Publications of Frederik Winkelmann
All genres
Journal Article (8)
2025
Journal Article
Schöbel, J.-H.; Winkelmann, F.; Bicker, J.; Felderhoff, M. Mechanochemical Kilogram-Scale Synthesis of Rac-Ibuprofen:Nicotinamide Co-Crystals Using a Drum Mill. RSC Mechanochemistry 2025.
2024
Journal Article
Demirbas, D.; Winkelmann, F.; Felderhoff, M.; ; Graphene Encapsulated Fe-Based Nanoparticles Synthesized from Iron(II) Sulfate Heptahydrate Containing Precursors: Influence of Chemical Vapor Deposition Parameters. FlatChem 2024, 47, 100714.
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Journal Article
Winkelmann, F.; Felderhoff, M.; ; ; Effect of Preparation Methods on the Interface of LiBH4/SiO2 Nanocomposite Solid Electrolytes. The Journal of Physical Chemistry C 2024, 128, 12186–12193.
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Journal Article
Bodach, A.; ; Winkelmann, F.; Herrmann, B.; ; ; ; ; Felderhoff, M. Scalability of Pharmaceutical Co-Crystal Formation by Mechanochemistry in Batch. ChemSusChem 2024, 17, e202301220.
Journal Article
Balcerzak, M.; Ponsoni, J. B.; Petersen, H.; ; Ternieden, J.; ; Winkelmann, F.; ; ; Felderhoff, M. Hydrogen-Stabilized ScYNdGd Medium-Entropy Alloy for Hydrogen Storage. Journal of the American Chemical Society 2024, 146, 5283–5294.
2021
Journal Article
Marques, F.; Balcerzak, M.; Winkelmann, F.; ; Felderhoff, M. Review and Outlook on High-Entropy Alloys for Hydrogen Storage. Energy & Environmental Science 2021, 14, 5191–5227.
Journal Article
Winkelmann, F.; Albert, R.; Felderhoff, M. Synthesis and Effective Thermal Conductivity Measurements of Hollow Mesoporous SiO2 Spheres for Heat‐Insulating Applications. Energy Technology 2021, 9, 2001048.
2020
Journal Article
Winkelmann, F.; Felderhoff, M.; ; Mg-Containing Multi-Principal Element Alloys for Hydrogen Storage: A Study of the MgTiNbCr0.5Mn0.5Ni0.5 and Mg0.68TiNbNi0.55 Compositions. International Journal of Hydrogen Energy 2020, 45, 19539–19552.
; ; ; Thesis - PhD (1)
2023
Thesis - PhD
Winkelmann, F. High- and Low-Density High Entropy Alloys for Hydrogen Storage. PhD Thesis, Universität Duisburg-Essen, Duisburg-Essen, 2023.