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Fakultät für Physik, Experimentalphysik
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Lotharstraße 1
47057 Duisburg
47057 Duisburg
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ME 351
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Wissenschaftliche/r Mitarbeiter/in, Arbeitsgruppe Prof. Farle
Aktuelle Veranstaltungen
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SoSe 2025
- Physikalisches Praktikum für Fortgeschrittene (LA)
- Advanced Laboratory Course - Fortgeschrittenenpraktikum
- Einführungsveranstaltung zum Physikalischen Praktikum für Fortgeschrittene (LA)
- Seminar zum F-Praktikum (LA)
- Introductory Event for the Advanced Laboratory Course - Einführungsveranstaltung zum Fortgeschrittenenpraktikum
- Advanced Laboratory Course Seminar - Seminar zum F-Praktikum
Vergangene Veranstaltungen (max. 10)
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WiSe 2024
- Advanced Laboratory Course Seminar - Seminar zum F-Praktikum
- Introductory Event for the Advanced Laboratory Course
- Fortgeschrittenenpraktikum II
- Einführungsveranstaltung zum Physikalischen Praktikum für Fortgeschrittene (LA)
- Physikalisches Praktikum für Fortgeschrittene (LA)
- Advanced Laboratory Course - Fortgeschrittenenpraktikum
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SoSe 2024
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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Bottom-Up Synthesis of Metallic CoNi Nanoplatelets with Magnetic Vortex-Like Spin ConfigurationsIn: Small Science 2025 , in pressDOI (Open Access)
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Chemical conversion of MoAlB into Mo₂AlB₂ single crystals : Structure and electronic propertiesIn: Journal of Alloys and Compounds , Jg. 1028 2025, 180618DOI (Open Access)
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Genetically Controlled Iron Oxide Biomineralization in Encapsulin Nanocompartments for Magnetic Manipulation of a Mammalian Cell LineIn: Advanced Functional Materials , Jg. 35 2025, Nr. 13, 2418013 , in pressDOI (Open Access)
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Temperature-dependent magnetocrystalline anisotropy of Fe2AlB2 single crystalsIn: Physical Review Materials , Jg. 9 2025, Nr. 5, 054405DOI (Open Access)
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An Ultrasensitive Molecular Detector for Direct Sensing of Spin Currents at Room TemperatureIn: ACS Applied Materials & Interfaces , Jg. 16 2024, Nr. 40, S. 53315 – 54942
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Between carbide and nitride MAX phases : Sol-gel assisted synthesis and characterization of the carbonitride phase Cr₂GaC₁−ₓNₓIn: Journal of Materials Chemistry C: Materials for Optical and Electronic Devices , Jg. 12 2024, Nr. 21, S. 7552 – 7561
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Control of physical properties in BiFeO3 nanoparticles via Sm3+ and Co2+ ion dopingIn: Nanotechnology , Jg. 35 2024, Nr. 1, 015707DOI (Open Access)
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Electronic and thermal properties of Nb₂CCl₂ MXenesIn: Open Ceramics , Jg. 18 2024, 100579DOI (Open Access)
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Natürlich atomar geschichtet : MAX-Phasen sind ultrastabile Materialien mit einstellbaren FunktionenIn: Unikate: Berichte aus Forschung und Lehre 2024, Nr. 60: Magnete als Klimaretter : Materialien für eine emissionsfreie Zukunft, S. 48 – 55DOI, Online Volltext (Open Access)
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Semisynthetic ferritin-based nanoparticles with high magnetic anisotropy for spatial magnetic manipulation and inductive heatingIn: Nanoscale , Jg. 16 2024, Nr. 32, S. 15113 – 15127DOI (Open Access)
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Single crystal growth and physical characterization of the quaternary κ-phase Mo₃₍₂₊y₎Ga₃₍₁₋ₓ₎Fe₁₊₃₍₁₋y₊ₓ₎C₄In: Scripta Materialia , Jg. 251 2024, 116222
