Simple Preparation of ZnFe2O4 with Different Precipitants by Co-precipitation for Microwave Absorption Material

G Chen, J Liu, R Liu, Y Li - Journal of Electronic Materials, 2023 - Springer
ZnFe2O4 is a commonly used material to solve electromagnetic wave pollution problems.
Most researchers use NaOH as a precipitant to prepare ZnFe2O4. In the adaption of co …

Magnetophoresis of superparamagnetic nanoparticles at low field gradient: hydrodynamic effect

SS Leong, Z Ahmad, JK Lim - Soft Matter, 2015 - pubs.rsc.org
Convective current driven by momentum transfer between magnetic nanoparticles (MNPs)
and their surrounding fluid during magnetophoresis process under a low gradient magnetic …

A rotary magnetic separator integrating nanoparticle-assisted water purification: Simulation and laboratory validation

N Maniotis, K Kalaitzidou, E Asimoulas… - Journal of Water Process …, 2023 - Elsevier
This work introduces a continuous flow process for the implementation of magnetic
nanoadsorbents in drinking water treatment practices based on their complete recovery …

Magnetofluidic concentration and separation of non-magnetic particles using two magnet arrays

M Hejazian, NT Nguyen - Biomicrofluidics, 2016 - pubs.aip.org
The present paper reports the use of diluted ferrofluid and two arrays of permanent magnets
for the size-selective concentration of non-magnetic particles. The micro magnetofluidic …

Scalability analysis of magnetic bead separation in a microchannel with an array of soft magnetic elements in a uniform magnetic field

SA Khashan, EP Furlani - Separation and Purification Technology, 2014 - Elsevier
The scalability of magnetic bead separation and capture efficiency are studied for a flow
through microfluidic system with integrated magnetic functionality. The system consists of a …

Magnetophoretic induced convective capture of highly diffusive superparamagnetic nanoparticles

M Fratzl, S Delshadi, T Devillers, F Bruckert, O Cugat… - Soft Matter, 2018 - pubs.rsc.org
Micro-magnets producing magnetic field gradients as high as 106 T m− 1 have been used to
efficiently trap nanoparticles with a magnetic core of just 12 nm in diameter. Particle capture …

[HTML][HTML] Simulation and experimental validation of magnetic nanoparticle accumulation in a bloodstream mimicking flow system

M Reinelt, J Ahlfs, R Stein, C Alexiou, E Bänsch… - Journal of Magnetism …, 2023 - Elsevier
In this paper, a mathematical model for the dynamics of superparamagnetic iron oxide
nanoparticles (SPIONs) in a laminar flow through a pipe under the influence of an external …

Continuous-flow separation of magnetic particles from biofluids: how does the microdevice geometry determine the separation performance?

C González Fernández, J Gómez Pastora, A Basauri… - Sensors, 2020 - mdpi.com
The use of functionalized magnetic particles for the detection or separation of multiple
chemicals and biomolecules from biofluids continues to attract significant attention. After …

Continuous flow low gradient magnetophoresis of magnetic nanoparticles: separation kinetic modelling and simulation

PH Chong, YW Tan, YP Teoh, CH Lim, PY Toh… - … of Superconductivity and …, 2021 - Springer
In recent years, magnetophoresis of magnetic nanoparticles (MNPs) has been emerged as
one of the most appealing separation technologies in water treatment and biomedical …

Efficient computational model of the in-flow capturing of magnetic nanoparticles by a cylindrical magnet for cancer nanomedicine

B Wirthl, V Wirthl, WA Wall - Physical Review E, 2024 - APS
Magnetic nanoparticles have emerged as a promising approach to improving cancer
treatment. However, many nanoparticle designs fail in clinical trials due to a lack of …