International audienceAn amorphous iron hydroxysulfate Na3Fe3(SO4)2(OH)6 has been prepared for the first time from sodium insertion into the crystalline phase NaFe3(SO4)2(OH)6. We show that this transformation is completely reversible, leading back to the well crystallized hexagonal phase on oxidation. This material could then be proposed as positive electrode material for Na ion batteries with a reversible capacity of 120 mAh/g at 2.72 V vs Na+/Na
Acknowledgements: F.D. acknowledges the support from the National Natural Science Foundation of Chin...
The benchmarking of Fe3+/Fe2+ redox potential at 3.8 V (versus Na) in alluaudite-type Na2Fe2(SO4)(3)...
The behavior of a NaFePO4 cathode, obtained by electrochemical Li-Na exchange of LiFePO4 olivine, is...
International audienceAn amorphous iron hydroxysulfate Na3Fe3(SO4)2(OH)6 has been prepared for the f...
Solid-state sulfate chemistry continues to yield promising high-voltage polyanionic cathode material...
peer reviewedThanks to the inductive effect of the sulfate groups, sodium iron sulfate alluaudites d...
AbstractO3-type NaFeO2 is a promising candidate as positive electrode materials for rechargeable Na ...
Renewable energy sources, such as solar and wind sources, require solutions to store the energy prod...
Exploring future cathode materials for sodium-ion batteries, alluaudite class of Na2Fe2II(SO4)(3) ha...
We report a new triplite-type iron fluoro-sulfate compound, a cation-disordered NaFeSO4F that has re...
The orthorhombic NaFeF₃, which is envisioned to be an auspicious positive electrode for Na-ion batte...
In the search of cathode materials for Na-ion batteries, iron-based compounds have attracted much at...
Sodium (Na)-ion batteries are the most explored 'beyond-Li' battery systems, yet their energy densit...
To achieve the desirable dual characteristics of high-capacity performance and low-cost production f...
peer reviewedSodium-based orthosilicates are considered promising candidates as positive electrode m...
Acknowledgements: F.D. acknowledges the support from the National Natural Science Foundation of Chin...
The benchmarking of Fe3+/Fe2+ redox potential at 3.8 V (versus Na) in alluaudite-type Na2Fe2(SO4)(3)...
The behavior of a NaFePO4 cathode, obtained by electrochemical Li-Na exchange of LiFePO4 olivine, is...
International audienceAn amorphous iron hydroxysulfate Na3Fe3(SO4)2(OH)6 has been prepared for the f...
Solid-state sulfate chemistry continues to yield promising high-voltage polyanionic cathode material...
peer reviewedThanks to the inductive effect of the sulfate groups, sodium iron sulfate alluaudites d...
AbstractO3-type NaFeO2 is a promising candidate as positive electrode materials for rechargeable Na ...
Renewable energy sources, such as solar and wind sources, require solutions to store the energy prod...
Exploring future cathode materials for sodium-ion batteries, alluaudite class of Na2Fe2II(SO4)(3) ha...
We report a new triplite-type iron fluoro-sulfate compound, a cation-disordered NaFeSO4F that has re...
The orthorhombic NaFeF₃, which is envisioned to be an auspicious positive electrode for Na-ion batte...
In the search of cathode materials for Na-ion batteries, iron-based compounds have attracted much at...
Sodium (Na)-ion batteries are the most explored 'beyond-Li' battery systems, yet their energy densit...
To achieve the desirable dual characteristics of high-capacity performance and low-cost production f...
peer reviewedSodium-based orthosilicates are considered promising candidates as positive electrode m...
Acknowledgements: F.D. acknowledges the support from the National Natural Science Foundation of Chin...
The benchmarking of Fe3+/Fe2+ redox potential at 3.8 V (versus Na) in alluaudite-type Na2Fe2(SO4)(3)...
The behavior of a NaFePO4 cathode, obtained by electrochemical Li-Na exchange of LiFePO4 olivine, is...