Publication | Closed Access
Manipulation and sorting of magnetic particles by a magnetic force microscope on a microfluidic magnetic trap platform
59
Citations
9
References
2005
Year
NanoparticlesMagnetic PropertiesEngineeringMicroscopyMagnetic ParticlesMagnetic ResonanceBiomedical EngineeringMagnetic FieldMagnetic MaterialsFerrofluidMagnetic SensorMagnetismMicromachinesMicromagneticsMicrofluidicsBiophysicsNanotechnologyMedicineMagnetic MeasurementNanofluidicsMicro-magnetic ModelingMicrofabricationBiomedical DiagnosticsMagnetic Force MicroscopeLab-on-a-chipMagnetic DeviceMfm TipMfm Cantilever TipNanomagnetism
We have integrated a microfluidic magnetic trap platform with an external magnetic force microscope (MFM) cantilever. The MFM cantilever tip serves as a magnetorobotic arm that provides a translatable local magnetic field gradient to capture and move magnetic particles with nanometer precision. The MFM electronics have been programmed to sort an initially random distribution of particles by moving them within an array of magnetic trapping elements. We measured the maximum velocity at which the particles can be translated to be 2.2mm∕s±0.1mm∕s, which can potentially permit a sorting rate of approximately 5500particles∕min. We determined a magnetic force of 35.3±2.0pN acting on a 1μm diameter particle by measuring the hydrodynamic drag force necessary to free the particle. Release of the particles from the MFM tip is made possible by a nitride membrane that separates the arm and magnetic trap elements from the particle solution. This platform has potential applications for magnetic-based sorting, manipulation, and probing of biological molecules in a constant-displacement or a constant-force mode.
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