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首页> 外文期刊>Advanced Materials >A High-Performance Carbon ate-Free Lithium|Garnet Interface Enabled by a Trace Amount of Sodium
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A High-Performance Carbon ate-Free Lithium|Garnet Interface Enabled by a Trace Amount of Sodium

机译:一种高性能的碳酸锂|通过痕量的钠,使得石榴石界面

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摘要

Abstract Garnet‐type solid‐state electrolytes (SSEs) are promising for the realization of next‐generation high‐energy‐density Li metal batteries. However, a critical issue associated with the garnet electrolytes is the poor physical contact between the Li anode and the garnet SSE and the resultant high interfacial resistance. Here, it is reported that the Li|garnet interface challenge can be addressed by using Li metal doped with 0.5 wt% Na (denoted as Li*) and melt‐casting the Li* onto the garnet SSE surface. A mechanistic study, using Li6.4La3Zr1.4Ta0.6O12 (LLZTO) as a model SSE, reveals that Li2CO3 resides within the grain boundaries of newly polished LLZTO pellet, which is difficult to remove and hinders the wetting process. The Li* melt can phase‐transfer the Li2CO3 from the LLZTO grain boundary to the Li*’s top surface, and therefore facilitates the wetting process. The obtained Li*|LLZTO demonstrates a low interfacial resistance, high rate capability, and long cycle life, and can find applications in future all‐solid‐state batteries (e.g., Li*|LLZTO|LiFePO4).
机译:摘要石榴石型固态电解质(SSES)是对下一代高能密度Li金属电池的实现。然而,与石榴石电解质相关的关键问题是Li阳极和石榴石SSE之间的物理接触差,并且所得到的高界面抗性。在这里,据报道,通过掺杂0.5wt%Na(表示为Li *)并将Li *熔化到石榴石SSE表面上的Li金属可以解决Li |致致挑战。使用Li6.4La3zR1.4TA0.6O12(LLZTO)作为模型SSE的机械研究,揭示了Li2Co3在新抛光的LLZTO颗粒的晶界内,这难以去除和阻碍润湿过程。 Li *熔体可以将Li 2 CO 3从LLZTO晶界转移到Li *的顶表面,因此有助于润湿过程。所获得的Li * | LLZTO显示出低界面电阻,高速率和长循环寿命,并且可以在未来的全固态电池(例如,Li * | LLZTO14)中找到应用。

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