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首页> 外文期刊>Angewandte Chemie >Lithium-Metal Anode Instability of the Superionic Halide Solid Electrolytes and the Implications for Solid-State Batteries
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Lithium-Metal Anode Instability of the Superionic Halide Solid Electrolytes and the Implications for Solid-State Batteries

机译:锂 - 金属阳极不稳定性的超级卤化物固体电解质和固态电池的影响

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摘要

Owing to high ionic conductivity and good oxidation stability, halide-based solid electrolytes regain interest for application in solid-state batteries. While stability at the cathode interface seems to be given, the stability against the lithium metal anode has not been explored yet. Herein, the formation of a reaction layer between Li3InCl6 (Li3YCl6) and lithium is studied by sputter deposition of lithium metal and subsequent in situ X-ray photoelectron spectroscopy as well as by impedance spectroscopy. The interface is thermodynamically unstable and results in a continuously growing interphase resistance. Additionally, the interface between Li3InCl6 and Li6PS5Cl is characterized by impedance spectroscopy to discern whether a combined use as cathode electrolyte and separator electrolyte, respectively, might enable long-term stable and low impedance operation. In fact, oxidation stable halide-based lithium superionic conductors cannot be used against Li, but may be promising candidates as cathode electrolytes.
机译:由于高离子导电性和良好的氧化稳定性,卤化物基固体电解质在固态电池中的应用重新受到关注。虽然在阴极界面的稳定性似乎是给定的,但对锂金属阳极的稳定性尚未探索。在本文中,通过锂金属的溅射沉积和随后的原位X射线光电子能谱以及阻抗谱研究了Li3InCl6(Li3YL6)和锂之间反应层的形成。界面热力学不稳定,导致界面电阻不断增大。此外,Li3InCl6和Li6PS5Cl之间的界面通过阻抗谱进行表征,以区分分别作为阴极电解液和分离电解液的组合使用是否能够实现长期稳定和低阻抗运行。事实上,氧化稳定的卤化物基锂超离子导体不能用来对抗锂,但可能是有前途的阴极电解质候选者。

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