Sodium-ion-based batteries have evolved as excellent alternatives to their lithium-ion-based counterparts due to the abundance, uniform geographical distribution and low price of Na resources. In the pursuit of sodium chemistry, recently the alluaudite framework Na2M2(SO4)(3) has been unveiled as a high-voltage sodium insertion system. In this context, the framework of density functional theory has been applied to systematically investigate the crystal structure evolution, density of states and charge transfer with sodium ions insertion, and the corresponding average redox potential, for Na2M2(SO4)(3) (M = Fe, Mn, Co and Ni). It is shown that full removal of sodium atoms from the Fe-based device is not a favorable process due to the 8% volu...
A known strategy for improving the properties of layered oxide electrodes in sodium-ion batteries is...
A known strategy for improving the properties of layered oxide electrodes in sodium-ion batteries is...
The inclusion of nickel and manganese in layered sodium metal oxide cathodes for sodium ion batterie...
Sodium-ion-based batteries have evolved as excellent alternatives to their lithium-ion-based counter...
Sodium-ion batteries have been extensively pursued as economic alternatives to lithium-ion batteries...
Based on the density functional theory, we propose a promising cathode material, Na2Fe3(SO4)4, appli...
The Na0.44MnO2 structure is a promising cathode material for sodium ion batteries due to a high capa...
Electrochemical energy storage has recently seen tremendous emphasis being placed on the large-scale...
The main challenge of sodium-ion batteries is cycling stability, which is usually compromised due to...
The mineral eldfellite, NaFe(SO4)2, was recently proposed as an inexpensive candidate for the next g...
Sodium-ion batteries (NIBs) are a promising solution for grid storage because they are inexpensive, ...
The Na<sub>0.44</sub>MnO<sub>2</sub> structure is a promising cathode material for sodium ion batter...
Developing cost-effective and high performance sodium-ion batteries (SIBs) relies mostly on advanced...
Sodium-ion batteries (SIBs) can develop cost-effective and safe energy storage technology for substa...
The main challenge of sodium-ion batteries is cycling stability, which is usually compromised due to...
A known strategy for improving the properties of layered oxide electrodes in sodium-ion batteries is...
A known strategy for improving the properties of layered oxide electrodes in sodium-ion batteries is...
The inclusion of nickel and manganese in layered sodium metal oxide cathodes for sodium ion batterie...
Sodium-ion-based batteries have evolved as excellent alternatives to their lithium-ion-based counter...
Sodium-ion batteries have been extensively pursued as economic alternatives to lithium-ion batteries...
Based on the density functional theory, we propose a promising cathode material, Na2Fe3(SO4)4, appli...
The Na0.44MnO2 structure is a promising cathode material for sodium ion batteries due to a high capa...
Electrochemical energy storage has recently seen tremendous emphasis being placed on the large-scale...
The main challenge of sodium-ion batteries is cycling stability, which is usually compromised due to...
The mineral eldfellite, NaFe(SO4)2, was recently proposed as an inexpensive candidate for the next g...
Sodium-ion batteries (NIBs) are a promising solution for grid storage because they are inexpensive, ...
The Na<sub>0.44</sub>MnO<sub>2</sub> structure is a promising cathode material for sodium ion batter...
Developing cost-effective and high performance sodium-ion batteries (SIBs) relies mostly on advanced...
Sodium-ion batteries (SIBs) can develop cost-effective and safe energy storage technology for substa...
The main challenge of sodium-ion batteries is cycling stability, which is usually compromised due to...
A known strategy for improving the properties of layered oxide electrodes in sodium-ion batteries is...
A known strategy for improving the properties of layered oxide electrodes in sodium-ion batteries is...
The inclusion of nickel and manganese in layered sodium metal oxide cathodes for sodium ion batterie...