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Dry coating of active material particles with sulfide solid electrolytes for an all-solid-state lithium battery

机译:全固态锂电池用硫化物固体电解质干法涂覆活性物质颗粒

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摘要

In this study, we present a dry coating process to produce a core-shell composite particle for an all-solid-state lithium battery, where a single particle of the active material is coated with solid electrolytes. LiNi1/3 Co1/3Mn1/3O2 (NCM) and Li3PS4 (LPS), which are typical cathode active material and sulfide solid electrolyte, were used. A dry impact-blending device was employed for the dry coating process. We demonstrated that a single particle of NCM was uniformly coated with a continuous layer of LPS by the dry coating process without any breakage or attrition of NCM, to produce an NCM@LPS core-shell particle. The charge-discharge cycling tests showed that the rate and cycle performances of an all-solid-state half-cell prepared with the NCM@LPS core-shell particles significantly improved. The three-dimensional internal structure of the composite cathode was subsequently analyzed using FIB-SEM with an image reconstruction technique. The results revealed that the composite cathode prepared with the NCM@LPS core-shell particles had a (i) high interfacial contact area between NCM and LPS and (ii) well-percolated ion transport pathway. In conclusion, the core-shell composite particle contributed to the structure of the composite cathode, thus resulting in improved cell performance.
机译:在这项研究中,我们提出了一种干涂工艺,以生产用于全固态锂电池的核-壳复合颗粒,其中单个颗粒的活性材料被固体电解质覆盖。使用典型的正极活性材料和硫化物固体电解质LiNi1 / 3 Co1 / 3Mn1 / 3O2(NCM)和Li3PS4(LPS)。干式冲击混合设备用于干式涂布过程。我们证明,通过干涂工艺,NCM的单个颗粒均匀地被连续的LPS涂层所覆盖,而没有NCM的任何破损或磨损,从而产生了NCM @ LPS核-壳颗粒。充放电循环测试表明,使用NCM @ LPS核-壳粒子制备的全固态半电池的速率和循环性能显着提高。随后使用FIB-SEM和图像重建技术分析复合阴极的三维内部结构。结果表明,用NCM @ LPS核-壳粒子制备的复合阴极具有(i)NCM与LPS之间的高界面接触面积,以及(ii)渗透良好的离子传输途径。总之,核-壳复合颗粒有助于复合阴极的结构,从而改善电池性能。

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