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Stabilization of Highly Conductive Lithium Argyrodites by Means of Lithium Substitution: The Case of Li6Fe_(0.5)PS6

机译:通过锂取代稳定高导电锂的高度锂:li6fe_(0.5)PS6的情况

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摘要

All-solid-state-batteries(ASSB)are promising candidates for next generation lithium batteries providing high energy density and safety levels.Their success crucially depends on the properties of the available solid electrolyte materials,ideally offering sufficient conductivities in combination with stability against decomposition over a large electrochemical window.Therefore,the search for solid electrolytes with novel compositions remains of high interest.In this work we present a strategy to stabilize highly conductive lithium argyrodites by means of lithium substitution.This is different from the previously described possibilities to obtain stable structures by either substituting phosphorous or sulfide anions in the parent compound Li7PS6.This approach offers access to a new array of solid electrolyte candidates with an argyrodite-type crystal structure.Conductivities of up to 1.4·10~(-4)S/cm can be obtained for Fe-substituted materials of general composition Li_(7-2x)FexPS6.
机译:全稳态 - 巴尔特体(ASSB)是下一代锂电池提供高能量密度和安全水平的有前途的候选者。其成功取决于可用的固体电解质材料的特性 因此,在一个大的电化学窗口中。因此,寻找具有新颖组成物的固体电解质仍然引起了人们的关注。在这项工作中,我们提出了一种通过锂替代品稳定高度导电锂的策略。这与先前描述的可能性不同,以获得 稳定的结构通过在母体化合物Li7ps6中取代磷或硫化物阴离子。这种方法可访问具有argyrodite型晶体结构的新的固体电解质候选物。 可以获得一般组成li_(7-2x)fexps6的Fe取代材料。

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