985 citations · 1.4k across the 4 of their papers we have counts for
6 papers
An air-cooled Litz wire coil for measuring the high frequency hysteresis loops of magnetic samples : a useful setup for magnetic hyperthermia applications
V. Connord, B. Mehdaoui, R. P. Tan +2
A low-cost and simple setup for measuring the high-frequency hysteresis loops of magnetic samples is described. An AMF in the range 6-100 kHz with amplitude up to 80 mT is produced…
Increase of magnetic hyperthermia efficiency due to dipolar interactions in low anisotropy magnetic nanoparticles : theoretical and experimental results
B. Mehdaoui, R. P. Tan, A. Meffre +4
When magnetic nanoparticles (MNPs) are single-domain and magnetically independent, their magnetic properties and the conditions to optimize their efficiency in magnetic hyperthermi…
Influence of a transverse static magnetic field on the magnetic hyperthermia properties and high-frequency hysteresis loops of ferromagnetic FeCo nanoparticles
B. Mehdaoui, J. Carrey, M. Stadler +5
The influence of a transverse static magnetic field on the magnetic hyperthermia properties is studied on a system of large-losses ferromagnetic FeCo nanoparticles. The simultaneou…
Simple models for dynamic hysteresis loops calculation: Application to hyperthermia optimization
J. Carrey, B. Mehdaoui, M. Respaud
To optimize the heating properties of magnetic nanoparticles (MNPs) in magnetic hyperthermia applications, it is necessary to calculate the area of their hysteresis loops in an alt…
Magnetic anisotropy determination and magnetic hyperthermia properties of small Fe nanoparticles in the superparamagnetic regime
B. Mehdaoui, A. Meffre, L. -M. Lacroix +5
We report on the magnetic and hyperthermia properties of iron nanoparticles synthesized by organometallic chemistry. They are 5.5 nm in diameter and display a saturation magnetizat…
Large specific absorption rates in the magnetic hyperthermia properties of metallic iron nanocubes
B. Mehdaoui, A. Meffre, L. -M. Lacroix +5
We report on the magnetic hyperthermia properties of chemically synthesized ferromagnetic 11 and 16 nm Fe(0) nanoparticles of cubic shape displaying the saturation magnetization of…