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Cation substitution and size confinement effects on structure, magnetism and magnetic hyperthermia of BiFeO₃-based multiferroic nanoparticles and hydrogelsIn: Journal of Alloys and Compounds , Jg. 969 2023, 172337
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Control of multiferroic features in BiFeO₃ nanoparticles by facile synthetic parametersIn: Ceramics International , Jg. 49 2023, Nr. 11, Part B, S. 18552 – 18564DOI (Open Access)
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Emergence of net magnetization by magnetic field biased diffusion in antiferromagnetic L10 NiMnIn: Physical Review B , Jg. 107 2023, Nr. 17, 174417DOI, Online Volltext (Open Access)
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Helical magnetic structure of epitaxial films of nanolaminated Mn2GaC MAX phaseIn: Physical Review B , Jg. 108 2023, Nr. 5, 054413
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Microwave-Assisted Synthesis of the New Solid-Solution (V₁₋ₓCrₓ)₂GaC (0 ≤ x ≤ 1), a Pauli Paramagnet Almost Matching the Stoner Criterion for x = 0.80In: Chemistry of Materials , Jg. 35 2023, Nr. 11, S. 4427 – 4434
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Non-collinear magnetic structure of the MAX phase Mn₂GaC epitaxial films inferred from zero-field NMR study (CE-5:L05)In: Ceramics International , Jg. 49 2023, Nr. 14, S. 24235 – 24238
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One pot, scalable synthesis of hydroxide derived ferrite magnetic nanoparticlesIn: Journal of Magnetism and Magnetic Materials , Jg. 582 2023, 170986DOI (Open Access)
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Rapid Sol–Gel Synthesis Approach for the Preparation of the Magnetocaloric Antiperovskite Mn3GaCIn: Chemistry of Materials , Jg. 35 2023, Nr. 21, S. 9175 – 9181
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Reactive single-step hot-pressing and magnetocaloric performance of polycrystalline Fe₂Al₁.₁₅−ₓB₂GeₓGaₓ (x = 0, 0.05) MAB phasesIn: Journal of Applied Physics , Jg. 133 2023, Nr. 17, 173903DOI, Online Volltext (Open Access)
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Synthesis, Characterization, and Modeling of a Chemically Ordered Quaternary Boride, Mo4MnSiB2In: Crystal Growth & Design , Jg. 23 2023, Nr. 5, S. 3258 – 3263DOI (Open Access)
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Toward the Separation of Different Heating Mechanisms in Magnetic Particle HyperthermiaIn: ACS Omega , Jg. 8 2023, Nr. 14, S. 12955 – 12967DOI, Online Volltext (Open Access)
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Cobalt Ferrite Nanoparticles for Tumor Therapy : Effective Heating versus Possible ToxicityIn: Nanomaterials , Jg. 12 2022, Nr. 1, 38DOI, Online Volltext (Open Access)
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Cr₃GeN: A Nitride with Orthorhombic Antiperovskite StructureIn: Chemistry of Materials , Jg. 34 2022, Nr. 23, S. 10304 – 10310
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From MAX Phase Carbides to Nitrides : Synthesis of V2GaC, V2GaN, and the Carbonitride V2GaC1-XNXIn: Inorganic Chemistry , Jg. 61 2022, Nr. 28, S. 10634 – 10641DOI (Open Access)
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Ion Implantation Enhanced Exfoliation Efficiency of V₂AlC Single Crystals : Implications for Large V₂CT zNanosheet ProductionIn: ACS Applied Nano Materials , Jg. 5 2022, Nr. 6, S. 8029 – 8037DOI (Open Access)
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Magnetic phase diagram of (Mo₂/₃RE₁/₃)₂AlC, RE=Tb and Dy, studied by magnetization, specific heat, and neutron diffraction analysisIn: Journal of Physics: Condensed Matter , Jg. 34 2022, Nr. 21DOI (Open Access)
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Scalable, inexpensive, one-pot, facile synthesis of crystalline two-dimensional birnessite flakesIn: Matter , Jg. 5 2022, Nr. 7, S. 2365 – 2381DOI (Open Access)
