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Room-temperature cycling of metal fluoride electrodes: Liquid electrolytes for high-energy fluoride ion cells.

Victoria K DavisChristopher M BatesKaoru OmichiBrett M SavoieNebojša MomčilovićQingmin XuWilliam J WolfMichael A WebbKeith J BillingsNam Hawn ChouSelim AlayogluRyan K McKenneyIsabelle M DarollesNanditha G NairAdrian HightowerDaniel J RosenbergMusahid AhmedChristopher J BrooksThomas F Miller IiiRobert H GrubbsSimon C Jones
Published in: Science (New York, N.Y.) (2019)
Fluoride ion batteries are potential "next-generation" electrochemical storage devices that offer high energy density. At present, such batteries are limited to operation at high temperatures because suitable fluoride ion-conducting electrolytes are known only in the solid state. We report a liquid fluoride ion-conducting electrolyte with high ionic conductivity, wide operating voltage, and robust chemical stability based on dry tetraalkylammonium fluoride salts in ether solvents. Pairing this liquid electrolyte with a copper-lanthanum trifluoride (Cu@LaF3) core-shell cathode, we demonstrate reversible fluorination and defluorination reactions in a fluoride ion electrochemical cell cycled at room temperature. Fluoride ion-mediated electrochemistry offers a pathway toward developing capacities beyond that of lithium ion technology.
Keyphrases
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