Herein, we report the successful electrochemical fluorination and defluorination of schafarzikite‐type compounds with the composition Fe0.5M0.5Sb2O4 (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...
International audienceFluorine Graphite Intercalation Compounds are one of the most common cathode u...
Multivalent conversion-based transition metal (TM) compounds have significantly higher specific capa...
International audienceDifferent graphite oxyfluorides were synthesized via Hummer's oxidation of sub...
Recently reversible batteries based on fluoride ions as a charge carriers have attracted some attent...
Within this work, it was demonstrated that topochemical modifications of the anion sublattices of Ru...
This article reports on the investigation of LaSrMnO4 with K2NiF4 type structure for use as an inter...
Here we report on the first electrochemical fluorination exemplarily performed on perovskite type Ba...
To achieve the desirable dual characteristics of high-capacity performance and low-cost production f...
International audienceElectrochemical performances of fluorinated carbons and nanocarbons as electro...
We report on the reversible, electrochemical (de)fluorination of CsMnFeF6 at room temperature using ...
An energy storage paradigm orthogonal to Li-ion battery chemistries can be conceptualized by employi...
We have demonstrated a route to reversibly intercalate fluoride-anion receptor complexes in graphite...
Fluoride shuttle batteries (FSBs), which utilize F– ion migration in electrochemical reactions, have...
International audienceFluorine Graphite Intercalation Compounds are one of the most common cathode u...
Multivalent conversion-based transition metal (TM) compounds have significantly higher specific capa...
International audienceDifferent graphite oxyfluorides were synthesized via Hummer's oxidation of sub...
Recently reversible batteries based on fluoride ions as a charge carriers have attracted some attent...
Within this work, it was demonstrated that topochemical modifications of the anion sublattices of Ru...
This article reports on the investigation of LaSrMnO4 with K2NiF4 type structure for use as an inter...
Here we report on the first electrochemical fluorination exemplarily performed on perovskite type Ba...
To achieve the desirable dual characteristics of high-capacity performance and low-cost production f...
International audienceElectrochemical performances of fluorinated carbons and nanocarbons as electro...
We report on the reversible, electrochemical (de)fluorination of CsMnFeF6 at room temperature using ...
An energy storage paradigm orthogonal to Li-ion battery chemistries can be conceptualized by employi...
We have demonstrated a route to reversibly intercalate fluoride-anion receptor complexes in graphite...
Fluoride shuttle batteries (FSBs), which utilize F– ion migration in electrochemical reactions, have...
International audienceFluorine Graphite Intercalation Compounds are one of the most common cathode u...
Multivalent conversion-based transition metal (TM) compounds have significantly higher specific capa...
International audienceDifferent graphite oxyfluorides were synthesized via Hummer's oxidation of sub...