Clarifying the microscopic origin of Mn3+ ion instability in cathode oxides
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Clarifying the microscopic origin of Mn3+ ion instability in cathode oxides
ReferencesShowing 10 of 30 papersThe local disorder induced by high-entropy doping results in highly stable cathode materials for aqueous potassium-ion batteries Role of Electrolyte in Overcoming the Challenges of LiNiO2 Cathode in Lithium Batteries Entropy-increased LiMn2O4-based positive electrodes for fast-charging lithium metal batteries Mitigation of Jahn-Teller distortion and Na+/vacancy ordering in a distorted manganese oxide cathode material by Li substitution. Electrochemical investigation of the P2–NaxCoO2 phase diagram JAHN-TELLER PHENOMENA IN SOLIDS Slab gliding, a hidden factor that induces irreversibility and redox asymmetry of lithium-rich layered oxide cathodes Phase segregation and nanoconfined fluid O2 in a lithium-rich oxide cathode Degradation, Intrinsic Microstrains, and Phase Structure Engineering in Lithium-Rich Oxide Cathode Materials Spinel materials for Li-ion batteries: new insights obtained byoperandoneutron and synchrotron X-ray diffraction
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