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2D Molybdenum Carbide MXenes for Enhanced Selective Detection of Humidity in AirIn: Advanced Materials , Jg. 33 2021, Nr. 52, 2104878DOI (Open Access)
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Beyond Solid Solution High-Entropy Alloys : Tailoring Magnetic Properties via Spinodal DecompositionIn: Advanced Functional Materials , Jg. 31 2021, Nr. 7, 2007668DOI (Open Access)
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Formation of Co–Au Core–Shell Nanoparticles with Thin Gold Shells and Soft Magnetic ε-Cobalt Cores Ruled by Thermodynamics and KineticsIn: Journal of Physical Chemistry C: Nanomaterials and Interfaces , Jg. 125 2021, Nr. 17, S. 9534 – 9549
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Limited Elemental Mixing in Nanoparticles Generated by Ultrashort Pulse Laser Ablation of AgCu Bilayer Thin Films in a Liquid Environment : Atomistic Modeling and ExperimentsIn: Journal of Physical Chemistry C: Nanomaterials and Interfaces , Jg. 125 2021, Nr. 3, S. 2132 – 2155DOI (Open Access)
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Long-Range Ordering Effects in Magnetic NanoparticlesIn: ACS Applied Materials & Interfaces , Jg. 13 2021, Nr. 18, S. 21602 – 21612
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Magnetic Nanoparticles as a Tool for Remote DNA Manipulations at a Single-Molecule LevelIn: ACS Applied Materials & Interfaces , Jg. 13 2021, Nr. 12, S. 14458 – 14469
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Magnetic nanoprobes for spatio-mechanical manipulation in single cellsIn: Nanomaterials , Jg. 11 2021, Nr. 9, 2267DOI (Open Access)
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Optical and magneto-optical properties of epitaxial Mn₂GaC MAX phase thin filmIn: Journal of Magnetism and Magnetic Materials , Jg. 528 2021, S. 167803
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Phase Stability of Nanolaminated Epitaxial (Cr₁₋ ₓFeₓ)₂AlC MAX Phase Thin Films on MgO(111) and Al₂O₃(0001) for Use as Conductive CoatingsIn: ACS Applied Nano Materials , Jg. 4 2021, Nr. 2, S. 13761 – 13770DOI (Open Access)
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Pulsed laser deposition of epitaxial Cr2AlC MAX phase thin films on MgO(111) and Al2O3(0001)In: Materials Research Letters , Jg. 9 2021, Nr. 8, S. 343 – 349DOI, Online Volltext (Open Access)
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Room temperature synthesized solid solution AuFe nanoparticles and their transformation into Au/Fe Janus nanocrystalsIn: Nanoscale , Jg. 13 2021, Nr. 23, S. 10402 – 10413DOI (Open Access)
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Structural, electronic paramagnetic resonance and magnetic properties of praseodymium-doped rare earth CeO₂ semiconductorsIn: Ceramics International , Jg. 47 2021, Nr. 15, S. 20768 – 20780
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Structure determination and magnetic properties of the Mn-doped MAX phase Cr2GaCIn: Materials Chemistry Frontiers , Jg. 5 2021, Nr. 16, S. 6082 – 6091
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Synthesis, phase purification and magnetic characterization of the (Cr1−x, Mnx)2AlC MAX-phaseIn: Journal of Materials Chemistry C: Materials for Optical and Electronic Devices , Jg. 9 2021, Nr. 46, S. 16516 – 16522DOI (Open Access)
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The effect of the composition and pressure on the phase stability and electronic, magnetic, and elastic properties of M₂AX (M = Mn, Fe; A = Al, Ga, Si, Ge; X = C, N) phasesIn: Physical Chemistry, Chemical Physics (PCCP) , Jg. 23 2021, Nr. 46, S. 26376 – 26384
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Magnetic and Electronic Properties of Highly Mn-Doped β-NaGdF₄and β-NaEuF₄Nanoparticles with a Narrow Size DistributionIn: Journal of Physical Chemistry C: Nanomaterials and Interfaces , Jg. 124 2020, Nr. 33, S. 18194 – 18202
