When identical soft ferromagnetic particles are suspended at some water-air interface, capillary attraction is balanced by magnetic repulsion induced by a vertical magnetic field. By adjusting the magnetic field strength, the equilibrium interdistance between particles can be tuned. The aim of this paper is to study the ordering of particles for large assemblies. We have found an upper size limit above which the assembly collapses due to capillary effects. Before reaching this critical number of particles, defects are always present and limit the perfect ordering expected for that system. This is due to the curvature of the interface induced by the weight of the self-assembly
Magnonics is a young and evolving field with the potential to replace conventional electronics. This...
Small objects floating on a fluid have a tendency to aggregate due to capillary forces. This effect ...
Manufacturing new soft materials with specific optical, mechanical and magnetic properties is a sign...
When identical soft ferromagnetic particles are suspended at some water-air interface, capillary att...
We have experimentally investigated the interactions between floating magnetic spheres which are sub...
Self-assembly due to capillary forces is a common method for generating 2D mesoscale structures made...
Magnetocapillary self-assemblies form when soft-ferromagnetic particles are deposited on a liquid su...
Self-assembly is the spontaneous formation of larger structures from small building blocks. This pro...
peer reviewedReview article on magnetocapillary self-assemblies, and in particular microswimmers, wh...
Capillary interactions can be used to direct assembly of particles adsorbed at fluid-fluid interface...
When particles are suspended at air-water interfaces in the presence of a vertical magnetic field, d...
When ferromagnetic particles are suspended at an interface under magnetic fields, dipole-dipole inte...
Colloidal assembly at fluid interfaces has a great potential for the bottom-up fabrication of novel ...
Dipole-dipole interactions in the most commonly used ferrofluids are relatively weak and there are o...
Self-organisation is the key route for assembling colloidal particles into well-defined structures. ...
Magnonics is a young and evolving field with the potential to replace conventional electronics. This...
Small objects floating on a fluid have a tendency to aggregate due to capillary forces. This effect ...
Manufacturing new soft materials with specific optical, mechanical and magnetic properties is a sign...
When identical soft ferromagnetic particles are suspended at some water-air interface, capillary att...
We have experimentally investigated the interactions between floating magnetic spheres which are sub...
Self-assembly due to capillary forces is a common method for generating 2D mesoscale structures made...
Magnetocapillary self-assemblies form when soft-ferromagnetic particles are deposited on a liquid su...
Self-assembly is the spontaneous formation of larger structures from small building blocks. This pro...
peer reviewedReview article on magnetocapillary self-assemblies, and in particular microswimmers, wh...
Capillary interactions can be used to direct assembly of particles adsorbed at fluid-fluid interface...
When particles are suspended at air-water interfaces in the presence of a vertical magnetic field, d...
When ferromagnetic particles are suspended at an interface under magnetic fields, dipole-dipole inte...
Colloidal assembly at fluid interfaces has a great potential for the bottom-up fabrication of novel ...
Dipole-dipole interactions in the most commonly used ferrofluids are relatively weak and there are o...
Self-organisation is the key route for assembling colloidal particles into well-defined structures. ...
Magnonics is a young and evolving field with the potential to replace conventional electronics. This...
Small objects floating on a fluid have a tendency to aggregate due to capillary forces. This effect ...
Manufacturing new soft materials with specific optical, mechanical and magnetic properties is a sign...