A 3.8-V earth-abundant sodium battery electrode
Натриевый электрод аккумуляторной батареи на основе распространённых элементов с напряжением 3,8 В
2014-07-17
SCID: 54.1/pu4cwezb
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Fe(3+)/Fe(2+) redox potentialNa2Fe2(SO4)3alluaudite-type sulphate frameworkearth-abundant cathodessodium-ion batteries
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Abstract (AI)
Rechargeable lithium batteries have ushered the wireless revolution over last two decades and are now matured to enable green automobiles. However, the growing concern on scarcity and large-scale applications of lithium resources have steered effort to realize sustainable sodium-ion batteries, Na and Fe being abundant and low-cost charge carrier and redox centre, respectively. However, their performance is limited owing to low operating voltage and sluggish kinetics. Here we report a hitherto-unknown material with entirely new composition and structure with the first alluaudite-type sulphate framework, Na2Fe2(SO4)3, registering the highest-ever Fe(3+)/Fe(2+) redox potential at 3.8 V (versus Na, and hence 4.1 V versus Li) along with fast rate kinetics. Rare-metal-free Na-ion rechargeable battery system compatible with the present Li-ion battery is now in realistic scope without sacrificing high energy density and high power, and paves way for discovery of new earth-abundant sustainable cathodes for large-scale batteries.
Key Findings
1
Its earth-abundant, rare-metal-free composition supports the feasibility of high-energy, high-power sodium-ion batteries compatible with existing lithium-ion technology.
2
Na2Fe2(SO4)3 exhibits an Fe3+/Fe2+ redox potential of 3.8 V versus sodium, the highest reported for iron at the time.
3
The material combines high operating voltage with fast rate kinetics, addressing key performance limitations of sodium-ion batteries.
4
The study introduces Na2Fe2(SO4)3, the first reported alluaudite-type sulphate framework material.
5
The work establishes a new structural and compositional platform for discovering sustainable cathodes for large-scale batteries.
Research Object
Na2Fe2(SO4)3 alluaudite-type sulphate framework as a sodium-ion battery electrode/cathode
Research Subject
Fe3+/Fe2+ redox potential and rate kinetics, including high-voltage operation and fast charge–discharge performance
Publication Details
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2014-07-17
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