• Publikationen

    • , , , , , und . . „Wet Mechanical Treatment of Spent Lithium Ion Batteries – Analytical Insights into Contaminated Process Water.“ präsentiert auf der Advanced Battery Power, Münster
    • , , , , , , , , , , , , und . . „Direct Recycling at the Material Level: Unravelling Challenges and Opportunities through a Case Study on Spent Ni-Rich Layered Oxide-Based Cathodes.Advanced Energy Materials, Nr. 14: 2400840. doi: 10.1002/aenm.202400840.
    • , , , , , , , , und . . „Analyzing the effect of electrolyte quantity on the aging of lithium-ion batteries.Advanced Science, Nr. 11 (39) 2405897. doi: 10.1002/advs.202405897.
    • , , , , und . . „Novel quantification method for lithium ion battery electrolyte solvents in aqueous recycling samples using SPE/GC-FID.Advanced Energy and Sustainability Research, Nr. xxx doi: 10.1002/aesr.202400311.
    • , , , , und . . „SPE/GC-FID: Developing a Quantitative Method for Analyzing LIB Electrolyte Residues in Industrial Wastewaters.“ präsentiert auf der BACCARA Power Day 2024, Münster
    • , , , , , , , , , und . . „Systematic “Apple-to-Apple” Comparison of Single-Crystal and Polycrystalline Ni-Rich Cathode Active Materials: From Comparable Synthesis to Comparable Electrochemical Conditions.Small structures, Nr. 7 2400119. doi: 10.1002/sstr.202400119.
    • , , , , und . . „Investigating the Electrolyte-volume-dependent Aging of Lithium-ion Batteries by means of Instrumental Analytical Techniques.“ präsentiert auf der Advanced Battery Power, Aachen
    • , , , , , und . . „Comprehensive Characterization of Process Water in Lithium-Ion Battery Recycling - an Analytial Guide.“ präsentiert auf der ABAA - 14th International Conference on Advanced Lithium Batteries for Automobile Applications, Ho-Chi-Minh-City
    • , , , und . . „The Influence of Electrolyte Volume on the Aging Process in Lithium-Ion Batteries.“ präsentiert auf der ABAA - 14th International Conference on Advanced Lithium Batteries for Automobile Applications, Ho-Chi-Minh-City
    • , , und . . „Investigating the phytoremediation potential of brown mustard for soils contaminated with Li-ion battery materials.“ präsentiert auf der Baccara Power Day, Münster
    • , , , , , , , , , , und . . „Phytoremediation of soil contaminated with lithium ion battery active materials – A proof of concept study.Recycling, Nr. 5 (4) (Special Issue: Recycling of Lithium Ion Batteries and Other Next Generation Materials): 26. doi: 10.3390/recycling5040026.
  • Wissenschaftliche Vorträge

    • Buchmann, Julius; van Wickeren, Stefan; Petzold, Moritz; Winter, Martin; Nowak, Sascha : “Lithium-Ionen-Batterie-Recycling - Analysetechniken für die Charakterisierung und Risikobewertung von Prozesswasser ”. Initiating, Translating & Scaling-up of Battery Innovations in North West Europe & Silicon Valley, Stanford, .
    • Buchmann, Julius; Petzold, Moritz; van Wickeren, Stefan; Winter, Martin; Nowak, Sascha : “Comprehensive Characterization of Process Water in Lithium-Ion Battery Recycling – an Analytical Guide”. 244th ECS Meeting (The Electrochemical Society), Göteburg, .
    • Buchmann, Julius; Henschel, Jonas; Winter, Martin; Nowak, Sascha : “Phytoremediation of soils contaminated with battery materials”. MUST Winter School, Münster, .