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The effect of sintering process on lithium ionic conductivity of Li6.4Al0.2La3Zr2O12 garnet produced by solid-state synthesis

机译:烧结工艺对固态合成Li6.4Al0.2La3Zr2O12石榴石锂离子电导率的影响

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Recently, solid-state electrolyte lithium lanthanum zirconium oxide garnet (Li _(7) La _(3) Zr _(2) O _(12) , LLZO) has attracted great attention due to its high room temperature conductivity of lithium ions and stability against lithium metal electrodes. The Al-doped cubic garnet Li _(6.4) Al _(0.2) La _(3) Zr _(2) O _(12) was synthesized by a conventional solid-state method at different sintering temperatures. The influence of the sintering process on the structure and ionic conductivity was investigated by X-ray diffraction, electrochemical impedance spectroscopy, and scanning electron microscopy. The results showed that Li vaporization and relative density were affected by the sintering process. The synergistic effects of Li concentration and relative density determined the Li ~(+) ionic conductivity. Compared with the relative density, the Li concentration plays a more important role in determining the ionic conductivity via the solid-state method.
机译:近年来,固态电解质锂镧锆氧化物石榴石(Li _(7)La _(3)Zr _(2)O _(12),LLZO)因其锂离子和锂的高室温电导率而备受关注。对锂金属电极的稳定性。采用常规固相法在不同的烧结温度下合成了掺Al的立方石榴石Li _(6.4)Al _(0.2)La _(3)Zr _(2)O _(12)。通过X射线衍射,电化学阻抗谱和扫描电子显微镜研究了烧结工艺对结构和离子电导率的影响。结果表明,锂的气化和相对密度受烧结过程的影响。锂浓度和相对密度的协同作用决定了锂离子的电导率。与相对密度相比,Li的浓度在通过固态方法确定离子电导率方面起着更重要的作用。

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