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Validity of the Néel-Arrhenius model for highly anisotropic CoxFe3−xO4 nanoparticles
American Institute of Physics | 2015| -
Validity of the N\'{e}el-Arrhenius model for highly anisotropic Co_xFe_{3-x}O_4 nanoparticles
Free accessArXiv | 2015| -
Magnetic nanoparticles for magnetically guided therapies against neural diseases
Online Contents | 2014| -
Cell death induced by the application of alternating magnetic fields to nanoparticle-loaded dendritic cells
Free accessArXiv | 2010| -
Magnetic properties and energy absorption of CoFe2O4 nanoparticles for magnetic hyperthermia
Free accessArXiv | 2011| -
Validity of the Néel-Arrhenius model for highly anisotropic Co~xFe~3~-~xO~4 nanoparticles (11 pages)
British Library Online Contents | 2015| -
Size dependence of the magnetic relaxation and specific power absorption in iron oxide nanoparticles
Online Contents | 2013| -
Size dependence of the magnetic relaxation and specific power absorption in iron oxide nanoparticles
Springer Verlag | 2013| -
Size dependence of the magnetic relaxation and specific power absorption in iron oxide nanoparticles
British Library Online Contents | 2013| -
The orientation of the neuronal growth process can be directed via magnetic nanoparticles under an applied magnetic field
British Library Online Contents | 2014| -
Novel multifunctional 90Y-labelled albumin magnetic microspheres for cancer therapy
Free accessArXiv | 2012| -
Magnetic nanoparticles for power absorption: Optimizing size, shape and magnetic properties
British Library Online Contents | 2009|
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