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Électrolytes solides fluorés pour batteries tout solide à ions F-

机译:适用于所有固态F离子电池的氟化固态电解质

摘要

This work deals with the synthesis, shaping and characterization of RE1-xMxF3-x (RE = La, Sm, Ce et M = Ba, Ca, Sr) tysonite-type solid solutions. In a first part, onemeticulous approach has been set up for La1-xBaxF3-x solid solution, chosen as a reference.The solid-state synthesis of these materials led to a better knowledge of their chemicalcomposition (Vegard’s laws) and of the structure-ionic mobility correlations. The impact ofthe sintering process on the ionic conductivity is also highlighted. In a second part, the effectsof the nanostructuration conducted by ball-milling of the microcrystalline samples areevaluated. The use of the Design of Experiments methodology led to identify the optimummilling conditions. It appears that the synthesis of electrolytes can be sped- and scaled-up,while keeping high ionic conductivity properties. At last, this approach is applied on othertysonite-type solid solutions, to look for the best electrolyte. The Ce/Sr and Sm/Casubstitutions generate very promising ionic conductors but not really (electro)chemicallystable compounds. A compromise has been found with the choice of the La1-xSrxF3-x solidsolution as the FIB electrolyte for the electrochemical performances tests, regarding its higherchemical stability.
机译:这项工作涉及RE1-xMxF3-x(RE = La,Sm,Ce等M = Ba,Ca,Sr)钛铁矿型固溶体的合成,定型和表征。在第一部分中,已经为La1-xBaxF3-x固溶体建立了一种精细的方法,以作为参考。这些材料的固态合成使人们对它们的化学组成(维格定律)和结构有了更深入的了解。离子迁移率相关性。还强调了烧结过程对离子电导率的影响。在第二部分中,评估了通过球磨微晶样品进行的纳米结构化的效果。实验设计方法的使用导致确定最佳研磨条件。似乎可以加快和扩大电解质的合成,同时保持高的离子传导性。最后,将这种方法应用于其他锂钛矿型固溶体,以寻找最佳的电解质。 Ce / Sr和Sm / Ca取代产生非常有希望的离子导体,但不能产生真正的(电)化学稳定的化合物。在选择La1-xSrxF3-x固溶体作为FIB电解质进行电化学性能测试时,发现了折衷方案,因为它具有更高的化学稳定性。

著录项

  • 作者

    Chable Johann;

  • 作者单位
  • 年度 2015
  • 总页数
  • 原文格式 PDF
  • 正文语种 fr
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