Reaktionsmechanismen Lithium‐reicher Schicht‐Kathodenmaterialien für Hochenergie‐Lithium‐Ionenbatterien
Author:
Affiliation:
1. Centre for Clean Energy Technology University of Technology Sydney Broadway Sydney NSW 2007 Australien
Funder
Australian Research Council
Publisher
Wiley
Subject
General Medicine
Link
https://onlinelibrary.wiley.com/doi/pdf/10.1002/ange.202000262
Reference78 articles.
1. High-Energy Cathode Materials (Li2MnO3–LiMO2) for Lithium-Ion Batteries
2. Detailed Studies of a High-Capacity Electrode Material for Rechargeable Batteries, Li2MnO3−LiCo1/3Ni1/3Mn1/3O2
3. LixNi0.25Mn0.75Oy (0.5 ≤x≤ 2, 2 ≤y≤ 2.75) compounds for high-energy lithium-ion batteries
4. Li‐ and Mn‐Rich Cathode Materials: Challenges to Commercialization
5. Fundamental understanding and practical challenges of anionic redox activity in Li-ion batteries
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1. Understanding the Impact of Fe‐Doping on the Structure and Battery Performance of a Co‐Free Li‐Rich Layered Cathodes;ChemElectroChem;2023-01-18
2. Unveiling the High‐valence Oxygen Degradation Across the Delithiated Cathode Surface;Angewandte Chemie International Edition;2022-12-27
3. Unveiling the High‐valence Oxygen Degradation Across the Delithiated Cathode Surface;Angewandte Chemie;2022-12-27
4. Insight into the Coprecipitation-Controlled Crystallization Reaction for Preparing Lithium-Layered Oxide Cathodes;ACS Applied Materials & Interfaces;2021-01-02
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