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Realization of room temperature lithium metal battery with high Li+ conductive lithium garnet solid electrolyte

机译:高Li +导电锂石榴石固体电解液实现室温锂金属电池的实现

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摘要

Garnet structured solid electrolytes are suitable candidates for lithium metal batteries due to their high lithium ion conductivity and good electrochemical stability. However, large electrode-electrolyte interface resistance still remains a major challenge. Here, we demonstrate realization of room temperature quasi-solid-state battery with high lithium ion conducting Li6.5La3Zr1.75Te0.25O12 (Te-LLZ) as solid electrolyte. To overcome the high interface resistance, we have used gold (Au) interlayer between lithium metal and Te-LLZ. By introducing Au buffer layer, we observed a significant reduction in the interface resistance from 1868 Omega cm(2) to 30 Omega cm(2) with stable lithium stripping/platting profile, suggesting a homogeneous lithium ion transport at the lithium/Te-LLZ interface. A quasi-solid-state battery with lithium metal as anode, lithium cobalt oxide (LiCoO2) as cathode and surface engineered Te-LLZ electrolyte with polypropylene (PP) interlayer on the cathode side was demonstrate. The fabricated quasi-solid-state battery delivered an initial discharge capacity of 137 mA h g(-1) (50 mu A cm(-2)) and 132 mA h (150 mu A cm(-2)) at room temperature (25 degrees C) and 60 degrees C, respectively.
机译:由于其高锂离子传导性和良好的电化学稳定性,石榴石结构固体电解质是锂金属电池的合适候选物。然而,大电极 - 电解质界面电阻仍然是一个主要挑战。在这里,我们证明了具有高锂离子的室温准固态电池Li6.5LA3ZR1.75Te0.25012(TE-LLZ)作为固体电解质的实现。为了克服高界面电阻,我们在锂金属和TE-LLZ之间使用了金(AU)中间层。通过引入Au缓冲层,我们观察到具有稳定的锂剥离/平台曲线的1868cm(2)至30ωcm(2)的界面电阻的显着降低,表明在锂/ te-llz上均匀锂离子输送界面。作为阳极,锂钴锂(LiCoO2)作为阴极和表面工程的TE-LLZ电解液,在阴极侧的阴极和表面设计的TE-LLZ电解质的准固态电池被证明。制造的准固态电池在室温下提供137mA Hg(-1)(50μm(-2))和132mA H(150μm(-2))的初始放电容量(25分别为C)和60℃。

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