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Garnet Electrolyte with an Ultralow Interfacial Resistance for Li-Metal Batteries

机译:锂离子电池具有超低界面电阻的石榴石电解质

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Garnet-structured Li7La3Zr2O12 is a promising solid Li-ion electrolyte for all-solid-state Li-metal batteries and Li-redox-flow batteries owing to its high Li-ion conductivity at room temperature and good electrochemical stability with Li metal. However, there are still three major challenges unsolved: (1) the controversial electrochemical window of garnet, (2) the impractically large resistance at a garnet/electrode interface and the fast lithium-dendrite growth along the grain boundaries of the garnet pellet, and (3) the fast degradation during storage. We have found that these challenges are closely related to a thick Li2CO3 layer and the Li-Al-O glass phase on the surface of garnet materials. Here we introduce a simple method to remove Li2CO3 and the protons in the garnet framework by reacting garnet with carbon at 700 degrees C; moreover, the amount of the Li-Al-O glass phase with a low Li-ion conductivity in the grain boundary on the garnet surface was also reduced. The surface of the carbon-treated garnet pellets is free of Li2CO3 and is wet by a metallic lithium anode, an organic electrolyte, and a solid composite cathode. The carbon posttreatment has reduced significantly the interfacial resistances to 28, 92 (at 65 degrees C), and 45 Omega cm(2) at Li/garnet, gamet/LiFePO4, and garnet/organic-liquid interfaces, respectively. A symmetric Li/garnet/Li, an all-solid-state Li/garnet/LiFePO4, and a hybrid Li-S cell show small overpotentials, high Coulombic efficiencies, and stable cycling performance.
机译:石榴石结构的Li7La3Zr2O12是一种有前途的固体锂离子电解质,适用于全固态锂金属电池和锂氧化还原液流电池,这归因于其在室温下的高锂离子电导率以及对锂金属的良好电化学稳定性。然而,仍然有三个主要难题尚未解决:(1)具争议性的石榴石电化学窗口;(2)石榴石/电极界面上的不切实际的大电阻;以及沿石榴石颗粒晶界快速生长的锂-树突;以及(3)在储存过程中快速降解。我们已经发现,这些挑战与石榴石材料表面上厚厚的Li2CO3层和Li-Al-O玻璃相密切相关。在这里,我们介绍一种简单的方法,使石榴石与碳在700℃下反应,从而除去石榴石骨架中的Li2CO3和质子。此外,在石榴石表面的晶界中具有低Li离子传导性的Li-Al-O玻璃相的量也减少了。碳处理的石榴石颗粒的表面不含Li2CO3,并被金属锂阳极,有机电解质和固体复合阴极润湿。碳后处理在Li /石榴石,配子/ LiFePO4和石榴石/有机-液体界面处的界面电阻分别显着降低至28、92(在65摄氏度)和45Ωcm(2)。对称的Li /石榴石/ Li,全固态Li /石榴石/ LiFePO4和混合型Li-S电池显示出较小的过电位,高库仑效率和稳定的循环性能。

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