Effects of magnetic field strength and direction were studied on the fluidization of titanium oxide nanoparticles (anatase phase) with ferromagnetic iron (III) oxide nanoparticles. The main hydrodynamic structures were defined and studied using wavelet transform. Energy analysis was used to study the effect of the field direction and strength on fluidization. The results suggested that mesostructures (agglomerates) have the most effect on the nanoparticle fluidization characteristics. Higher energy at high field strength for upward direction, suggests more intense interaction between agglomerates in the bed for nanoparticles that result in more stochastic pattern and lower ABF regime characteristics. Downward direction at low magnetic field...
We focus on an in-depth study of the forced dynamics of a ferromagnetic single-domain uniaxial nanop...
Ferrofluids are a unique class of colloidal liquids made of ferromagnetic or ferrimagnetic nanoparti...
The behavior of a fluidized bed of fine magnetite particles as affected by a cross-flow magnetic fie...
Nanoparticles are the focus of many research activities, and in the near future they will be handled...
Gas fluidization of nanoparticle agglomerates has recently received much attention due to the excell...
The nanoparticles are building block of many advanced materials that are developed for a variety of ...
During the past decade, nanoparticles (1-100 nm) and nanocomposites have become the focus of many st...
In this work, we show that the viscosity of carrier liquid affects the dynamic magnetization of ther...
We have previously reported that the fluidization of nanoparticle agglomerates can be enhanced by th...
An investigation to measure the flow behavior of magnetic nanoparticles through a 100mm microchanne...
Superparamagnetic iron oxide nanoparticles have found particular interest in magnetic drug targeting...
The primary objective of this study is to perform a systematic investigation on the gas fluidization...
Nanoparticles (NPs) are applied in a wide range of processes, and their use continues to increase. F...
Considerable efforts have been spent in the development of magnetic nanoparticles (MNPs) in the last...
Nanopowders are applied in a wide range of processes, and their use continues to increase. Fluidizat...
We focus on an in-depth study of the forced dynamics of a ferromagnetic single-domain uniaxial nanop...
Ferrofluids are a unique class of colloidal liquids made of ferromagnetic or ferrimagnetic nanoparti...
The behavior of a fluidized bed of fine magnetite particles as affected by a cross-flow magnetic fie...
Nanoparticles are the focus of many research activities, and in the near future they will be handled...
Gas fluidization of nanoparticle agglomerates has recently received much attention due to the excell...
The nanoparticles are building block of many advanced materials that are developed for a variety of ...
During the past decade, nanoparticles (1-100 nm) and nanocomposites have become the focus of many st...
In this work, we show that the viscosity of carrier liquid affects the dynamic magnetization of ther...
We have previously reported that the fluidization of nanoparticle agglomerates can be enhanced by th...
An investigation to measure the flow behavior of magnetic nanoparticles through a 100mm microchanne...
Superparamagnetic iron oxide nanoparticles have found particular interest in magnetic drug targeting...
The primary objective of this study is to perform a systematic investigation on the gas fluidization...
Nanoparticles (NPs) are applied in a wide range of processes, and their use continues to increase. F...
Considerable efforts have been spent in the development of magnetic nanoparticles (MNPs) in the last...
Nanopowders are applied in a wide range of processes, and their use continues to increase. Fluidizat...
We focus on an in-depth study of the forced dynamics of a ferromagnetic single-domain uniaxial nanop...
Ferrofluids are a unique class of colloidal liquids made of ferromagnetic or ferrimagnetic nanoparti...
The behavior of a fluidized bed of fine magnetite particles as affected by a cross-flow magnetic fie...