Loss mechanisms in fluid heating of cobalt ferrite (CFO) nanoparticles and CFO–Pd heterodimer colloidal suspensions are investigated as a function of particle size, fluid concentration and magnetic field amplitude. The specific absorption rate (SAR) is found to vary with increasing particle size due to a change in dominant heating mechanism from susceptibility to hysteresis and frictional loss. The maximum SAR is obtained for particle diameters of 11–15 nm as a result of synergistic contributions of susceptibility loss, including Néel and Brownian relaxation and especially hysteresis loss, thereby validating the applicability of linear response theory to superparamagnetic CFO nanoparticles. Our results show that the ferrofluid concentration...
Considerable effort has been made in recent years to optimize materials properties for magnetic hype...
Considerable effort has been made in recent years to optimize materials properties for magnetic hype...
Recently, potential applications of the magnetic heating for heterogeneous catalysis or organic synt...
Loss mechanisms in fluid heating of cobalt ferrite (CFO) nanoparticles and CFO–Pd heterodimer colloi...
Loss mechanisms in fluid heating of cobalt ferrite (CFO) nanoparticles and CFO-Pd heterodimer colloi...
Loss mechanisms in fluid heating of cobalt ferrite CFO nanoparticles and CFO Pd heterodimer colloi...
Loss mechanisms in fluid heating of cobalt ferrite CFO nanoparticles and CFO Pd heterodimer colloi...
Further advances in magnetic hyperthermia might be limited by biological constraints, such as using ...
Further advances in magnetic hyperthermia might be limited by biological constraints, such as using ...
Further advances in magnetic hyperthermia might be limited by biological constraints, such as using ...
The heat produced by magnetic nanoparticles, when they are submitted to a time-varying magnetic fiel...
Further advances inmagnetic hyperthermiamight be limited by biological constraints, such as using su...
[Objectives of the work]: The aim of this thesis work is to study the key mechanisms involved in the...
For hyperthermia to be used under clinical conditions for cancer therapeutics the temperature regula...
We investigated the size dependent magnetic properties and heating mechanism of spinel CoFe2O4 nanop...
Considerable effort has been made in recent years to optimize materials properties for magnetic hype...
Considerable effort has been made in recent years to optimize materials properties for magnetic hype...
Recently, potential applications of the magnetic heating for heterogeneous catalysis or organic synt...
Loss mechanisms in fluid heating of cobalt ferrite (CFO) nanoparticles and CFO–Pd heterodimer colloi...
Loss mechanisms in fluid heating of cobalt ferrite (CFO) nanoparticles and CFO-Pd heterodimer colloi...
Loss mechanisms in fluid heating of cobalt ferrite CFO nanoparticles and CFO Pd heterodimer colloi...
Loss mechanisms in fluid heating of cobalt ferrite CFO nanoparticles and CFO Pd heterodimer colloi...
Further advances in magnetic hyperthermia might be limited by biological constraints, such as using ...
Further advances in magnetic hyperthermia might be limited by biological constraints, such as using ...
Further advances in magnetic hyperthermia might be limited by biological constraints, such as using ...
The heat produced by magnetic nanoparticles, when they are submitted to a time-varying magnetic fiel...
Further advances inmagnetic hyperthermiamight be limited by biological constraints, such as using su...
[Objectives of the work]: The aim of this thesis work is to study the key mechanisms involved in the...
For hyperthermia to be used under clinical conditions for cancer therapeutics the temperature regula...
We investigated the size dependent magnetic properties and heating mechanism of spinel CoFe2O4 nanop...
Considerable effort has been made in recent years to optimize materials properties for magnetic hype...
Considerable effort has been made in recent years to optimize materials properties for magnetic hype...
Recently, potential applications of the magnetic heating for heterogeneous catalysis or organic synt...