Battery chemistry based on earth-abundant elements has great potential for the development of cost-effective, large-scale energy storage systems. Herein, we report, for the first time, that maricite NaFePO4 can function as an excellent cathode material for Na ion batteries, an unexpected result since it has been regarded as an electrochemically inactive electrode for rechargeable batteries. Our investigation of the Na re-(de)intercalation mechanism reveals that all Na ions can be deintercalated from the nano-sized maricite NaFePO4 with simultaneous transformation into amorphous FePO4. Our quantum mechanics calculations show that the underlying reason for the remarkable electrochemical activity of NaFePO4 is the significantly enhanced Na mob...
International audienceThe cheap and non-toxic FePO4, which can be recovered from spent LFP batteries...
Room-temperature sodium ion batteries (SIBs) have attracted tremendous attention recently as cheaper...
International audienceThe cheap and non-toxic FePO4, which can be recovered from spent LFP batteries...
Battery chemistry based on earth-abundant elements has great potential for the development of cost-e...
Battery chemistry based on earth-abundant elements has great potential for the development of cost-e...
Battery chemistry based on earth-abundant elements has great potential for the development of cost-e...
Battery chemistry based on earth-abundant elements has great potential for the development of cost-e...
Na-ion batteries are gaining an increased recognition as the next generation low cost energy storage...
Large-scale electric energy storage is a key enabler for the use of renewable energy. Recently, the ...
Large-scale electric energy storage is a key enabler for the use of renewable energy. Recently, the ...
Large-scale electric energy storage is a key enabler for the use of renewable energy. Recently, the ...
Low-cost room-temperature sodium-ion batteries (SIBs) are expected to promote the development of sta...
Rechargeable batteries based on the most abundant elements, such as sodium and iron, have a great po...
Rechargeable batteries based on the most abundant elements, such as sodium and iron, have a great po...
Rechargeable batteries based on the most abundant elements, such as sodium and iron, have a great po...
International audienceThe cheap and non-toxic FePO4, which can be recovered from spent LFP batteries...
Room-temperature sodium ion batteries (SIBs) have attracted tremendous attention recently as cheaper...
International audienceThe cheap and non-toxic FePO4, which can be recovered from spent LFP batteries...
Battery chemistry based on earth-abundant elements has great potential for the development of cost-e...
Battery chemistry based on earth-abundant elements has great potential for the development of cost-e...
Battery chemistry based on earth-abundant elements has great potential for the development of cost-e...
Battery chemistry based on earth-abundant elements has great potential for the development of cost-e...
Na-ion batteries are gaining an increased recognition as the next generation low cost energy storage...
Large-scale electric energy storage is a key enabler for the use of renewable energy. Recently, the ...
Large-scale electric energy storage is a key enabler for the use of renewable energy. Recently, the ...
Large-scale electric energy storage is a key enabler for the use of renewable energy. Recently, the ...
Low-cost room-temperature sodium-ion batteries (SIBs) are expected to promote the development of sta...
Rechargeable batteries based on the most abundant elements, such as sodium and iron, have a great po...
Rechargeable batteries based on the most abundant elements, such as sodium and iron, have a great po...
Rechargeable batteries based on the most abundant elements, such as sodium and iron, have a great po...
International audienceThe cheap and non-toxic FePO4, which can be recovered from spent LFP batteries...
Room-temperature sodium ion batteries (SIBs) have attracted tremendous attention recently as cheaper...
International audienceThe cheap and non-toxic FePO4, which can be recovered from spent LFP batteries...