Batterien für Luft- und Raumfahrt
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LR01
Model-based analysis of thermal runaway risk in lithium-ion batteries for aerospace applications
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LR02
From Composite Design to Scaled Demonstrators: A Multiscale Approach to the Sustainable Development of Lithium–Sulfur Batteries
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LR03
Alkali metal-sulfur batteries: Pairing sodium-potassium anodes with solid electrolytes and semi-solid polysulfide cathodes to enable compact, safe and sustainable energy storage for highly demanding applications
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LR04
Application-Oriented Battery Characterization for Aviation and Space Systems
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LR05
Calendering process of water-based SPAN-cathodes for Aerospace Application of Li-SPAN batteries
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LR06
Multifunctional Structural Battery Composites: Integrating Energy Storage into Load-Bearing Aerospace Structures
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LR07
Festkörperbatterien im Höhenflug – Analyse und Simulation ihrer thermischen Besonderheiten für die Luft- und Raumfahrt
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LR08
Enormous increase in the lifetime of lithium-ion batteries with silicon-graphite blend electrodes by partial use of silicon
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LR09
Entwicklung von Elektroden auf Basis von sulforiertem Polyacrylnitril (SPAN) für Lithium-Schwefel-Batterien und Bewertung in Multilagen-Pouchzellen
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LRV10
Zukunftsfähige Batteriesysteme für Luftfahrtantriebe
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LRV11
Advanced characterization and digitalized design loops as catalysts for the efficient development of Lithium-SPAN Batteries for Aerospace Applications