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Lotharstraße 1
47057 Duisburg
47057 Duisburg
Raum
MA 325
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Funktionen
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Wissenschaftliche/r Mitarbeiter/in, Energietechnik
Aktuelle Veranstaltungen
Vergangene Veranstaltungen (max. 10)
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SoSe 2025
- Energietechnik
- Energietechnik
- Praktikum Energietechnik
- Energie- und Verfahrenstechnik
- Energie- und Verfahrenstechnik
- Regenerative Energietechnik 2
- Brennstoffzellensysteme in der dezentralen Energieversorgung
- Elektrochemische Wasserstofferzeugung und -nutzung
- Elektrochemische Wasserstofferzeugung und -nutzung
- Elektrochemische Wasserstofferzeugung und -nutzung
Die folgenden Publikationen sind in der Online-Universitätsbibliographie der Universität Duisburg-Essen verzeichnet. Weitere Informationen finden Sie gegebenenfalls auch auf den persönlichen Webseiten der Person.
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Enhanced long-term stability of zinc-air batteries using a quaternized PVA-chitosan composite separator with thin-layered MoS₂In: Electrochimica Acta, Jg. 510, 2025, 145361
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Quaternized PVA-MoS₂ composite separator : Enhancing long-term stability and ion transport in secondary zinc-air batteriesIn: Journal of Energy Storage, Jg. 121, 2025, 116497
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New Insights Into Zinc Passivation Through Operando Measured Zincate ConcentrationsIn: Batteries & Supercaps, Jg. 7, 2024, Nr. 12, e202400298DOI (Open Access)
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Carboxymethyl cellulose as an artificial solid electrolyte interphase for stable zinc-based anodes in aqueous electrolytesIn: Materials Science for Energy Technologies, Jg. 6, 2023, S. 417 – 428DOI (Open Access)
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Erratum: Author Correction: Compressed composite carbon felt as a negative electrode for a zinc-iron flow battery (Scientific reports (2022) 12 1 (21156))In: Scientific Reports, Jg. 13, 2023, Nr. 1, 5494DOI (Open Access)
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Umweltfreundlcher Mobilitätsantrieb? : Batterien und Brennstoffzellen als Energieversorgung für die ElektromobilitätIn: Unikate: Berichte aus Forschung und Lehre, 2023, Nr. 59: Mobilität und Transport im Wandel : Strategie und Umsetzung, S. 86 – 97DOI, Online Volltext (Open Access)
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Characterization and scale-up of serpentine and interdigitated flow fields for application in commercial vanadium redox flow batteriesIn: Journal of Power Sources, Jg. 542, 2022, 231812
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Compressed composite carbon felt as a negative electrode for a zinc–iron flow batteryIn: Scientific Reports, Jg. 12, 2022, Nr. 1, 21156DOI (Open Access)
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Stabilizing zinc anodes for different configurations of rechargeable zinc-air batteriesIn: Chemical Engineering Journal, Jg. 449, 2022, 137796
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Carboxymethyl cellulose-based polyelectrolyte as cationic exchange membrane for zinc-iodine batteriesIn: Heliyon, Jg. 6, 2020, Nr. 10, S. e05391DOI (Open Access)
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Silver decorated reduced graphene oxide as electrocatalyst for zinc–air batteriesIn: Energies, Jg. 13, 2020, Nr. 2, S. 462DOI (Open Access)
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Development of high energy lithium-ion batteries through the anode side substitution of graphite by Si/C compositeIn: ECS Transactions, Jg. 75, 2017, Nr. 20, S. 21 – 30
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Energy Storage as Part of a Secure Energy SupplyIn: ChemBioEng Reviews, Jg. 4, 2017, S. 144 – 210DOI (Open Access)
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Novel Si-CNT/polyaniline nanocomposites as Lithium-ion battery anodes for improved cycling performance
7th NRW Nano-Conference 2016, 7th and 8th December 2016, Münster, Germany,In: Materials Today: Proceedings, Jg. 4, 2017, Nr. Suppl. 2, S. S263 – S268DOI (Open Access) -
High-yield and scalable synthesis of a Silicon/Aminosilane-functionalized Carbon NanoTubes/Carbon (Si/A-CNT/C) composite as a high-capacity anode for lithium-ion batteriesIn: Journal of Applied Electrochemistry, Jg. 46, 2016, Nr. 2, S. 229 – 239
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Energiespeicherung als Element einer sicheren EnergieversorgungIn: Chemie - Ingenieur - Technik (CIT), Jg. 87, 2015, Nr. 1-2, S. 17 – 89DOI (Open Access)
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Silicon/carbon nano-composite based anodes for advanced lithium-ion batteriesIn: ECS Transactions, Jg. 66, 2015, Nr. 9, S. 29 – 36
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Si–CNT/rGO nanoheterostructures as high-performance lithium-ion-battery anodeIn: ChemElectroChem, Jg. 2, 2015, Nr. 12, S. 1983 – 1990
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PBI/H3PO4 Gel Based Polymer Electrolyte Membrane Fuel Cells Under the Influence of ReformatesIn: Journal of Fuel Cell Science and Technology, Jg. 7, 2010, Nr. 1, S. 0145011 – 0145012
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High-capacity silicon-based anodes for Li-ion batteries : Challenges and solution approachesIn: Large Lithium Ion Battery Technology and Application Symposium (LLIBTA 2014) and Large EC Capacitor Technology and Application Symposium (ECCAP 2014): Atlanta, Georgia, USA, 4 - 5 February 2014 ; held at AABC 2014, [14th International Advanced Automotive Battery Conference] / Large Lithium Ion Battery Technology and Application Symposium ; LLIBTA ; Large EC Capacitor Technology and Application Symposium ; ECCAP ; February 4 – 5, 2014, Atlanta, Georgia, USA. Red Hook: Curran, 2015, S. 637 – 642
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Secondary zinc-air batteries - mechanically rechargeableIn: Electrochemical power sources: Fundamentals, Systems, and Applications: Metal-Air Batteries: Present and Perspectives / Arai, Hajime; Garche, Jürgen; Colmenares, Luis (Hrsg.). Amsterdam: Elsevier, 2021, S. 99 – 123
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Zink-Supensionen als Elektroden für wiederaufladbare Zink-Luft-Batterien
107. Seminar der Arbeitsgemeinschaft Elektrochemischer Forschungsinstitutionen (AGEF), Oldenburg, 2015,2015