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Manipulation of the size and phase composition of yttrium iron garnet nanoparticles by pulsed laser post-processing in liquidIn: Molecules: A Journal of Synthetic Chemistry and Natural Product Chemistry , Jg. 25 2020, Nr. 8, S. 25081869DOI (Open Access)
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Ptychographic imaging and micromagnetic modeling of thermal melting of nanoscale magnetic domains in antidot latticesIn: AIP Advances , Jg. 10 2020, Nr. 12, S. 125122DOI (Open Access)
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Temperature-controlled magnetic nanoparticles hyperthermia inhibits primary tumor growth and metastases disseminationIn: Nanomedicine: Nanotechnology, Biology, and Medicine , Jg. 25 2020, S. 102171
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Unravelling the nucleation, growth, and faceting of magnetite-gold nanohybridsIn: Journal of Materials Chemistry B: Materials for Biology and Medicine , Jg. 8 2020, Nr. 17, S. 3886 – 3895
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Atomically Layered and Ordered Rare-Earth i-MAX Phases : a New Class of Magnetic Quaternary CompoundsIn: Chemistry of Materials , Jg. 31 2019, Nr. 7, S. 2476 – 2485DOI, Online Volltext (Open Access)
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Direct measurement of anisotropic conductivity in a nanolaminated (Mn₀.₅Cr₀.₅)₂GaC thin filmIn: Applied Physics Letters (APL) , Jg. 115 2019, Nr. 9DOI, Online Volltext (Open Access)
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Long-term stability and thickness dependence of magnetism in thin (Cr₀.₅Mn₀.₅)₂GaC MAX phase filmsIn: Materials Research Letters , Jg. 7 2019, Nr. 4, S. 159 – 163DOI, Online Volltext (Open Access)
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Shell-ferromagnetism and decomposition in off-stoichiometric Ni₅₀Mn₅₀₋ₓSbₓ HeuslersIn: Journal of Applied Physics , Jg. 125 2019, Nr. 4, S. 043902DOI (Open Access)
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Sol-gel based synthesis and enhanced processability of MAX phase Cr₂GaCIn: Journal of Materials Chemistry C: Materials for Optical and Electronic Devices , Jg. 7 2019, Nr. 20, S. 6034 – 6040DOI (Open Access)
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Genetically Controlled Lysosomal Entrapment of Superparamagnetic Ferritin for Multimodal and Multiscale Imaging and Actuation with Low Tissue AttenuationIn: Advanced Functional Materials , Jg. 28 2018, Nr. 19 , Art. Nr. 1706793
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Large uniaxial magnetostriction with sign inversion at the first order phase transition in the nanolaminated Mn2GaC MAX phaseIn: Scientific Reports , Jg. 8 2018, S. 2637DOI (Open Access)
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Magnetic Fe@FeOx, Fe@C and α-Fe₂O₃ Single-Crystal Nanoblends Synthesized by Femtosecond Laser Ablation of Fe in Acetone.In: Nanomaterials , Jg. 8 2018, Nr. 8, S. 631DOI (Open Access)
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Magnetic properties and structural characterization of layered (Cr0.5Mn0.5)2AuC synthesized by thermally induced substitutional reaction in (Cr0.5Mn0.5)2GaCIn: APL Materials , Jg. 6 2018, Nr. 2, S. 026104DOI (Open Access)
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Magnetite-Gold nanohybrids as ideal all-in-one platforms for theranosticsIn: Scientific Reports , Jg. 8 2018, S. 11295DOI, Online Volltext (Open Access)
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Size-selected Fe₃O₄–Au hybrid nanoparticles for improved magnetism-based theranosticsIn: Beilstein Journal of Nanotechnology , Jg. 9 2018, S. 2684 – 2699DOI (Open Access)
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Structural, magnetic and electrical transport properties of non-conventionally prepared MAX phases V₂AlC and (V/Mn)₂AlCIn: Materials Chemistry Frontiers , Jg. 2 2018, Nr. 3, S. 483 – 490
