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Reversible Electrochemical Intercalation and Deintercalation of Fluoride Ions into Host Lattices with Schafarzikite‐Type Structure

机译:氟离子可逆电化学嵌入和解嵌到具有Schafarzikite型结构的主体晶格中

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摘要

Herein, we report the successful electrochemical fluorination and defluorination of schafarzikite‐type compounds with the composition Fe0.5 m 0.5Sb2O4 (M=Mg or Co). We show that electrochemical methods can present a more controllable and less environmentally damaging route for fluorinating compounds in contrast to traditional methods that involve heating samples in F2‐rich atmospheres. The reactivity of the host lattices with fluoride during electrochemical fluorination makes this material an interesting candidate for fluoride‐ion battery applications. However, deleterious side reactions with the conductive carbon matrix during fluorination suggests to the contrary. Regardless of the side reactions, the schafarzikite structure was found to be an alternative reversible host lattice for fluoride incorporation and removal in addition to the previously reported Ruddlesden–Popper‐type compounds.
机译:在此,我们报告了组成为Fe0.5 m 0.5Sb2O4(M = Mg或Co)的菱沸石型化合物的成功的电化学氟化和脱氟。我们证明,与传统方法相比,电化学方法可以为氟化化合物提供更可控且对环境造成损害的途径,而传统方法需要在富含F2的气氛中加热样品。在电化学氟化过程中,主晶格与氟化物的反应性使该材料成为氟离子电池应用中有趣的候选材料。然而,相反在氟化过程中与导电碳基质的有害副反应相反。不论副反应如何,除了先前报道的Ruddlesden–Popper型化合物之外,Schafarzikite结构还被发现是氟化物掺入和去除的另一种可逆主体晶格。

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