Structural and Thermodynamic Understandings in Mn-Based Sodium Layered Oxides during Anionic Redox

  • Kong, Seok Mun
  • Kim, Duho
  • Lee, Kug-Seung
  • Kim, Min-Seob
  • Jin, Aihua
  • ... Yu, Seung-Ho
  • 외 6명
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초록

A breakthrough utilizing an anionic redox reaction (O2-/On-) for charge compensation has led to the development of high-energy cathode materials in sodium-ion batteries. However, its reaction results in a large voltage hysteresis due to the structural degradation arising from an oxygen loss. Herein, an interesting P2-type Mn-based compound exhibits a distinct two-phase behavior preserving a high-potential anionic redox (approximate to 4.2 V vs Na+/Na) even during the subsequent cycling. Through a systematic series of experimental characterizations and theoretical calculations, the anionic redox reaction originating from O 2p-electron and the reversible unmixing of Na-rich and Na-poor phases are confirmed in detail. In light of the combined study, a critical role of the anion-redox-induced two-phase reaction in the positive-negative point of view is demonstrated, suggesting a rational design principle considering the phase separation and lattice mismatch. Furthermore, these results provide an exciting approach for utilizing the high-voltage feature in Mn-based layered cathode materials that are charge-compensated by an anionic redox reaction.

키워드

anionic redoxcathodessodium ion batteriestwo-phase reactionsCATHODE MATERIALCHARGE-COMPENSATIONOXYGENBATTERIESPHASEVISUALIZATIONINTERCALATIONSPECTROSCOPYPERFORMANCECHEMISTRY
제목
Structural and Thermodynamic Understandings in Mn-Based Sodium Layered Oxides during Anionic Redox
저자
Kong, Seok MunKim, DuhoLee, Kug-SeungKim, Min-SeobJin, AihuaPark, Jae-HyukAhn, Chi-YeongJeon, Tae-YeolJung, Young HwaYu, Seung-HoMun, JunyoungSung, Yung-Eun
DOI
10.1002/advs.202001263
발행일
2020-08
유형
Article
저널명
Advanced Science
7
16