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  4. Hybrid High‐Voltage LiNi0.5Mn1.5O4/Graphite Cathodes Enabling Rechargeable Batteries with Simultaneous Anion‐ and Cation Storage
 
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2023
Journal Article
Title

Hybrid High‐Voltage LiNi0.5Mn1.5O4/Graphite Cathodes Enabling Rechargeable Batteries with Simultaneous Anion‐ and Cation Storage

Abstract
A hybrid cathode concept that targets combining the specific advantages of Li-ion batteries and dual-ion batteries is proposed. LiNi0.5Mn1.5O4 (LNMO), (de)inserting Li+, and graphite, capable to (de)intercalate PF6- present in the electrolyte, are combined in one cathode, aiming for synergy effects due to the presence of two electrochemically active species to overcome rate limitations caused by electrolyte depletion. Hybrid cathodes of different compositions and designs are prepared and investigated regarding their properties and the storage mechanism using electrochemical analyses combined with operando XRD and extensive materials characterization, including scanning electron microscopy and energy-dispersive X-ray spectroscopy. Finally, hybrid cathodes with higher areal capacity are prepared and investigated regarding rate performance. Model-based analysis of the results reveals design criteria and material properties required to achieve synergistic effects between the components in hybrid cathodes. These insights lay the foundation for a new type of battery with advantageous properties in terms of cost, environmental friendliness, and electrochemical performance.
Author(s)
Künne, Sven
Universität Münster  
Hesper, Jakob Michael
Universität Münster  
Lein, Tobias  
TU Dresden  
Voigt, Karsten
TU Dresden  
Mikhailova, Daria
Leibniz-Institut für Festkörper- und Werkstoffforschung, Dresden  
Michaelis, Alexander  orcid-logo
Fraunhofer-Institut für Keramische Technologien und Systeme IKTS  
Winter, Martin
Universität Münster  
Placke, Tobias
Universität Münster  
Heubner, Christian  
Fraunhofer-Institut für Keramische Technologien und Systeme IKTS  
Journal
Batteries & supercaps  
Project(s)
GrEEn
Funder
Ministerium für Wirtschaft, Industrie, Klimaschutz und Energie des Landes Nordrhein-Westfalen
Open Access
DOI
10.1002/batt.202300284
Additional full text version
Landing Page
Language
English
Fraunhofer-Institut für Keramische Technologien und Systeme IKTS  
Keyword(s)
  • dual-ion batteries

  • high power

  • high voltage

  • hybrid cathode

  • Li ion batteries

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