High lithium storage performance of Ni0.5Fe0.5O1−xNx thin film with NiO-type crystal structure
The large voltage hysteresis of the NiO anode, which owes much to the intermediate product Li 2 NiO 2 , is one of the main obstacles to its practical application in lithium-ion batteries. In this work, we show that the incorporation of Fe- and N-ions in the NiO lattice can suppress the formation of...
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Veröffentlicht in: | Frontiers of materials science 2022-12, Vol.16 (4), Article 220624 |
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Hauptverfasser: | , , , , , |
Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | The large voltage hysteresis of the NiO anode, which owes much to the intermediate product Li
2
NiO
2
, is one of the main obstacles to its practical application in lithium-ion batteries. In this work, we show that the incorporation of Fe- and N-ions in the NiO lattice can suppress the formation of intermediate product Li
2
NiO
2
and thus greatly reduces the voltage hysteresis of the NiO anode from ∼1.2 to ∼0.9 V. In comparison with the pure NiO electrode, the Ni
0.5
Fe
0.5
O
1−
x
N
x
anode exhibits significantly enhanced reversible specific capacity (959 mAh·g
−1
at 0.3 A·g
−1
), cycling stability (capacity retention of 96.1% at 100th cycle relative to the second cycle) and rate capability (442 at 10 A·g
−1
). These results provide a practical method to enhance the lithium storage performance of the NiO anode and more importantly a new solution to the large voltage hysteresis of conversion-type anodes. |
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ISSN: | 2095-025X 2095-0268 |
DOI: | 10.1007/s11706-022-0624-6 |