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Portrait of Lennart Alsheimer
© MEET/Bartling

ALSHEIMER, Dr. Lennart


MEET - Münster Electrochemical Energy Technology
Room: L.0.015
Corrensstraße 46
D-48149 Münster

Phone: +49 251 83-36811
lennart.alsheimer@uni-muenster.de

Position: Postdoc

Divison / Group: Cell System

 
  • Publications

    • Arifiadi, Anindityo, Demelash, Feleke, Abke, Niklas Markus, Brake, Tobias, Vahnstiege, Marc, Alsheimer, Lennart, Wiemers-Meyer, Simon, Winter, Martin, and Kasnatscheew, Johannes. 2025. “Assessment of ‘Inverse’ Cross-Talk (Anode to Cathode) inHigh-Voltage Li/Mn-Rich Layered Oxide || Li Cells.” Advanced Functional Materials 35. doi: 10.1002/adfm.202413958.
    • Arifiadi, Anindityo, Demelash, Feleke, Brake, Tobias, Lechtenfeld, Christian, Klein, Sven, Alsheimer, Lennart, Wiemers-Meyer, Simon, Winter, Martin, and Kasnatscheew, Johannes. 2025. “Elucidating the Limit of Lithium Difluorophosphate Electrolyte Additive for High-Voltage Li/Mn-Rich LayeredOxide || Graphite Li Ion Batteries.” Energy & Environmental Materials 8. doi: 10.1002/eem2.12835.
    • Alsheimer, Lennart, Winter, Martin, and Börner, Markus. 2024. “Degradation Effects in Li4Ti5O12-Based Cells - Learning from Electrode Potential Profiles.” ACS applied materials & interfaces 16: 60243–60257. doi: 10.1021/acsami.4c12988.
    • Alsheimer, Lennart, Heidrich, Bastian, Peschel, Christoph, Dienwiebel, Iris, Winter, Martin, and Börner, Markus. 2023. “Suppressing gas evolution in Li4Ti5O12 -based pouch cells by high temperature formation.” Journal of Power Sources 575. doi: 10.1016/j.jpowsour.2023.233207.
    • Dienwiebel, Iris, Alsheimer, Lennart, Winter, Martin, and Börner, Markus. 2022. “Quasi in Situ Scanning Electron Microscopy and Energy Dispersive X-ray Spectroscopy on High-Energy and High-Power Negative Active Materials for Lithium Ion Batteries.” contributed to the IMLB 2022 - 21st International Meeting on Lithium Batteries, Sydney.
    • Bank, Thomas, Alsheimer, Lennart, Löffler, Nicholas, and Sauer, Dirk Uwe. 2022. “State of charge dependent degradation effects of lithium titanate oxide batteries at elevated temperatures: An in-situ and ex-situ analysis.” Journal of Energy Storage 51. doi: 10.1016/j.est.2022.104201.
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MEET - Münster Electrochemical Energy Technology

Corrensstraße 46
48149 Münster

Tel: +49 251 83-36793
Fax: +49 251 83-36032
meet.office@uni-muenster.de
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