Synthesis–structure relationships in Li- and Mn-rich layered oxides: phase evolution, superstructure ordering and stacking faults
Author:
Affiliation:
1. Department of Chemistry-Ångström Laboratory, Uppsala University, Box 538, SE-75121 Uppsala, Sweden
Abstract
Funder
Energimyndigheten
Stiftelsen förStrategisk Forskning
Vetenskapsrådet
Swedish Institute
Publisher
Royal Society of Chemistry (RSC)
Subject
Inorganic Chemistry
Link
http://pubs.rsc.org/en/content/articlepdf/2022/DT/D2DT00104G
Reference37 articles.
1. Li2MnO3-stabilized LiMO2 (M = Mn, Ni, Co) electrodes for lithium-ion batteries
2. Review—Li-Rich Layered Oxide Cathodes for Next-Generation Li-Ion Batteries: Chances and Challenges
3. Layered Cathode Materials Li[Ni[sub x]Li[sub (1/3−2x/3)]Mn[sub (2/3−x/3)]]O[sub 2] for Lithium-Ion Batteries
4. Voltage decay and redox asymmetry mitigation by reversible cation migration in lithium-rich layered oxide electrodes
5. Long-Term Cycle Stability Enabled by the Incorporation of Ni into Li2MnO3 Phase in the Mn-Based Li-Rich Layered Materials
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3. Manganese-rich high entropy oxides for lithium-ion batteries:materials design approaches to address voltage fade;Journal of Materials Chemistry A;2024
4. Calcination Heterogeneity in Li-Rich Layered Oxides: A Systematic Study of Li2CO3 Particle Size;Chemistry of Materials;2023-12-13
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