid-State Electrolyte via Scalable Open-Air Plasma Treatment
We report on the use of an atmospheric pressure, open-air plasma treatment to remove Li2CO3 species from the surface of garnet-type tantalum-doped lithium lanthanum zirconium oxide (Li6.4La3Zr1.4Ta0.6O12, LLZTO) solid-state electrolyte pellets. The Li2CO3 layer, which we show forms on the surface of garnets within 3 min of exposure to ambient moisture and CO2, increases the interface (surface) resistance of LLZTO. The plasma treatment is carried out entirely in ambient and is enabled by use of a custom-built metal shroud that is placed around the plasma nozzle to prevent moisture and CO2 from reacting with the sample. After the plasma treatment, N2 compressed gas is flowed through the shroud to cool the sample and prevent atmospheric species from reacting with the LLZTO. We demonstrate that this approach is effective for removing the Li2CO3 from the surface of LLZTO. The surface chemistry is characterized with X-ray photoelectron spectroscopy to evaluate the effect of process parameters (plasma exposure time and shroud gas chemistry) on removal of the surface species. We also show that the open-air plasma treatment can significantly reduce the interface resistance. This platform demonstrates a path towards open-air processed solid-state batteries.
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