Influence of Initial Charge Condition on Structural Stability and Electrochemical Properties of Li1.2Ni0.2Mn0.6O2 Cathode Materials
Author:
Publisher
Elsevier BV
Subject
Electrochemistry,General Chemical Engineering
Reference26 articles.
1. The significance of the Li2MnO3 component in ‘composite’ xLi2MnO3·(1−x)LiMn0.5Ni0.5O2 electrodes
2. Advances in manganese-oxide ‘composite’ electrodes for lithium-ion batteries
3. Comments on the structural complexity of lithium-rich Li1+xM1−xO2 electrodes (M=Mn, Ni, Co) for lithium batteries
4. Synthesis, Characterization and Electrochemistry of Lithium Battery Electrodes: xLi2MnO3·(1 − x)LiMn0.333Ni0.333Co0.333O2 (0 ≤ x ≤ 0.7)
5. Lithium metal rechargeable cells using Li2MnO3 as the positive electrode
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1. Conventional and less conventional solution-based synthesis of battery materials: Cathodes, anodes and electrolytes;Comprehensive Inorganic Chemistry III;2023
2. Charge Compensation Mechanism and Structural Change of Li-Rich Layered Oxide Li1.23Mn0.46Fe0.15Ni0.15O2 Electrode during Charging and Discharging;Journal of The Electrochemical Society;2021-04-01
3. Lithium-Rich Cobalt-Free Manganese-Based Layered Cathode Materials for Li-Ion Batteries: Suppressing the Voltage Fading;Energies;2020-07-06
4. Hierarchical micro−nanostructured and Al3+−doped Li1.2Ni0.2Mn0.6O2 active materials with enhanced electrochemical properties as cathode materials for Li−ion batteries;Scripta Materialia;2019-10
5. Effect of Lithium/Transition‐Metal Ratio on the Electrochemical Properties of Lithium‐Rich Cathode Materials with Different Nickel/Manganese Ratios for Lithium‐Ion Batteries;ChemistrySelect;2019-08-27
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