Single Crystal Layered Oxide Cathodes: The Relationship between Particle Size, Rate Capability, and Stability

Invited for this issue's Front Cover is the group of Torsten Brezesinski at KIT. The cover picture presents the metaphor of cathode particles, their morphology and underlying rate capability as racers with different performances. Here we present a way to think about single crystal layered oxide...

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Published in:ChemElectroChem Vol. 10; no. 18
Main Authors: van den Bergh, Wessel, Karger, Leonhard, Murugan, Saravanakumar, Janek, Jürgen, Kondrakov, Aleksandr, Brezesinski, Torsten
Format: Journal Article
Language:English
Published: Weinheim John Wiley & Sons, Inc 01-09-2023
Wiley-VCH
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Abstract Invited for this issue's Front Cover is the group of Torsten Brezesinski at KIT. The cover picture presents the metaphor of cathode particles, their morphology and underlying rate capability as racers with different performances. Here we present a way to think about single crystal layered oxide cathodes, which stand apart from more common polycrystalline materials with regards to their relationship with size, diffusivity and morphology. Read the full text of the Concept at 10.1002/celc.202300165 .
AbstractList Invited for this issue's Front Cover is the group of Torsten Brezesinski at KIT. The cover picture presents the metaphor of cathode particles, their morphology and underlying rate capability as racers with different performances. Here we present a way to think about single crystal layered oxide cathodes, which stand apart from more common polycrystalline materials with regards to their relationship with size, diffusivity and morphology. Read the full text of the Concept at 10.1002/celc.202300165 .
Abstract Invited for this issue's Front Cover is the group of Torsten Brezesinski at KIT. The cover picture presents the metaphor of cathode particles, their morphology and underlying rate capability as racers with different performances. Here we present a way to think about single crystal layered oxide cathodes, which stand apart from more common polycrystalline materials with regards to their relationship with size, diffusivity and morphology. Read the full text of the Concept at 10.1002/celc.202300165.
Invited for this issue's Front Cover is the group of Torsten Brezesinski at KIT. The cover picture presents the metaphor of cathode particles, their morphology and underlying rate capability as racers with different performances. Here we present a way to think about single crystal layered oxide cathodes, which stand apart from more common polycrystalline materials with regards to their relationship with size, diffusivity and morphology. Read the full text of the Concept at 10.1002/celc.202300165.
Author Karger, Leonhard
Murugan, Saravanakumar
van den Bergh, Wessel
Kondrakov, Aleksandr
Brezesinski, Torsten
Janek, Jürgen
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  givenname: Leonhard
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Snippet Invited for this issue's Front Cover is the group of Torsten Brezesinski at KIT. The cover picture presents the metaphor of cathode particles, their morphology...
Abstract Invited for this issue's Front Cover is the group of Torsten Brezesinski at KIT. The cover picture presents the metaphor of cathode particles, their...
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Morphology
Single crystals
Title Single Crystal Layered Oxide Cathodes: The Relationship between Particle Size, Rate Capability, and Stability
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