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Controlling the conductivity of TiIn: RSC Advances , Jg. 7 2017, Nr. 22, S. 13097 – 13103DOI (Open Access)
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Doubling of the magnetic energy product in ferromagnetic nanowires at ambient temperature by capping their tips with an antiferromagnetIn: Nanotechnology , Jg. 28 2017, Nr. 29 , art. no. 295402, S. 1-7
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Enhanced spin-orbit coupling in tetragonally strained Fe-Co-B filmsIn: Journal of Physics: Condensed Matter , Jg. 29 2017, Nr. 27, 275802DOI, Online Volltext (Open Access)
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Formation Mechanism of Laser-Synthesized Iron–Manganese Alloy Nanoparticles, Manganese Oxide Nanosheets and NanofibersIn: Journal of Physics D: Applied Physics , Jg. 34 2017, Nr. 3, S. 1600225
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Magnetic properties of nanolaminated (Mo0.5Mn0.5)2GaC MAX phaseIn: Journal of Applied Physics , Jg. 121 2017, Nr. 16, S. 163904
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Shell-ferromagnetic precipitation in martensitic off-stoichiometric Ni-Mn-In Heusler alloys produced by temper-annealing under magnetic fieldIn: Acta Materialia , Jg. 127 2017, S. 117 – 123
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Ultrasmall yttrium iron garnet nanoparticles with high coercivity at low temperature synthesized by laser ablation and fragmentation of pressed powdersIn: ChemPhysChem , Jg. 18 2017, Nr. 9, Special Issue: Colloids with Lasers, S. 1125 – 1132
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A versatile large-scale and green process for synthesizing magnetic nanoparticles with tunable magnetic hyperthermia featuresIn: RSC Advances , Jg. 6 2016, Nr. 58, S. 53107 – 53117
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Arrangement at the nanoscale : Effect on magnetic particle hyperthermiaIn: Scientific Reports , Jg. 6 2016, S. 37934DOI (Open Access)
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Combined first-order reversal curve and x-ray microscopy investigation of magnetization reversal mechanisms in hexagonal antidot latticesIn: Physical Review B , Jg. 93 2016, Nr. 1, S. 014406DOI (Open Access)
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Enhanced magnetocrystalline anisotropy of Fe30Co70 nanowires by Cu additives and annealingIn: Nanotechnology , Jg. 27 2016, Nr. 36, S. 365704
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Geometric control of the magnetization reversal in antidot lattices with perpendicular magnetic anisotropyIn: Physical Review B , Jg. 93 2016, Nr. 10, S. 104421DOI (Open Access)
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Magnetic switching of nanoscale antidot latticesIn: Beilstein Journal of Nanotechnology , Jg. 7 2016, Nr. 1, S. 733 – 750DOI (Open Access)
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Optimum nanoscale design in ferrite based nanoparticles for magnetic particle hyperthermiaIn: RSC Advances , Jg. 77 2016, Nr. 6, S. 72918 – 72925
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Orientation of FePt nanoparticles on top of a-SiO2/Si(001), MgO(001) and sapphire(0001) : effect of thermal treatments and influence of substrate and particle sizeIn: Beilstein Journal of Nanotechnology , Jg. 7 2016, S. 591 – 604DOI (Open Access)
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Solvent-surface interactions control the phase structure in laser-generated iron-gold core-shell nanoparticlesIn: Scientific Reports , Jg. 6 2016, S. 23352DOI (Open Access)
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Thin film synthesis and characterization of a chemically ordered magnetic nanolaminate (V,Mn)3GaC2In: APL Materials , Jg. 4 2016, Nr. 8, S. 086109DOI (Open Access)
