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Fakultät für Ingenieurwissenschaften
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Wilhelm-Johnen-Straße
52425 Forschungszentrum Jülich GmbH
52425 Forschungszentrum Jülich GmbH
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Universitätsprofessor/in, Werkstoffe der elektrochemischen Speicher
Aktuelle Veranstaltungen
Keine aktuellen Veranstaltungen.
Vergangene Veranstaltungen (max. 10)
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SoSe 2025
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SoSe 2024
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SoSe 2023
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WiSe 2022
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SoSe 2022
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SoSe 2021
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WiSe 2020
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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Ceramic-Rich Composite Separators for High-Voltage Solid-State BatteriesIn: Batteries, Jg. 11, 2025, Nr. 2, 42DOI (Open Access)
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Cobalt–Silicon Material Libraries Derived from High Throughput Experimentation and Their Application in Lithium BatteriesIn: ACS Omega, Jg. 10, 2025, Nr. 40, S. 46533 – 46541DOI (Open Access)
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Corrosion stability of NASICON-based membranes against aqueous solutions: case study for sodium iodine batteriesIn: Journal of Materials Chemistry A: Materials for Energy and Sustainability, Jg. 13, 2025, Nr. 4, S. 3010 – 3022DOI (Open Access)
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Ga-ion migration during co-sintering of heterogeneous Ta- and Ga-substituted LLZO solid-state electrolytesIn: Journal of the European Ceramic Society, Jg. 45, 2025, Nr. 2, 116936DOI (Open Access)
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Impact of Microstructural Properties on Ionic and Heat Transport in NaSICON Glass CeramicsIn: Batteries & Supercaps, Jg. 8, 2025, Nr. 6, e202500093DOI (Open Access)
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Increasing the cycling stability of LLZO-based solid-state batteries with Li₃BO₃ as catholyteIn: Journal of Power Sources, Jg. 652, 2025, 237322DOI (Open Access)
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Blacklight sintering of garnet-based composite cathodesIn: Journal of the European Ceramic Society, Jg. 44, 2024, Nr. 5, S. 3039 – 3048DOI (Open Access)
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Chemical Epitaxy of Iridium Oxide on Tin Oxide Enhances Stability of Supported OER CatalystIn: Small, Jg. 20, 2024, Nr. 42, 2404118DOI (Open Access)
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Composite Separators with Very High Garnet Content for Solid-State BatteriesIn: ChemElectroChem, Jg. 11, 2024, Nr. 21, e202400323DOI (Open Access)
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Doping-Induced Surface and Grain Boundary Effects in Ni-Rich Layered Cathode MaterialsIn: Small, Jg. 20, 2024, Nr. 26, 2307678DOI (Open Access)
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Holistic view on cation interdiffusion during processing and operation of garnet all-solid-state batteriesIn: Energy Storage Materials, Jg. 71, 2024, 103662DOI (Open Access)
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Phase-field determination of NaSICON materials in the quaternary system Na₂O-P₂O₅-SiO₂-ZrO₂ : II. Glass-ceramics and the phantom of excessive vacancy formationIn: Next Energy, Jg. 4, 2024, 100130DOI (Open Access)
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Reducing the environmental footprint of solid-electrolytes : A green synthesis route for LATPIn: Green Chemistry, Jg. 26, 2024, Nr. 5, S. 2712 – 2720DOI (Open Access)
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The impact of lithium carbonate on tape cast LLZO battery separators : A balanced interplay between lithium loss and relithiationIn: Energy Storage Materials, Jg. 71, 2024, 103487DOI (Open Access)
