NanoArtography - Magnetostatic Spawn Ferrofluids are colloidal liquids made of nanoscale ferromagnetic particles suspended in a carrier fluid. Surfactants in the fluid prevent the agglomeration of the nanoparticles because their strong Van

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NanoArtography - Magnetostatic Spawn Ferrofluids are colloidal liquids made  of nanoscale ferromagnetic particles suspended in a carrier fluid.  Surfactants in the fluid prevent the agglomeration of the nanoparticles  because their strong Van

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NanoArtography - Magnetostatic Spawn Ferrofluids are colloidal liquids made  of nanoscale ferromagnetic particles suspended in a carrier fluid.  Surfactants in the fluid prevent the agglomeration of the nanoparticles  because their strong Van

Sensors, Free Full-Text

NanoArtography - Magnetostatic Spawn Ferrofluids are colloidal liquids made  of nanoscale ferromagnetic particles suspended in a carrier fluid.  Surfactants in the fluid prevent the agglomeration of the nanoparticles  because their strong Van

Multifunctional ferrofluid-infused surfaces with reconfigurable multiscale topography

NanoArtography - Magnetostatic Spawn Ferrofluids are colloidal liquids made  of nanoscale ferromagnetic particles suspended in a carrier fluid.  Surfactants in the fluid prevent the agglomeration of the nanoparticles  because their strong Van

Reconfigurable multifunctional ferrofluid droplet robots

NanoArtography - Magnetostatic Spawn Ferrofluids are colloidal liquids made  of nanoscale ferromagnetic particles suspended in a carrier fluid.  Surfactants in the fluid prevent the agglomeration of the nanoparticles  because their strong Van

On-demand ferrofluid droplet formation with non-linear magnetic permeability in the presence of high non-uniform magnetic fields

NanoArtography - Magnetostatic Spawn Ferrofluids are colloidal liquids made  of nanoscale ferromagnetic particles suspended in a carrier fluid.  Surfactants in the fluid prevent the agglomeration of the nanoparticles  because their strong Van

Unified View of Magnetic Nanoparticle Separation under Magnetophoresis

NanoArtography - Magnetostatic Spawn Ferrofluids are colloidal liquids made  of nanoscale ferromagnetic particles suspended in a carrier fluid.  Surfactants in the fluid prevent the agglomeration of the nanoparticles  because their strong Van

Ferrofluid - an overview

NanoArtography - Magnetostatic Spawn Ferrofluids are colloidal liquids made  of nanoscale ferromagnetic particles suspended in a carrier fluid.  Surfactants in the fluid prevent the agglomeration of the nanoparticles  because their strong Van

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NanoArtography - Magnetostatic Spawn Ferrofluids are colloidal liquids made  of nanoscale ferromagnetic particles suspended in a carrier fluid.  Surfactants in the fluid prevent the agglomeration of the nanoparticles  because their strong Van

Manipulating Dispersions of Magnetic Nanoparticles

NanoArtography - Magnetostatic Spawn Ferrofluids are colloidal liquids made  of nanoscale ferromagnetic particles suspended in a carrier fluid.  Surfactants in the fluid prevent the agglomeration of the nanoparticles  because their strong Van

Ferrofluid - an overview

NanoArtography - Magnetostatic Spawn Ferrofluids are colloidal liquids made  of nanoscale ferromagnetic particles suspended in a carrier fluid.  Surfactants in the fluid prevent the agglomeration of the nanoparticles  because their strong Van

Reciprocating Oscillation of a Floating Ferrofluid Marble Triggered by Magnetic Fields

NanoArtography - Magnetostatic Spawn Ferrofluids are colloidal liquids made  of nanoscale ferromagnetic particles suspended in a carrier fluid.  Surfactants in the fluid prevent the agglomeration of the nanoparticles  because their strong Van

Static and dynamic behavior of magnetic particles at fluid interfaces - ScienceDirect

NanoArtography - Magnetostatic Spawn Ferrofluids are colloidal liquids made  of nanoscale ferromagnetic particles suspended in a carrier fluid.  Surfactants in the fluid prevent the agglomeration of the nanoparticles  because their strong Van

Ferromagnetic Liquid Droplet on a Superhydrophobic Surface for the Transduction of Mechanical Energy to Electricity Based on Electromagnetic Induction