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Magnetophoretic induced convective capture of highly diffusive superparamagnetic nanoparticles.

SOFT MATTER(2018)

Cited 26|Views14
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Abstract
Micro-magnets producing magnetic field gradients as high as 10(6) T m(-1) have been used to efficiently trap nanoparticles with a magnetic core of just 12 nm in diameter. Particle capture efficiency increases with increasing particle concentration. Comparison of measured capture kinetics with numerical modelling reveals that a threshold concentration exists below which capture is diffusion-driven and above which it is convectively-driven. This comparison also shows that two-way fluid-particle coupling is responsible for the formation of convective cells, the size of which is governed by the height of the droplet. Our results indicate that for a suspension with a nanoparticle concentration suitable for bioassays (around 0.25 mg ml(-1)), all particles can be captured in less than 10 minutes. Since nanoparticles have a significantly higher surface-to-volume ratio than the more widely used microparticles, their efficient capture should contribute to the development of next generation digital microfluidic lab-on-chip immunoassays.
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Key words
diffusive superparamagnetic nanoparticles,convective capture
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