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Waste minimization in all-solid-state battery production via re-lithiation of the garnet solid electrolyte LLZOIn: Journal of Power Sources, Jg. 609, 2024, 234709DOI (Open Access)
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Aqueous Processing of LiCoO₂-Li₆.₆La₃Zr₁.₆Ta₀.₄O₁₂ Composite Cathode for High-Capacity Solid-State Lithium BatteriesIn: ACS Sustainable Chemistry & Engineering, Jg. 11, 2023, Nr. 13, S. 5184 – 5194DOI (Open Access)
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Enabling High-Performance Hybrid Solid-State Batteries by Improving the Microstructure of Free-Standing LATP/LFP Composite CathodesIn: ACS Applied Materials & Interfaces, Jg. 16, 2023, Nr. 14, S. 17461 – 17473DOI (Open Access)
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Impact of Ni-Mn-Co-Al-Based Cathode Material Composition on the Sintering with Garnet Solid Electrolytes for All-Solid-State BatteriesIn: Chemistry of Materials, Jg. 35, 2023, Nr. 21, S. 8958 – 8968DOI (Open Access)
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Kinetics and Pore Formation of the Sodium Metal Anode on NASICON-Type Na₃.₄Zr₂Si₂.₄P₀.₆O₁₂ for Sodium Solid-State BatteriesIn: Advanced Energy Materials, Jg. 13, 2023, Nr. 5, 2202712DOI (Open Access)
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Microstructural parameters governing the mechanical stress and conductivity of all-solid-state lithium-ion-battery cathodesIn: Journal of Energy Storage, Jg. 68, 2023, 107784
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Modelling electro-chemically induced stresses in all-solid-state batteries : Screening electrolyte and cathode materials in composite cathodesIn: Journal of Materials Chemistry A: Materials for Energy and Sustainability, Jg. 11, 2023, Nr. 35, S. 18801 – 18810DOI (Open Access)
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The Riddle of Dark LLZO : Cobalt Diffusion in Garnet Separators of Solid-State Lithium BatteriesIn: Advanced Functional Materials, Jg. 33, 2023, Nr. 43, 2302939DOI (Open Access)
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Thermal Recovery of the Electrochemically Degraded LiCoO₂/Li₇La₃Zr₂O₁₂:Al,Ta Interface in an All-Solid-State Lithium BatteryIn: ACS Applied Materials & Interfaces, Jg. 15, 2023, Nr. 3, S. 4101 – 4112DOI (Open Access)
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All-Solid-State Li Batteries with NCM–Garnet-Based Composite Cathodes : The Impact of NCM Composition on Material CompatibilityIn: ACS Applied Energy Materials, Jg. 5, 2022, Nr. 6, S. 6913 – 6926DOI (Open Access)
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Boron in Ni-Rich NCM811 Cathode Material : Impact on Atomic and Microscale PropertiesIn: ACS Applied Energy Materials, Jg. 5, 2022, Nr. 1, S. 524 – 538
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Competing Effects in the Hydration Mechanism of a Garnet-Type Li₇La₃Zr₂O₁₂ElectrolyteIn: Chemistry of Materials, Jg. 34, 2022, Nr. 4, S. 1473 – 1480
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Conductivity enhancement of Al- and Ta-substituted Li₇La₃Zr₂O₇ solid electrolytes by nanoparticlesIn: Journal of the European Ceramic Society, Jg. 42, 2022, Nr. 3, S. 1033 – 1041
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Digestion processes and elemental analysis of oxide and sulfide solid electrolytesIn: Ionics, Jg. 28, 2022, Nr. 7, S. 3223 – 3231
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Enhancing the Dendrite Tolerance of NaSICON Electrolytes by Suppressing Edge Growth of Na Electrode along Ceramic SurfaceIn: Advanced Energy Materials, Jg. 12, 2022, Nr. 40, 2201680DOI (Open Access)
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Fabrication of thin sheets of the sodium superionic conductor Na₅YSi₄O₁₂ with tape castingIn: Chemical Engineering Journal, Jg. 435, 2022, Nr. Part 1, 134774
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Free standing dual phase cathode tapes : Scalable fabrication and microstructure optimization of garnet-based ceramic cathodesIn: Journal of Materials Chemistry A: Materials for Energy and Sustainability, Jg. 10, 2022, Nr. 5, S. 2320 – 2326DOI (Open Access)
