Room-temperature sodium ion batteries (SIBs) have attracted tremendous attention recently as cheaper alternatives to lithium ion batteries (LIBs) for potential application in large-scale electrical energy storage stations. Among the various classes of iron phosphate cathodes used in SIBs, olivine NaFePO4 is one of the most attractive host materials for advanced sodium ion batteries owing to its electrochemical profile and high theoretical capacity. As an alternative to the organic-based electrochemical ion-exchange process which is disadvantaged by sluggish dynamics and co-intercalation of Li+, we investigated an aqueous-based, electrochemical-driven ion-exchange process to transform olivine LiFePO4 into highly pure olivine NaFePO4, which s...
International audienceIn-situ formation of pure olivine NaFePO4 from chemically synthesized LiFePO4 ...
International audienceIn-situ formation of pure olivine NaFePO4 from chemically synthesized LiFePO4 ...
Olivine NaFePO4 is a promising cathode material for Na-ion batteries. Intermediate phases such as N...
Lithium-ion battery is presently the most diffused energy storage system in the electronic portable ...
Olivine NaFePO4 is a promising cathode material for Na-ion batteries. Intermediate phases such as N...
Battery chemistry based on earth-abundant elements has great potential for the development of cost-e...
The behavior of a NaFePO4 cathode, obtained by electrochemical Li-Na exchange of LiFePO4 olivine, is...
Battery chemistry based on earth-abundant elements has great potential for the development of cost-e...
Due to the high cost and insufficient resources of lithium, alternative sodium-ion batteries have be...
Battery chemistry based on earth-abundant elements has great potential for the development of cost-e...
Aqueous sodium-ion batteries represent a promising approach for stationary energy storage; however, ...
Submicron sized NaFePO4 is successfully prepared in-situ by electrochemical delithiation of olivine ...
In the search for new positive-electrode materials for lithium-ion batteries, recent research has fo...
Olivine NaFePO<sub>4</sub>/C microsphere cathode is prepared by a facile aqueous electrochemical dis...
International audienceIn-situ formation of pure olivine NaFePO4 from chemically synthesized LiFePO4 ...
International audienceIn-situ formation of pure olivine NaFePO4 from chemically synthesized LiFePO4 ...
International audienceIn-situ formation of pure olivine NaFePO4 from chemically synthesized LiFePO4 ...
Olivine NaFePO4 is a promising cathode material for Na-ion batteries. Intermediate phases such as N...
Lithium-ion battery is presently the most diffused energy storage system in the electronic portable ...
Olivine NaFePO4 is a promising cathode material for Na-ion batteries. Intermediate phases such as N...
Battery chemistry based on earth-abundant elements has great potential for the development of cost-e...
The behavior of a NaFePO4 cathode, obtained by electrochemical Li-Na exchange of LiFePO4 olivine, is...
Battery chemistry based on earth-abundant elements has great potential for the development of cost-e...
Due to the high cost and insufficient resources of lithium, alternative sodium-ion batteries have be...
Battery chemistry based on earth-abundant elements has great potential for the development of cost-e...
Aqueous sodium-ion batteries represent a promising approach for stationary energy storage; however, ...
Submicron sized NaFePO4 is successfully prepared in-situ by electrochemical delithiation of olivine ...
In the search for new positive-electrode materials for lithium-ion batteries, recent research has fo...
Olivine NaFePO<sub>4</sub>/C microsphere cathode is prepared by a facile aqueous electrochemical dis...
International audienceIn-situ formation of pure olivine NaFePO4 from chemically synthesized LiFePO4 ...
International audienceIn-situ formation of pure olivine NaFePO4 from chemically synthesized LiFePO4 ...
International audienceIn-situ formation of pure olivine NaFePO4 from chemically synthesized LiFePO4 ...
Olivine NaFePO4 is a promising cathode material for Na-ion batteries. Intermediate phases such as N...