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Tuning the magnetism of ferrite nanoparticlesIn: Journal of Magnetism and Magnetic Materials , Jg. 415 2016, S. 20 – 23
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Magnetic Anisotropy in the (Cr0.5Mn0.5)2GaC MAX PhaseIn: APL Materials , Jg. 3 2015, Nr. 3, S. 156 – 160DOI (Open Access)
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Magnetic hardening of Fe30Co70 nanowiresIn: Nanotechnology , Jg. 26 2015, Nr. 41 , art. no. 415704
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Perpendicular magnetisation from in-plane fields in nano-scaled antidot latticesIn: Nanotechnology , Jg. 26 2015, Nr. 22DOI (Open Access)
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Role of developing L10 chemical order on the (0 0 1)-texture formation of (Fe1 − xCux)Pt films grown on amorphous substratesIn: Journal of Physics D: Applied Physics , Jg. 48 2015, Nr. 8, S. 085001
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Solid solution magnetic FeNi nanostrand–polymer composites by connecting-coarsening assemblyIn: Journal of Materials Chemistry C: Materials for Optical and Electronic Devices , Jg. 3 2015, Nr. 41, S. 10699 – 10704DOI (Open Access)
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Splenic red pulp macrophages are intrinsically superparamagnetic and contaminate magnetic cell isolatesIn: Scientific Reports , Jg. 5 2015, S. 12940DOI (Open Access)
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Structure-correlated exchange anisotropy in oxidized Co80Ni20 nanorodsIn: Chemistry of Materials , Jg. 27 2015, Nr. 11, S. 4015 – 4022
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Bolometer detection of magnetic resonances in nanoscaled objectsIn: Nanotechnology , Jg. 25 2014, Nr. 42, S. 425302
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Growth modes and epitaxy of FeAl thin films on a-cut sapphire prepared by pulsed laser and ion beam assisted depositionIn: Journal of Applied Physics , Jg. 115 2014, Nr. 2
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Single core–shell nanoparticle probes for non-invasive magnetic force microscopyIn: Nanotechnology , Jg. 25 2014, Nr. 25, S. 255501
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Electronic structure and soft-X-ray-induced photoreduction studies of iron-based magnetic polyoxometalates of type {(M)M5}12FeIII30 (M = MoVI, WVI)In: Dalton Transactions , Jg. 42 2013, S. 7924 – 7935
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Exchange bias of Ni nanoparticles embedded in an antiferromagnetic IrMn matrixIn: Nanotechnology , Jg. 24 2013, Nr. 45, S. 455702
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Extending the 3ω method : Thermal conductivity characterization of thin filmsIn: Review of Scientific Instruments , Jg. 84 2013, Nr. 8, S. 084904
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Geometry-induced spin-ice structures prepared by self-organization on the nanoscaleIn: Nanotechnology , Jg. 24 2013, Nr. 5, S. 055305
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Structural and thermoelectric properties of TMGa3 (TM = Fe, Co) thin filmsIn: Beilstein Journal of Nanotechnology , Jg. 4 2013, S. 461 – 466DOI (Open Access)
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Super spin-glass state and exchange bias in Fe/CoO hybrid nanostructuresIn: Nanotechnology , Jg. 24 2013, Nr. 15, S. 155703
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Switching modes in easy and hard axis magnetic reversal in a self-assembled antidot arrayIn: Nanotechnology , Jg. 24 2013, Nr. 46, S. 465709
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Formation of Highly Ordered Alloy Nanoparticles Based on Precursor-Filled Latex SpheresIn: Chemistry of Materials , Jg. 24 2012, Nr. 6, S. 1048 – 1054
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Towards quantitative magnetic force microscopy : theory and experimentIn: New Journal of Physics (NJP) , Jg. 14 2012, S. 043044DOI (Open Access)