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Increasing the performance of all-solid-state Li batteries by infiltration of Li-ion conducting polymer into LFP-LATP composite cathodeIn: Journal of Power Sources, Jg. 543, 2022, 231822
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NaSICON-type solid-state Li⁺ ion conductors with partial polyanionic substitution of phosphate with silicateIn: Open Ceramics, Jg. 12, 2022, 100313DOI (Open Access)
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Oxide ceramic electrolytes for all-solid-state lithium batteries : Cost-cutting cell design and environmental impactIn: Green Chemistry, Jg. 25, 2022, Nr. 1, S. 399 – 414DOI (Open Access)
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Rapid thermal processing of garnet-based composite cathodesIn: Journal of Power Sources, Jg. 545, 2022, 231872
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Rapid thermal sintering of screen-printed LiCoO₂ filmsIn: Thin Solid Films, Jg. 749, 2022, 139177
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Sintering of Li-garnets : Impact of Al-incorporation and powder-bed composition on microstructure and ionic conductivityIn: Open Ceramics, Jg. 10, 2022, 100268DOI (Open Access)
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Study of LiCoO₂/Li₇La₃Zr₂O₁₂:Ta Interface Degradation in All-Solid-State Lithium BatteriesIn: ACS Applied Materials & Interfaces, Jg. 14, 2022, Nr. 9, S. 11288 – 11299
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Survey of Zirconium-Containing NaSICON-type Solid-State Li+ Ion Conductors with the Aim of Increasing Reduction Stability by Partial Cation SubstitutionIn: Batteries & Supercaps, Jg. 5, 2022, Nr. 11, e202200327DOI (Open Access)
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The Impact of Lithium Tungstate on the Densification and Conductivity of Phosphate Lithium-Ion ConductorsIn: ChemElectroChem, Jg. 9, 2022, Nr. 5, e202101366DOI (Open Access)
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Carbonaceous Oxygen Evolution Reaction Catalysts : From Defect and Doping-Induced Activity over Hybrid Compounds to Ordered Framework StructuresIn: Small, 2021, S. e2007484DOI (Open Access)
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Co-Sintering Study of Na₀.₆₇[Ni₀.₁Fe₀.₁Mn₀.₈]O₂ and NaSICON Electrolyte–Paving the way to High Energy Density All-Solid-State BatteriesIn: Frontiers in Energy Research, Jg. 9, 2021, 689416DOI (Open Access)
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Controlling the lithium proton exchange of LLZO to enable reproducible processing and performance optimizationIn: Journal of Materials Chemistry A: Materials for Energy and Sustainability, Jg. 9, 2021, Nr. 8, S. 4831 – 4840DOI (Open Access)
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Highly conductive titania supported iridium oxide nanoparticles with low overall iridium density as OER catalyst for large-scale PEM electrolysisIn: Applied Materials Today, Jg. 24, 2021, 101134
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Investigation of Structural Changes of Cu(I) and Ag(I) Complexes Utilizing a Flexible, Yet Sterically Demanding Multidentate Phosphine Oxide LigandIn: Inorganic Chemistry, Jg. 60, 2021, Nr. 4, S. 2437 – 2445
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Journal of Power Sources Modelling electro-chemical induced stresses in all-solid-state batteries : Anisotropy effects in cathodes and cell design optimisationIn: Journal of Power Sources, Jg. 489, 2021, S. 229430
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Low temperature sintering of fully inorganic all-solid-state batteries : Impact of interfaces on full cell performanceIn: Journal of Power Sources, Jg. 482, 2021, S. 228905
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Overcoming the Challenges of Freestanding Tin Oxide-Based Composite Anodes to Achieve High Capacity and Increased Cycling StabilityIn: Advanced Functional Materials, Jg. 31, 2021, Nr. 43, 2106373DOI (Open Access)
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Physical Vapor Deposition in Solid-State Battery Development : From Materials to DevicesIn: Advanced Science, Jg. 8, 2021, Nr. 11, 2002044DOI (Open Access)
