peer reviewedThanks to the inductive effect of the sulfate groups, sodium iron sulfate alluaudites display the highest electrode potential amongst the Fe-based compounds studied in sodium-ion batteries. Here, we report the synthetic strategy that has allowed us to obtain the elusive Na2Fe2(SO4)3 stoichiometric compound through a reverse-strike coprecipitation method in organic medium. We experimentally confirm the hypothesis that the stoichiometric compound transforms upon further heat treatment into the previously reported sodium-rich solid solution and an iron sulfate secondary phase. X-ray diffraction and 57Fe Mössbauer spectroscopy do not reveal any striking structure difference between the stoichiometric and Na-rich compounds, in agree...
A new desodiated derivative compound, Na0.89Fe1.8(SO4)(3), was prepared by the chemical oxidation of...
Sodium-ion batteries have been extensively pursued as economic alternatives to lithium-ion batteries...
Room-temperature-operable all-solid-state Na-ion batteries (ASNBs) using sulfide Na-ion solid electr...
peer reviewedThanks to the inductive effect of the sulfate groups, sodium iron sulfate alluaudites d...
Renewable energy sources, such as solar and wind sources, require solutions to store the energy prod...
Solid-state sulfate chemistry continues to yield promising high-voltage polyanionic cathode material...
The benchmarking of Fe3+/Fe2+ redox potential at 3.8 V (versus Na) in alluaudite-type Na2Fe2(SO4)(3)...
Exploring future cathode materials for sodium-ion batteries, alluaudite class of Na2Fe2II(SO4)(3) ha...
Electrochemical energy storage has recently seen tremendous emphasis being placed on the large-scale...
International audienceAn amorphous iron hydroxysulfate Na3Fe3(SO4)2(OH)6 has been prepared for the f...
Rechargeable lithium batteries have ushered the wireless revolution over last two decades and are no...
International audienceDeveloping the next generations of Li- and Na-ion batteries relies on designin...
A new desodiated derivative compound, Na0.89Fe1.8(SO4)(3), was prepared by the chemical oxidation of...
Sodium-ion batteries have been extensively pursued as economic alternatives to lithium-ion batteries...
Room-temperature-operable all-solid-state Na-ion batteries (ASNBs) using sulfide Na-ion solid electr...
peer reviewedThanks to the inductive effect of the sulfate groups, sodium iron sulfate alluaudites d...
Renewable energy sources, such as solar and wind sources, require solutions to store the energy prod...
Solid-state sulfate chemistry continues to yield promising high-voltage polyanionic cathode material...
The benchmarking of Fe3+/Fe2+ redox potential at 3.8 V (versus Na) in alluaudite-type Na2Fe2(SO4)(3)...
Exploring future cathode materials for sodium-ion batteries, alluaudite class of Na2Fe2II(SO4)(3) ha...
Electrochemical energy storage has recently seen tremendous emphasis being placed on the large-scale...
International audienceAn amorphous iron hydroxysulfate Na3Fe3(SO4)2(OH)6 has been prepared for the f...
Rechargeable lithium batteries have ushered the wireless revolution over last two decades and are no...
International audienceDeveloping the next generations of Li- and Na-ion batteries relies on designin...
A new desodiated derivative compound, Na0.89Fe1.8(SO4)(3), was prepared by the chemical oxidation of...
Sodium-ion batteries have been extensively pursued as economic alternatives to lithium-ion batteries...
Room-temperature-operable all-solid-state Na-ion batteries (ASNBs) using sulfide Na-ion solid electr...