Sodium-ion batteries have been extensively pursued as economic alternatives to lithium-ion batteries. Investigating the polyanion chemistry, alluaudite structured Na2Fe2II(SO4)(3) has been recently discovered as a 3.8 V positive electrode material (Barpanda et al., Nature Commun., 5: 4358, 2014). Registering the highest ever Fe-III/Fe-II redox potential (vs. Na/Na+) and formidable energy density, it has opened up a new polyanion family for sodium batteries. Exploring the alluaudite family, here we report isotypical Na2+2xMn2-xII(SO4)(3) (x = 0.22) as a novel high-voltage cathode material for the first time. Following low-temperature (ca. 350 degrees C) solid-state synthesis, the structure of this new alluaudite compound has been solved adop...
We report a new triplite-type iron fluoro-sulfate compound, a cation-disordered NaFeSO4F that has re...
We have reinvestigated the polyanionic compound Na2Fe2(C2O4)3·2H2O, previously reported to be electr...
Solid-state sulfate chemistry continues to yield promising high-voltage polyanionic cathode material...
Sodium-ion batteries have been extensively pursued as economic alternatives to lithium-ion batteries...
Electrochemical energy storage has recently seen tremendous emphasis being placed on the large-scale...
Exploring future cathode materials for sodium-ion batteries, alluaudite class of Na2Fe2II(SO4)(3) ha...
The research and development with sodium ion batteries has geared up manifold in last one decade, ow...
Sodium-ion-based batteries have evolved as excellent alternatives to their lithium-ion-based counter...
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 Na<sub>2</sub>Fe<su...
Efficient energy storage is a driving factor propelling myriads of mobile electronics, electric vehi...
Developing novel earth-abundant and high energy density cathode materials is pivotal to realize the ...
Based on the density functional theory, we propose a promising cathode material, Na2Fe3(SO4)4, appli...
A new polyanion-based compound, Na3.12M2.44(P 2O7)2 (M = Fe, Fe0.5Mn 0.5, Mn) is synthesized and exa...
Room-temperature sodium-ion battery (NIB) has re-attracted increasing attention in recent years beca...
We report a new triplite-type iron fluoro-sulfate compound, a cation-disordered NaFeSO4F that has re...
We have reinvestigated the polyanionic compound Na2Fe2(C2O4)3·2H2O, previously reported to be electr...
Solid-state sulfate chemistry continues to yield promising high-voltage polyanionic cathode material...
Sodium-ion batteries have been extensively pursued as economic alternatives to lithium-ion batteries...
Electrochemical energy storage has recently seen tremendous emphasis being placed on the large-scale...
Exploring future cathode materials for sodium-ion batteries, alluaudite class of Na2Fe2II(SO4)(3) ha...
The research and development with sodium ion batteries has geared up manifold in last one decade, ow...
Sodium-ion-based batteries have evolved as excellent alternatives to their lithium-ion-based counter...
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 Na<sub>2</sub>Fe<su...
Efficient energy storage is a driving factor propelling myriads of mobile electronics, electric vehi...
Developing novel earth-abundant and high energy density cathode materials is pivotal to realize the ...
Based on the density functional theory, we propose a promising cathode material, Na2Fe3(SO4)4, appli...
A new polyanion-based compound, Na3.12M2.44(P 2O7)2 (M = Fe, Fe0.5Mn 0.5, Mn) is synthesized and exa...
Room-temperature sodium-ion battery (NIB) has re-attracted increasing attention in recent years beca...
We report a new triplite-type iron fluoro-sulfate compound, a cation-disordered NaFeSO4F that has re...
We have reinvestigated the polyanionic compound Na2Fe2(C2O4)3·2H2O, previously reported to be electr...
Solid-state sulfate chemistry continues to yield promising high-voltage polyanionic cathode material...