Applied Physics Letters · 2005 · 142 citations · 27 references
NanoparticlesMagnetic PropertiesEngineeringNanoclusterMetal NanoparticlesIron Oxide NanoparticlesMagnetic ResonanceChemistryMagnetic MaterialsMagnetismNanoscale ChemistryMaterials FabricationCoreaushell NanoparticlesMaterials ScienceNanoparticle CharacterizationNanotechnologyNanomanufacturingFeco NanoparticlesMagnetic MaterialPowder SynthesisNanomaterialsNatural SciencesNanofabricationNanocompositesNanomagnetism
We developed a physical technique combining an on-line sputtering/evaporation process with an integrated nanocluster deposition process to prepare core-shell-type nanoparticles. High-magnetic-moment (Fe60Co40)coreAushell and (Fe60Co40)coreAgshell superparamagnetic nanoparticles with controllable particle size of 10–20 nm and Au∕Ag shell thickness of 1–3 nm were prepared by using this method. Au shell is not only functional for the potential biocompatibility but also the key to prevent the oxidation of FeCo nanoparticles. Saturation magnetization of (Fe60Co40)coreAushell nanoparticles was found three times higher than that of iron oxide nanoparticles. This technique enables us to control independently the dimensions of core and shell and select individually materials for core and shell for any other core-shell-type nanoparticles.
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Magnetic nanoparticle design for medical diagnosis and therapy
Stéphane Mornet, S�bastien Vasseur, Fabien Grasset et al. · Journal of Materials Chemistry · 2004 · 1.7K citations · Full text
Beating the superparamagnetic limit with exchange bias
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