International audienceThe present manuscript reports the use of hybrid magneto-plasmonic nanoparticles (HMPNPs) based on iron oxide nanoparticles and Au nanorods as colloidal nanoheaters. The individual synthesis of the magnetic and plasmonic components allowed optimizing their features for heating performance separately, before they were hybridized. Besides, a detailed characterization and finite element simulations were carried out to explain the interaction effects observed between the phases of the HMPNPs. The study also analyzed the heating power of these nanostructures when they were excited with infrared light and AC magnetic fields, and compared this with the heating power of their plasmonic and magnetic components. In the latter ca...
Biomedical magnetic colloids commonly used in magnetic hyperthermia experiments often display a bidi...
Localized magnetic hyperthermia using magnetic nanoparticles (MNPs) under the application of small m...
The performance of magnetic nanoparticles is intimately entwined with their structure, mean size and...
International audienceThe present manuscript reports the use of hybrid magneto-plasmonic nanoparticl...
Heating at the nanoscale is the basis of several biomedical applications, including magnetic hyperth...
Multicompartment nanoparticles have raised great interest for different biomedical applications, tha...
The increasing use of magnetic nanoparticles as heating agents in biomedicine is driven by their pro...
The increasing use of magnetic nanoparticles as heating agents in biomedicine is driven by their pro...
International audienceMultifunctional hybrid-design nanomaterials appear to be a promising route to ...
Noble metal nanoparticles have been extensively studied as photo-sensitive agents for photothermal c...
Colloidal magneto-plasmonic nanostructures are multifunctional materials with huge potential for app...
Magnetic nanoparticles can generate heat when exposed to an alternating magnetic field. Their heatin...
Nanoparticle hyperthermia treatment is progressing with the passage of time, andwith the development...
© 2021 The Authors. Published by American Chemical Society.Magnetic nanoparticles have an important ...
The performance of magnetic nanoparticles is intimately entwined with their structure, mean size and...
Biomedical magnetic colloids commonly used in magnetic hyperthermia experiments often display a bidi...
Localized magnetic hyperthermia using magnetic nanoparticles (MNPs) under the application of small m...
The performance of magnetic nanoparticles is intimately entwined with their structure, mean size and...
International audienceThe present manuscript reports the use of hybrid magneto-plasmonic nanoparticl...
Heating at the nanoscale is the basis of several biomedical applications, including magnetic hyperth...
Multicompartment nanoparticles have raised great interest for different biomedical applications, tha...
The increasing use of magnetic nanoparticles as heating agents in biomedicine is driven by their pro...
The increasing use of magnetic nanoparticles as heating agents in biomedicine is driven by their pro...
International audienceMultifunctional hybrid-design nanomaterials appear to be a promising route to ...
Noble metal nanoparticles have been extensively studied as photo-sensitive agents for photothermal c...
Colloidal magneto-plasmonic nanostructures are multifunctional materials with huge potential for app...
Magnetic nanoparticles can generate heat when exposed to an alternating magnetic field. Their heatin...
Nanoparticle hyperthermia treatment is progressing with the passage of time, andwith the development...
© 2021 The Authors. Published by American Chemical Society.Magnetic nanoparticles have an important ...
The performance of magnetic nanoparticles is intimately entwined with their structure, mean size and...
Biomedical magnetic colloids commonly used in magnetic hyperthermia experiments often display a bidi...
Localized magnetic hyperthermia using magnetic nanoparticles (MNPs) under the application of small m...
The performance of magnetic nanoparticles is intimately entwined with their structure, mean size and...