Structural Disorder of a Layered Lithium Manganese Oxide Cathode Paving a Reversible Phase Transition Route toward Its Theoretical Capacity

  • Lee, Suwon
  • Kang, Seongkoo
  • Choi, Youngju
  • Kim, Jihyun
  • Yang, Junghoon
  • ... Nam, Kyung-Wan
  • 외 4명
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초록

Layered lithium manganese oxides suffer from irreversible phase transitions induced by Mn migration and/or dissolution associated with the Jahn-Teller effect (JTE) of Mn3+, leading to inevitable capacity fading during cycling. The popular doping strategy of oxidizing Mn3+ to Mn4+ to relieve the JTE cannot completely eliminate the detrimental structural collapse from the cooperative JTE. Therefore, they are considered to be impractical for commercial use as cathode materials. Here, we demonstrate a layered lithium manganese oxide that can be charged and discharged without any serious structural collapse using metastable Li-birnessite with controlled structural disorder. Although Li-birnessite is thermodynamically unstable under ambient conditions, Li ion exchange into Na-birnessite followed by an optimal dehydration resulted in a disordered Li-birnessite. The control over crystal water in the interlayer provides intriguing short-range order therein, which can help to suppress parasitic Mn migration and dissolution, thereby ensuring a reversible electrochemical cycling. The Mn redox behavior and local structure change of the Li-birnessite were investigated by ex situ soft X-ray absorption spectroscopy (sXAS) and X-ray pair distribution function (PDF) analysis. The combined sXAS and PDF with electrochemical analyses disclosed that the reversible Mn redox and suppressed phase transitions in Dh Li-birnessite contribute to dramatically improving its electrochemical reversiblity during cycling. Our findings underscore the substantial effects of controlled static disorder on the structural stability and electrochemical reversibility of a layered lithium manganese oxide, Li-birnessite, which extends the practical capacity of layered oxides close to their theoretical limit.

키워드

LithiumLithium IonManganese Oxide3d XrdBruker Tensor-27 Ft-ir SpectrometerHitachi Su500 Scanning Electron MicroscopeKratos Axis Supar Plus SpectrometerPerkinelmer Optima 8300 Icp Mass SpectrometerTa Instruments Sdt Q600Xps SpectrometerElectrolytesJahn-teller EffectLayered SemiconductorsLithium CompoundsManganese OxideRedox ReactionsSemiconductor DopingBirnessiteJahn-tellerLayered Lithium Manganese OxideManganese Oxide CathodeReversible Phase TransitionSoft-x-ray AbsorptionStructural CollapseStructural DisordersTheoretical CapacityX-ray Absorption SpectroscopyX Ray Absorption SpectroscopyLithiumLithium BirnessiteUnclassified DrugLithium IonManganese OxideArticleBrunauer Emmett Teller MethodElectrochemical AnalysisElectrochemical ReversibilityEnergy Dispersive X Ray SpectroscopyEx Situ Soft X Ray Absorption SpectroscopyField Emission Scanning Electron MicroscopyFourier Transform Infrared SpectroscopyInductively Coupled Plasma Atomic Emission SpectrometryMicrowave RadiationPhase TransitionReversible Phase TransitionStructural StabilityStructure AnalysisTheoretical CapacityTheoretical ModelThermogravimetryX Ray AnalysisX Ray DiffractionX Ray Pair Distribution Function AnalysisX Ray Photoemission SpectroscopyArticleCathode ElectrodeControlled StudyDehydrationDissolutionIon ExchangeWaterX-RAY-ABSORPTIONMN K-EDGEHEXAGONAL BIRNESSITEELECTRODE MATERIALSLIMNO2SPECTROSCOPYCRYSTALLINESTABILITYBATTERYWATER
제목
Structural Disorder of a Layered Lithium Manganese Oxide Cathode Paving a Reversible Phase Transition Route toward Its Theoretical Capacity
저자
Lee, SuwonKang, SeongkooChoi, YoungjuKim, JihyunYang, JunghoonHan, DaseulNam, Kyung-WanBorkiewicz, Olaf J.Zhang, JiliangKang, Yong-Mook
DOI
10.1021/jacs.4c12248
발행일
2024-11
유형
Article
저널명
Journal of the American Chemical Society
146
49
페이지
33845 ~ 33856