In-situ Neutron Diffraction Study of a High Voltage Li(Ni0.42Mn0.42Co0.16)O2/Graphite Pouch Cell
Author:
Publisher
Elsevier BV
Subject
Electrochemistry,General Chemical Engineering
Reference43 articles.
1. The Effect of Lithium Content and Core to Shell Ratio on Structure and Electrochemical Performance of Core-Shell Li(1+x)[Ni0.6Mn0.4](1−x)O2Li(1+y)[Ni0.2Mn0.8](1−y)O2Positive Electrode Materials
2. Structural Study of the Li–Mn–Ni Oxide Pseudoternary System of Interest for Positive Electrodes of Li-Ion Batteries
3. The Negative Impact of Layered-Layered Composites on the Electrochemistry of Li-Mn-Ni-O Positive Electrodes for Lithium-Ion Batteries
4. Thermal Dehydration of Magnesium Acetate Tetrahydrate: Formation and in Situ Crystallization of Anhydrous Glass
5. Different oxygen redox participation for bulk and surface: A possible global explanation for the cycling mechanism of Li1.20Mn0.54Co0.13Ni0.13O2
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1. In situ/in operando diffraction studies of electrode materials in battery applications;Comprehensive Inorganic Chemistry III;2023
2. Performance of a Novel In-Situ Converted Additive for High Voltage Li-ion Pouch Cells;Journal of The Electrochemical Society;2022-10-01
3. Alleviating Anisotropic Volume Variation at Comparable Li Utilization during Cycling of Ni-Rich, Co-Free Layered Oxide Cathode Materials;The Journal of Physical Chemistry C;2022-09-29
4. Correlating Morphological and Structural Evolution with the Electrochemical Performance of Nickel-Rich Cathode Materials: From Polycrystal to Single Crystal;Journal of The Electrochemical Society;2022-09-01
5. Mitigating Anisotropic Changes in Classical Layered Oxide Materials by Controlled Twin Boundary Defects for Long Cycle Life Li-Ion Batteries;Chemistry of Materials;2022-08-02
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