Biomedical magnetic colloids commonly used in magnetic hyperthermia experiments often display a bidisperse structure, i.e., are composed of stable nanoclusters coexisting with well-dispersed nanoparticles. However, the influence of nanoclusters in the optimization of colloids for heat dissipation is usually excluded. In this work, bidisperse colloids are used to analyze the effect of nanoclustering and long-range magnetic dipolar interaction on the magnetic hyperthermia efficiency. Two kinds of colloids, composed of magnetite cores with mean sizes of around 10 and 18 nm, coated with oleic acid and dispersed in hexane, and coated with meso-2,3-dimercaptosuccinic acid and dispersed in water, were analyzed. Small-angle X-ray scattering was app...
This work aims to demonstrate the need for in silico design via numerical simulation to produce opti...
Magnetic hyperthermia (MH) based on magnetic nanoparticles (MNPs) is a promising adjuvant therapy fo...
Progress in the design of nanoscale magnets for localized hyperthermia cancer therapy has been large...
Biomedical magnetic colloids commonly used in magnetic hyperthermia experiments often display a bidi...
This work aims to investigate the influence of inter-particle dipole interactions on hyperthermia he...
This work aims to investigate the influence of inter-particle dipole interactions on hyperthermia he...
This work aims to investigate the influence of inter-particle dipole interactions on hyperthermia he...
Magnetic hyperthermia, a modality that uses radio frequency heating assisted with single-domain magn...
Treballs Finals de Grau de Física, Facultat de Física, Universitat de Barcelona, Curs: 2019, Tutor: ...
Magnetic nanofluid (MNF) is one special kind of nanofluid which possesses both magnetic and fluid pr...
Magnetic hyperthermia, a modality that uses radio frequency heating assisted with single-domain magn...
The heat produced by magnetic nanoparticles, when they are submitted to a time-varying magnetic fiel...
Rate equations are used to study the dynamic magnetic properties of interacting magnetite nanopartic...
One current challenge of magnetic hyperthermia is achieving therapeutic effects with a minimal amoun...
Iron oxide nanoparticles have found an increasing number of biomedical applications as sensing or tr...
This work aims to demonstrate the need for in silico design via numerical simulation to produce opti...
Magnetic hyperthermia (MH) based on magnetic nanoparticles (MNPs) is a promising adjuvant therapy fo...
Progress in the design of nanoscale magnets for localized hyperthermia cancer therapy has been large...
Biomedical magnetic colloids commonly used in magnetic hyperthermia experiments often display a bidi...
This work aims to investigate the influence of inter-particle dipole interactions on hyperthermia he...
This work aims to investigate the influence of inter-particle dipole interactions on hyperthermia he...
This work aims to investigate the influence of inter-particle dipole interactions on hyperthermia he...
Magnetic hyperthermia, a modality that uses radio frequency heating assisted with single-domain magn...
Treballs Finals de Grau de Física, Facultat de Física, Universitat de Barcelona, Curs: 2019, Tutor: ...
Magnetic nanofluid (MNF) is one special kind of nanofluid which possesses both magnetic and fluid pr...
Magnetic hyperthermia, a modality that uses radio frequency heating assisted with single-domain magn...
The heat produced by magnetic nanoparticles, when they are submitted to a time-varying magnetic fiel...
Rate equations are used to study the dynamic magnetic properties of interacting magnetite nanopartic...
One current challenge of magnetic hyperthermia is achieving therapeutic effects with a minimal amoun...
Iron oxide nanoparticles have found an increasing number of biomedical applications as sensing or tr...
This work aims to demonstrate the need for in silico design via numerical simulation to produce opti...
Magnetic hyperthermia (MH) based on magnetic nanoparticles (MNPs) is a promising adjuvant therapy fo...
Progress in the design of nanoscale magnets for localized hyperthermia cancer therapy has been large...