Magnetic characterization and electrical field-induced switching of magnetite thin films synthesized by atomic layer deposition and subsequent thermal reduction
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- Type
- article
- Published
- 2014-11-11
- Cited by
- 18
- References
- 73
- Access
- Open access
- OpenAlex
- https://openalex.org/W2012239141
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:121331648
Keywords
Magnetite, Atomic layer deposition, Materials science, Layer (electronics), Characterization (materials science)
References
- Atomic Layer Deposition of Fe2O3 Using Ferrocene and Ozone
- Preparation and Magnetic Properties of Fe3O4 Nanostructures Grown by Electrodeposition
- Magnetocrystalline anisotropy in cobalt-substituted magnetite single crystals
- FORCinel: An improved algorithm for calculating first‐order reversal curve distributions using locally weighted regression smoothing
- Controlled introduction of diameter modulations in arrayed magnetic iron oxide nanotubes.
- Atomic layer deposition of ferromagnetic iron oxide films on three-dimensional substrates with tin oxide nanoparticles
- Atomic Layer Deposition of Iron Oxide Thin Films and Nanotubes using Ferrocene and Oxygen as Precursors
- Magnetocrystalline Anisotropy of Low Temperature Phase of Magnetite
- In-situ X-ray Diffraction study of Metal Induced Crystallization of amorphous silicon
- Chemical Vapor Growth of One‐dimensional Magnetite Nanostructures
- Synthesis, properties, and applications of magnetic iron oxide nanoparticles
- Effect of surface roughness on magnetic domain wall thickness, domain size, and coercivity
- Effect of stoichiometry changes on electrical properties of magnetite
- Multilayered Core/Shell Nanowires Displaying Two Distinct Magnetic Switching Events
- Calculation of the electrical conductivity above and below the Verwey transition in magnetite
- Magnetic and Electric Properties of Natural and Synthetic Single Crystals of Magnetite
- Stability and capping of magnetite ultra-thin films
- Ultrathin oxide films and interfaces for electronics and spintronics
- Magnetite: a search for the half-metallic state
- Interfacial transport properties between a strongly correlated transition metal oxide and a metal: Contact resistance in Fe3O4/M (M=Cu, Au, Pt) nanostructures
Cited by
- An economic passive sampling method to detect particulate pollutants using magnetic measurements.
- Epitaxial iron oxide nanocrystals with memory function grown on Si substrates
- Local Magnetic Suppression of Topological Surface States in Bi2Te3 Nanowires.
- Effect of Fe coating of nucleation sites on epitaxial growth of Fe oxide nanocrystals on Si substrates
- Magnetic and electrical characterization of nickel-rich NiFe thin films synthesized by atomic layer deposition and subsequent thermal reduction
- Symmetry breaking of the surface mediated quantum Hall Effect in Bi2Se3 nanoplates using Fe3O4 substrates
- Multiferroic heterostructures of Fe3O4/PMN-PT prepared by atomic layer deposition for enhanced interfacial magnetoelectric couplings
- Magnetic and Electrical Performance of Atomic Layer Deposited Iron Erbium Oxide Thin Films
- Resistive switching characteristics of isolated core-shell iron oxide/germanium nanocrystals epitaxially grown on Si substrates
- Resistive switching at the high quality metal/insulator interface in Fe3O4/SiO2/α-FeSi2/Si stacking structure
- Tuning the Magnetic Anisotropy of Fe3O4/Pt Heterostructures Fabricated by Atomic Layer Deposition With In~Situ Magnetic Field
- Studies of electrical and magnetic properties across the Verwey transition in epitaxial magnetite thin films
- Impact of metal silicide nanocrystals on the resistance ratio in resistive switching of epitaxial Fe3O4 films on Si substrates
- Magnetization Reversal Process and Magnetostatic Interactions in Fe56Co44/SiO2/Fe3O4 Core/Shell Ferromagnetic Nanowires with Non-Magnetic Interlayer
- Hollow Iron Oxide Nanospheres Obtained through a Combination of Atomic Layer Deposition and Electrospraying Technologies
- Atomic layer deposition of magnetic thin films: Basic processes, engineering efforts, and road forward
- Thermal annealing reduction of ALD hematite into magnetite nanotubes: Optimized magneto-structural properties for multifunctional applications
- Electrochemical methods assisted with ALD for the synthesis of nanowires
- Thermal annealing reduction of ALD hematite into magnetite nanotubes: optimized magneto-structural properties for multifunctional applications
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