Biomedical nanomagnetic carriers are getting a higher impact in therapy and diagnosis schemes while their constraints and prerequisites are more and more successfully confronted. Such particles should possess a well-defined size with minimum agglomeration and they should be synthesized in a facile and reproducible high-yield way together with a controllable response to an applied static or dynamic field tailored for the specific application. Here, we attempt to enhance the heating efficiency in magnetic particle hyperthermia treatment through the proper adjustment of the core–shell morphology in ferrite particles, by controlling exchange and dipolar magnetic interactions at the nanoscale. Thus, core–shell nanoparticles with mutual coupling ...
We report a systematic study of the effects of core and shell size on the magnetic properties and he...
Diseased cell treatment by heating with magnetic nanoparticles is hindered by their required high co...
We report a systematic study of the effects of core and shell size on the magnetic properties and he...
Magnetic nanoparticles can generate heat when exposed to an alternating magnetic field. Their heatin...
Magnetic particle hyperthermia, in which colloidal nanostructures are exposed to an alternating magn...
We report a simple and effective way to control the heat generation of a magnetic colloid under alte...
This study provides a guide to maximizing hysteretic loss by matching the design and synthesis of su...
Magnetic particle hyperthermia, in which colloidal nanostructures are exposed to an alternating magn...
This study provides a guide to maximizing hysteretic loss by matching the design and synthesis of su...
In this dissertation, I present the results of a systematic study on novel multifunctional nanostruc...
Magnetite (Fe3O4) particles with a diameter around 10 nm have a very low coercivity (Hc) and relativ...
Magnetite (Fe3O4) particles with a diameter around 10 nm have a very low coercivity (Hc) and relativ...
In this dissertation, I present the results of a systematic study on novel multifunctional nanostruc...
Magnetite (Fe3O4) particles with a diameter around 10 nm have a very low coercivity (Hc) and relativ...
In this dissertation, I present the results of a systematic study on novel multifunctional nanostruc...
We report a systematic study of the effects of core and shell size on the magnetic properties and he...
Diseased cell treatment by heating with magnetic nanoparticles is hindered by their required high co...
We report a systematic study of the effects of core and shell size on the magnetic properties and he...
Magnetic nanoparticles can generate heat when exposed to an alternating magnetic field. Their heatin...
Magnetic particle hyperthermia, in which colloidal nanostructures are exposed to an alternating magn...
We report a simple and effective way to control the heat generation of a magnetic colloid under alte...
This study provides a guide to maximizing hysteretic loss by matching the design and synthesis of su...
Magnetic particle hyperthermia, in which colloidal nanostructures are exposed to an alternating magn...
This study provides a guide to maximizing hysteretic loss by matching the design and synthesis of su...
In this dissertation, I present the results of a systematic study on novel multifunctional nanostruc...
Magnetite (Fe3O4) particles with a diameter around 10 nm have a very low coercivity (Hc) and relativ...
Magnetite (Fe3O4) particles with a diameter around 10 nm have a very low coercivity (Hc) and relativ...
In this dissertation, I present the results of a systematic study on novel multifunctional nanostruc...
Magnetite (Fe3O4) particles with a diameter around 10 nm have a very low coercivity (Hc) and relativ...
In this dissertation, I present the results of a systematic study on novel multifunctional nanostruc...
We report a systematic study of the effects of core and shell size on the magnetic properties and he...
Diseased cell treatment by heating with magnetic nanoparticles is hindered by their required high co...
We report a systematic study of the effects of core and shell size on the magnetic properties and he...