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Tuning the properties of magnetic thin films by interaction with periodic nanostructuresIn: Beilstein Journal of Nanotechnology , Jg. 3 2012, S. 831 – 842DOI (Open Access)
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Effect of large mechanical stress on the magnetic properties of embedded Fe nanoparticlesIn: Beilstein Journal of Nanotechnology , Jg. 2 2011, S. 268 – 275DOI (Open Access)
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Magnetic Ground-State and Systematic X-ray Photoreduction Studies of an Iron-Based Star-Shaped ComplexIn: The Journal of Physical Chemistry Letters , Jg. 2 2011, Nr. 13, S. 1491 – 1496
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Nanoscaled alloy formation from self-assembled elemental Co nanoparticles on top of Pt filmsIn: Beilstein Journal of Nanotechnology , Jg. 2 2011, S. 473 – 485DOI (Open Access)
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Precise Chemical, Electronic, and Magnetic Structure of Binuclear Complexes Studied by Means of X-ray Spectroscopies and Theoretical MethodsIn: Journal of Physical Chemistry C: Nanomaterials and Interfaces , Jg. 115 2011, Nr. 50, S. 25030 – 25039
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Thermally driven solid-phase epitaxy of laser-ablated amorphous AlFe films on (0001)-oriented sapphire single crystalsIn: Applied Physics A: Materials Science and Processing , Jg. 102 2011, Nr. 3, S. 725 – 730
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Dissolution kinetics of Si into Ge (111) substrate on the nanoscaleIn: Thin Solid Films , Jg. 519 2010, Nr. 2, S. 952 – 955
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Fabrication of two-dimensional Au@FePt core-shell nanoparticle arrays by photochemical metal depositionIn: Applied Physics Letters (APL) , Jg. 96 2010, Nr. 18, S. 183111
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Identification of magnetic properties of few nm sized FePt crystalline particles by characterizing the intrinsic atom order using aberration corrected S/TEMIn: Ultramicroscopy , Jg. 110 2010, Nr. 7, S. 820 – 825
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Monodispersed NiO nanoflowers with anomalous magnetic behaviorIn: Nanotechnology , Jg. 21 2010, Nr. 42, S. 425702
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Narrowly Size Distributed Zinc-Containing Poly(acrylamide) Latexes via Inverse Miniemulsion PolymerizationIn: Macromolecules , Jg. 43 2010, Nr. 7, S. 3294 – 3305
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Planar Au/TiO2 Model Catalysts : Fabrication, Characterization and Catalytic ActivityIn: ChemPhysChem , Jg. 11 2010, Nr. 7, S. 1430 – 1437
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Preparation and characterization of supported magnetic nanoparticles prepared by reverse micellesIn: Beilstein Journal of Nanotechnology , Jg. 2 2010, S. 24 – 47DOI (Open Access)
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Preparation, properties and applications of magnetic nanoparticlesIn: Beilstein Journal of Nanotechnology , Jg. 1 2010, S. 21 – 23DOI (Open Access)
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Magnetic moment of Fe in oxide-free FePt nanoparticlesIn: Physical Review B: Condensed matter and materials physics , Jg. 76 2007, Nr. 6, S. 064414-1 – 064414-7
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Enhanced obital magnetism in Fe50Pt50 nanoparticlesIn: Physical Review Letters , Jg. 97 2006, S. 117201-1 – 117201-4
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Effect of an oxidic overlayer on the magnetism of Co nanoparticles.In: Phase Transitions , Jg. 78 2005, Nr. 1-3, S. 85 – 104
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From Colloidal Co/Co Core-Shell Nanoparticles to Arrays of Metallic Nanomagnets: Surface Modification by Plasma Processing and its Impact on Magnetic PropertiesIn: ChemPhysChem , Jg. 6 2005, Nr. 12, S. 2522 – 2526
