放电等离子烧结技术及其在全固态电池中的应用

Seokhee Lee
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引用次数: 1

摘要

全固态电池因其高安全性和高能量功率密度而受到越来越多的关注。然而,固体电解质与电极活性材料之间的固-固界面较差,导致界面电阻高,降低了离子和电子的传递速率,限制了电池的性能。近年来,火花等离子烧结作为一种极具发展前景的固体电解质和复合电极的制备技术。本文重点介绍了火花等离子烧结制备全固态电池固体电解质和复合电极的研究进展。最后,描述了全固态电池SPS技术的未来机遇和挑战。
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Spark Plasma Sintering Technique and Application for All-Solid-State Batteries
s All-solid-state batteries have received increasing attention because of their high safety aspect and high energy and power densities. However, the inferior solid-solid interfaces between solid electrolyte and active materials in electrode, which cause high interfacial resistance, reduce ion and electron transfer rate and limit battery performance. Recently, spark plasma sintering is emerging as a promising technique for fabricating solid electrolytes and composite-electrodes. Herein, this paper focuses on the overview of spark plasma sintering to fabricate solid electrolytes and composite-electrodes for all-solid-state batteries. In the end, future opportunities and challenges associated with SPS technique for all-solid-state batteries are described.
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