We have measured and analyzed three different commercial magnetic nanoparticle systems, both multi-core and single-core in nature, with the particle (core) size ranging from 20 to 100 nm. Complementary analysis methods and same characterization techniques were carried out in different labs and the results are compared with each other. The presented results primarily focus on determining the particle size-both the hydrodynamic size and the individual magnetic core size-as well as magnetic and structural properties. The used analysis methods include transmission electron microscopy, static and dynamic magnetization measurements, and Mossbauer spectroscopy. We show that particle (hydrodynamic and core) size parameters can be determined from di...
International audienceThe magnetic properties of densely packed magnetic nanoparticles (MNP) assembl...
The properties of magnetic nanoparticles (MNPs) are key to the effectiveness of magnetic particle im...
A correct estimate of the size distribution (i.e., median diameter D and geometric standard deviatio...
Single-core iron-oxide nanoparticles with nominal core diameters of 14\ua0nm and 19\ua0nm were analy...
This study presents classification of different magnetic single- and multi-core particle systems usi...
This article belongs to the Special Issue "Magnetic Nanoparticles 2015".-- This is an open access ar...
In this study we investigate the magnetic behavior of magnetic multi-core particles and the differen...
Characterization of structural and magnetic properties of MNP ensembles is crucial in tailoring thei...
Biomedical applications of magnetic nanoparticles (MNP) fundamentally rely on the particles’ magneti...
Frequency mixing magnetic detection (FMMD) has been widely used in magnetic immunoassay measurement ...
International audienceWe report on the use of magnetic sedimentation as a means to determine the siz...
Magnetic particle imaging has been developed by the optimization of the tracer materials, excitation...
The fundamental understanding of nanoscale materials has been the focus of much scientific and techn...
A paraitre dans Journal of Applied Physics. http://jap.aip.org/The magnetic properties of densely pa...
The structural and magnetic properties of magnetic multi-core particles were determined by numerical...
International audienceThe magnetic properties of densely packed magnetic nanoparticles (MNP) assembl...
The properties of magnetic nanoparticles (MNPs) are key to the effectiveness of magnetic particle im...
A correct estimate of the size distribution (i.e., median diameter D and geometric standard deviatio...
Single-core iron-oxide nanoparticles with nominal core diameters of 14\ua0nm and 19\ua0nm were analy...
This study presents classification of different magnetic single- and multi-core particle systems usi...
This article belongs to the Special Issue "Magnetic Nanoparticles 2015".-- This is an open access ar...
In this study we investigate the magnetic behavior of magnetic multi-core particles and the differen...
Characterization of structural and magnetic properties of MNP ensembles is crucial in tailoring thei...
Biomedical applications of magnetic nanoparticles (MNP) fundamentally rely on the particles’ magneti...
Frequency mixing magnetic detection (FMMD) has been widely used in magnetic immunoassay measurement ...
International audienceWe report on the use of magnetic sedimentation as a means to determine the siz...
Magnetic particle imaging has been developed by the optimization of the tracer materials, excitation...
The fundamental understanding of nanoscale materials has been the focus of much scientific and techn...
A paraitre dans Journal of Applied Physics. http://jap.aip.org/The magnetic properties of densely pa...
The structural and magnetic properties of magnetic multi-core particles were determined by numerical...
International audienceThe magnetic properties of densely packed magnetic nanoparticles (MNP) assembl...
The properties of magnetic nanoparticles (MNPs) are key to the effectiveness of magnetic particle im...
A correct estimate of the size distribution (i.e., median diameter D and geometric standard deviatio...