Electrochemical intercalation of Li+ into nanodomain Li4Mn5O12
Author:
Publisher
Elsevier BV
Subject
Materials Chemistry,Metals and Alloys,Mechanical Engineering,Mechanics of Materials
Reference62 articles.
1. Challenges for Rechargeable Li Batteries
2. Layered lithium transition metal oxide cathodes towards high energy lithium-ion batteries
3. Advances in manganese-oxide ‘composite’ electrodes for lithium-ion batteries
4. Lithium–manganese oxide electrodes with layered–spinel composite structures xLi2MnO3·(1−x)Li1+yMn2−yO4 (0
5. Structural complexity of layered-spinel composite electrodes for Li-ion batteries
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1. Probing room-temperature reactivity of H2S, SO2, and NO on the Li2MnO3 crystal surface by experimental and first-principles studies;New Journal of Chemistry;2023
2. Enhanced CO capture properties of Li2MnO3via inducing layered to spinel transition by cation doping with Fe, Co, Ni and Cu;Reaction Chemistry & Engineering;2022
3. The Renaissance of High-Capacity Cathode Materials for Lithium Ion Cells;Energy Systems in Electrical Engineering;2022
4. Li4Mn5O12 Cathode for Both 3 V and 4 V Lithium-ion Batteries;Chemical Research in Chinese Universities;2021-09-18
5. Magnesium Deintercalation From the Spinel‐Type MgMn 2‐y Fe y O 4 (0.4≤y≤2.0) by Acid‐Treatment and Electrochemistry;Chemistry – A European Journal;2021-07-20
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