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Magnetic response of nanostructured systems : A ferromagnetic resonance investigationIn: Journal of Vacuum Science and Technology A: Vacuum, Surfaces, and Films , Jg. 23 2005, Nr. 4, S. 796 – 803
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Using hysteresis behavior to determine the anisotropy and interactions in complex self-assembled Co metallic nanoparticle systems.In: Journal of Mganetism and Magnetic Materials. , Jg. 290-291 2005, Nr. 1, S. 161 – 164
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Composition-dependent ratio of orbital-to-spin magnetic moment in structurally disordered FexPt1-x nanoparticlesIn: Physical Review B: Condensed matter and materials physics , Jg. 69 2004, S. 054417-01 – 054417-05
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Effective exchange interaction in a quasi-two-dimensional self-assembled nanoparticle arrayIn: Physical Review B: Condensed matter and materials physics , Jg. 70 2004, Nr. 21, S. 1 – 6
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Local structure of monodisperse Co nanoparticles
International Conference on Magnetism (ICM 2003) ; 27 July - 1 August 2003, Rome, Italy,In: Journal of Magnetism and Magnetic Materials , Jg. 272-276 2004, Nr. Supplement, S. E1207 – E1209 -
Temperature dependence of exchange anistropy in monodisperse cobalt nanoparticles with a cobalt oxide shell.In: Journal of Magnetism and Magnetic Materials , Jg. 272 - 276 2004, S. 1508 – 1509
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Ratio of orbital-to-spin magnetic moment in Co core-shell nanoparticles.In: Physical Review B: Condensed matter and materials physics , Jg. 68 2003, S. 064424
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Magnetic properties of arrays of interacting Co nanocrystals.In: Journal of Magnetism and Magnetic Materials , Jg. 240 2002, Nr. 1-3, S. 40 – 43
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Magnetically directed self-assembly of submicron shperes with a Fe3O4 nanoparticle shell.In: Journal of Magnetism and Magnetic Materials , Jg. 240 2002, S. 44 – 46
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Ferromagnetic resonance of monodisperse Co particlesIn: Journal of Vacuum Science and Technology A: Vacuum, Surfaces, and Films , Jg. 19 2001, Nr. 4, S. 1773 – 1776DOI (Open Access)
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Magnetization and Magnetic Anisotropy of Co/W Multilayers.In: Physica Status Solidi B , Jg. 225 2001, S. 449 – 457
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Combined FORC and X-ray microscopy study of magnetisation reversal in antidot latticesIn: INTERMAG 2015 - IEEE International Magnetics Conference: Vol. 1 / 2015 IEEE International Magnetics Conference ; INTERMAG 2015 ; Beijing, China, 11 - 15 May 2015 2015, S. 388
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Reactive single-step hot-pressing and magnetocaloric performance of polycrystalline Fe₂Al₁.₁₅-xB₂GeₓGaₓ (x = 0, 0.05) MAB phasesIn: Proceedings of the IEEE International Magnetic Conference - Short Papers (INTERMAG Short Papers) / IEEE International Magnetic Conference; 15-19 May 2023; Sendai, Japan / The Institute of Electrical and Electronics Engineers (Hrsg.) 2023
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Interface magnetism in Co CoO core shell nanoparticles and their transformation to pure metallic nanoparticlesDuisburg 2005
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Genetically controlled iron-oxide nanocompartments in mammalian cells basedon encapsulin proteins
The Biochemistry Global Summit, 25th IUBMB Congress, 46th FEBS Congress, 15th PABMB Congress ; July 9–14, 2022, Lisbon,In: FEBS Open Bio , Jg. 12 2022, Nr. Supplement 1: The Biochemistry Global Summit, 25th IUBMB Congress, 46th FEBS Congress, 15th PABMB Congress, July 9–14, 2022, Lisbon, Portugal, S. 251DOI (Open Access)