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Solid Electrolytes for Fluoride Ion Batteries: Ionic Conductivity in Polycrystalline Tysonite-Type Fluorides

机译:氟化物离子电池的固体电解质:多晶钛矿型氟化物的离子电导率

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Batteries based on a fluoride shuttle (fluoride ion battery, FIB) can theoretically provide high energy densities and can thus be considered as an interesting alternative to Li-ion batteries. Large improvements are still needed regarding their actual performance, in particular for the ionic conductivity of the solid electrolyte. At the current state of the art, two types of fluoride families can be considered for electrolyte applications: alkaline-earth fluorides having a fluorite-type structure and rare-earth fluorides having a tysonite-type structure. As regard to the latter, high ionic conductivities have been reported for doped LaF3 single crystals. However, polycrystalline materials would be easier to implement in a FIB due to practical reasons in the cell manufacturing. Hence, we have analyzed in detail the ionic conductivity of La_(1-y)Ba_yF_(3-y) (0 ≤ y ≤0.15) solid solutions prepared by ball milling. The combination of DC and AC conductivity analyses provides a better understanding of the conduction mechanism in tysonite-type fluorides with a blocking effect of the grain boundaries. Heat treatment of the electrolyte material was performed and leads to an improvement of the ionic conductivity. This confirms the detrimental effect of grain boundaries and opens new route for the development of solid electrolytes for FIB with high ionic conductivities.
机译:理论上,基于氟化物梭的电池(氟化物离子电池,FIB)可以提供高能量密度,因此可以认为是锂离子电池的有趣替代品。关于它们的实际性能,特别是对于固体电解质的离子电导率,仍需要大的改进。在当前的现有技术中,可以考虑两种类型的氟化物族用于电解质应用:具有萤石型结构的碱土金属氟化物和具有钛矿型结构的稀土金属氟化物。关于后者,已经报道了掺杂的LaF 3单晶的高离子电导率。但是,由于电池制造中的实际原因,多晶材料将更易于在FIB中实施。因此,我们详细分析了通过球磨制备的La_(1-y)Ba_yF_(3-y)(0≤y≤0.15)固溶体的离子电导率。直流和交流电导率分析的结合可以更好地理解钛矿型氟化物的导电机理,并具有晶界的阻挡作用。进行电解质材料的热处理并导致离子电导率的提高。这证实了晶界的有害作用,并为开发具有高离子电导率的FIB固体电解质开辟了新途径。

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