We report experimental results on the patterns that are formed during spin-coating of magnetic colloids at moderate concentrations and compare them with results obtained in diluted colloids. We show that, for moderate concentrations, the magnetic interaction between the (ferro)magnetic particles and with the external field is strong enough to overcome the centrifugal force. We study two different configurations for the magnetic field. The first one consists on an axial uniform field, where we obtain spikes perpendicular to the substrate with a well defined order which decreases as rotation rate increases. The second one consists on a radial non-uniform field, where we obtain elongated deposits radially disposed on the substrate. The effect ...
Hybrid colloids composed of micron-sized ferromagnetic (carbonyl iron) and diamagnetic (silica) part...
The motion of ferromagnetic single particles and linear aggregates of spheres subjected to a gradien...
Self-organisation is the key route for assembling colloidal particles into well-defined structures. ...
We report experimental results on the patterns that are formed during spin-coating of magnetic collo...
Spin-coating technique is very fast, cheap, reproducible, simple and needs less material to fabricat...
Spin-coating technique is very fast, cheap, reproducible, simple and needs less material to fabricat...
Spin-coating of colloids is a versatile method in fabricating films of colloidal particles at a shor...
Spin-coating of colloids is a versatile method in fabricating films of colloidal particles at a shor...
Spin-coating technique is very fast, cheap, reproducible, simple and needs less material to fabricat...
Spin coating is an out-of-equilibrium technique for producing polymer films and colloidal crystals q...
Spin coating is an out-of-equilibrium technique for producing polymer films and colloidal crystals q...
In magnetorheological fluids, the viscosity usually increases with the field and the non-Newtonian c...
<p>Pattern formation is a mysterious phenomenon occurring at all scales in nature. The beauty of the...
Hybrid colloids composed of micron-sized ferromagnetic (carbonyl iron) and diamagnetic (silica) part...
In magnetorheological fluids, the viscosity usually increases with the field and the non-Newtonian c...
Hybrid colloids composed of micron-sized ferromagnetic (carbonyl iron) and diamagnetic (silica) part...
The motion of ferromagnetic single particles and linear aggregates of spheres subjected to a gradien...
Self-organisation is the key route for assembling colloidal particles into well-defined structures. ...
We report experimental results on the patterns that are formed during spin-coating of magnetic collo...
Spin-coating technique is very fast, cheap, reproducible, simple and needs less material to fabricat...
Spin-coating technique is very fast, cheap, reproducible, simple and needs less material to fabricat...
Spin-coating of colloids is a versatile method in fabricating films of colloidal particles at a shor...
Spin-coating of colloids is a versatile method in fabricating films of colloidal particles at a shor...
Spin-coating technique is very fast, cheap, reproducible, simple and needs less material to fabricat...
Spin coating is an out-of-equilibrium technique for producing polymer films and colloidal crystals q...
Spin coating is an out-of-equilibrium technique for producing polymer films and colloidal crystals q...
In magnetorheological fluids, the viscosity usually increases with the field and the non-Newtonian c...
<p>Pattern formation is a mysterious phenomenon occurring at all scales in nature. The beauty of the...
Hybrid colloids composed of micron-sized ferromagnetic (carbonyl iron) and diamagnetic (silica) part...
In magnetorheological fluids, the viscosity usually increases with the field and the non-Newtonian c...
Hybrid colloids composed of micron-sized ferromagnetic (carbonyl iron) and diamagnetic (silica) part...
The motion of ferromagnetic single particles and linear aggregates of spheres subjected to a gradien...
Self-organisation is the key route for assembling colloidal particles into well-defined structures. ...