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首页> 外文期刊>Solid state ionics >Lithium-ion conducting solid electrolytes of Li1.4Al0.4Ge0.2Ti1.4(PO4)(3) and MO)(x) (M = Al, Ti, and Zr) composites
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Lithium-ion conducting solid electrolytes of Li1.4Al0.4Ge0.2Ti1.4(PO4)(3) and MO)(x) (M = Al, Ti, and Zr) composites

机译:Li1.4Al0.4Ge0.2Ti1.4(PO4)(3)和MO)(M = Al,Ti和Zr)复合材料的锂离子导电固体电解质

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Water-stable and high lithium-ion conducting solid electrolytes have potential application as the electrolyte of solid state batteries and the separator of high energy density aqueous lithium batteries. The lithium-ion conductivity of the water-stable NASICON-type solid electrolyte of Li1.4Al0.4Ge0.2Ti1.4(PO4)(3) (LAGTP) was enhanced by addition of TiO2 and Al2O3. The highest conductivity of 1.53 x 10(-3) S cm(-1) at 25 degrees C was observed for LAGTP-3 wt% Al2O3, which is approximately 1.5 times higher than that of LAGTP. The conductivity enhance ment could be explained by a reduction of the grain boundary resistance. The three-point bending strength was also increased by addition of Al2O3, TiO2, and ZrO2. The LAGTP-10 wt% TiO2 composite showed a bending strength of 209 N mm(-2), which was 3 times higher than that of LAGTP, and the conductivity was comparable to that of LAGTP.
机译:水稳定和高锂离子导电固体电解质具有作为固态电池的电解质和高能量密度锂电池的电解质的潜在应用。 通过添加TiO 2和Al 2 O 3增强了Li1.4Al0.4Ge0.2Ti1.4(PO4)(3)(LAGTP)的水稳态NASICON型固体电解质的锂离子电导率。 对于LAGTP-3wt%Al2O3,观察到25℃的最高导电率为1.53×10(-3)厘米(-1),其比LAGTP高约1.5倍。 可以通过降低晶际电阻来解释电导率增强。 通过添加Al 2 O 3,TiO 2和ZrO2也增加了三点弯曲强度。 LAGTP-10wt%TiO 2复合材料显示出209nm mm(-2)的弯曲强度,比LAGTP的弯曲强度高3倍,并且电导率与LAGTP的电导率相当。

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