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Dendrite-tolerant all-solid-state sodium batteries and an important mechanism of metal self-diffusionIn: Journal of Power Sources, Jg. 476, 2020, S. 228666
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Efficient OER Catalyst with Low Ir Volume Density Obtained by Homogeneous Deposition of Iridium Oxide Nanoparticles on Macroporous Antimony-Doped Tin Oxide SupportIn: Advanced Functional Materials, Jg. 30, 2020, Nr. 1, 1906670DOI (Open Access)
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Freestanding LiFe₀.₂Mn₀.₈PO₄/rGO nanocomposites as high energy density fast charging cathodes for lithium-ion batteriesIn: Materials Today Energy, Jg. 16, 2020, S. 100416
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How photocorrosion can trick you : A detailed study on low-bandgap Li doped CuO photocathodes for solar hydrogen productionIn: Nanoscale, Jg. 12, 2020, Nr. 14, S. 7766 – 7775
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Nanocellulose-mediated Transition of Lithium-rich Pseudo-quaternary Metal Oxide Nanoparticles into Lithium Nickel Cobalt Manganese oxide (NCM) NanostructuresIn: ChemNanoMat, Jg. 6, 2020, Nr. 4, S. 618 – 628DOI (Open Access)
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Recycling Strategies for Ceramic All-Solid-State Batteries - Part I : Study on Possible Treatments in Contrast to Li-Ion Battery RecyclingIn: Metals, Jg. 10, 2020, Nr. 11, S. 1523DOI (Open Access)
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Sn-Doped Hematite for Photoelectrochemical Water Splitting : The Effect of Sn ConcentrationIn: Zeitschrift für Physikalische Chemie, Jg. 234, 2020, Nr. 4, S. 683 – 698DOI (Open Access)
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V(III)-Doped Nickel Oxide-Based Nanocatalysts for Electrochemical Water Splitting : Influence of Phase, Composition, and Doping on the Electrocatalytic ActivityIn: Chemistry of Materials, Jg. 32, 2020, Nr. 24, S. 10394 – 10406
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Carbon-templated conductive oxide supports for oxygen evolution catalysisIn: Nanoscale, Jg. 11, 2019, Nr. 30, S. 14285 – 14293
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Flexible freestanding MoS₂-based composite paper for energy conversion and storageIn: Beilstein Journal of Nanotechnology, Jg. 10, 2019, S. 1488 – 1496DOI (Open Access)
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Nanosized Lithium-Rich Cobalt Oxide Particles and Their Transformation to Lithium Cobalt Oxide Cathodes with Optimized High-Rate MorphologyIn: Chemistry of Materials, Jg. 31, 2019, Nr. 21, S. 8685 – 8694
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Tin Oxide Based Nanomaterials and Their Application as Anodes in Lithium‐Ion Batteries and BeyondIn: ChemSusChem, Jg. 12, 2019, Nr. 18, S. 4140 – 4159DOI (Open Access)
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Electron-Blocking and Oxygen Evolution Catalyst Layers by Plasma-Enhanced Atomic Layer Deposition of Nickel OxideIn: Advanced Materials Interfaces, Jg. 5, 2018, Nr. 16, 1701531
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Making Ultrafast High-Capacity Anodes for Lithium-Ion Batteries via Antimony Doping of Nanosized Tin Oxide/Graphene CompositesIn: Advanced Functional Materials, Jg. 28, 2018, Nr. 23, S. 1706529
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Oriented Films of Conjugated 2D Covalent Organic Frameworks as Photocathodes for Water SplittingIn: Journal of the American Chemical Society: JACS, Jg. 140, 2018, Nr. 6, S. 2085 – 2092DOI (Open Access)
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Why Tin-Doping Enhances the Efficiency of Hematite Photoanodes for Water Splitting : The Full PictureIn: Advanced Functional Materials, Jg. 28, 2018, Nr. 52, S. 1804472
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Nonagglomerated Iron Oxyhydroxide Akaganeite Nanocrystals Incorporating Extraordinary High Amounts of Different DopantsIn: Chemistry of Materials, Jg. 29, 2017, Nr. 17, S. 7223 – 7233
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10 - Ceramics for electrochemical storageIn: Advanced Ceramics for Energy Conversion and Storage / Guillon, Olivier (Hrsg.). Amsterdam: Elsevier, 2019, S. 549 – 709