Abstract
Oxygen-redox reactions (ORRs) in Na-based transition metal (TM) layered oxides have attracted a great deal of attention as a means of overcoming the intrinsic low energy density of the cathodes of sodium-ion batteries (SIBs), because their activities occur above ≈4.0 VversusNa+/Na and deliver extra capacity beyond the TM-based redox contribution. Intriguingly, Mn-based binary-layered oxides (e.g., Na1−x[Mn1−yNiy]O2), have recently been re-examined to elucidate the ORR involvement that had been assigned to the Ni3+/Ni4+redox couple. Accordingly, Na1−x[Mn1/2Fe1/2]O2, a representative abundant cathode, was reinvestigated in detail using first-principles calculations to unlock veiled ORRs upon charging. First, the charge variations of Mn, Fe, and O showed that a typical Mn3+/Mn4+cationic redox is a principal factor in charge compensation for 0.25 ≤x≤ 0.5 in Na1−x[Mn1/2Fe1/2]O2, whereas a dominant ORR contributes to the charge compensation with the partial Fe redox for a value abovex= 0.5. Second, the ORR is selective depending on the oxygen site coordinates with Fe-rich (2Fe-O-Mn) or Mn-rich (Fe-O-2Mn) environments. Third, the Fe-O chemical bonding features reveal that the Jahn-Teller distortion determines the priority of the oxygen redox reaction ≈4.0 V. Along these lines, our findings provide insights into directions in utilizing the veiled oxygen redox reaction of Nax[Mn1−yFey]O2binary oxides.
| Original language | English |
|---|---|
| Pages (from-to) | 15179-15187 |
| Number of pages | 9 |
| Journal | Journal of Materials Chemistry A |
| Volume | 9 |
| Issue number | 27 |
| DOIs | |
| Publication status | Published - 21 Jul 2021 |
Bibliographical note
Publisher Copyright:© The Royal Society of Chemistry 2021.
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