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Conductivity, microstructure and mechanical properties of tape-cast LATP with LiF and SiO2 additives

机译:含LiF和SiO2添加剂的流延LATP的电导率、微观结构和力学性能

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摘要

LATP sheets with LiF and SiO2 addition prepared by tape cast as electrolytes for solid-state batteries were characterized regarding conductivity, microstructure and mechanical properties aiming toward an optimized composition. The use of additives permitted a reduction of the sintering temperature. Rietveld analyses of the samples with additives revealed a phase mixture of NaSICON modifications crystallizing with rhombohedral and orthorhombic symmetry as a superstructure with space group Pbca. It seems that LiF acts as a sintering additive but also as a mineralizer for the superstructure of LATP. As general trend, higher LiF to SiO2 ratios led to lower porosities and higher values of elastic modulus and hardness determined by indentation testing, but the presence of the orthorhombic LATP leads to a decrease in the ionic conductivity. Micro-pillar testing was used to assess the crack growth behavior revealing weak grain boundaries.
机译:以流延带法制备的添加LiF和SiO2的LATP片材作为固态电池电解质,对电导率、微观结构和力学性能进行了表征,以优化其组成。添加剂的使用可以降低烧结温度。Rietveld对含有添加剂的样品的分析揭示了NaSICON修饰的相混合物,具有菱面体和斜方对称性,作为具有空间群Pbca的上部结构。LiF似乎既可以作为烧结添加剂,也可以作为LATP上层建筑的矿化剂。作为一般趋势,较高的LiF与SiO2比率导致较低的孔隙率和较高的弹性模量和硬度值,通过压痕测试确定,但斜方晶系LATP的存在导致离子电导率降低。采用微柱试验评估裂纹扩展行为,揭示出薄弱晶界。

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