Self-assembly due to capillary forces is a common method for generating 2D mesoscale structures made of identical particles floating at some liquid-air interface. We show herein how to create soft entities that deform or not the liquid interface as a function of the strength of some applied magnetic field. These smart floating objects self-assemble or not depending on the application of an external field. Moreover, we show that the self-assembling process can be reversed opening ways to rearrange structures
This paper describes the preparation and manipulation of several coexisting, dynamically self-assemb...
Magnetocapillary self-assemblies form when soft-ferromagnetic particles are deposited on a liquid su...
This paper describes self-assembly of millimeter-sized, magnetized disks floating on a liquid-air in...
peer reviewedSelf-assembly due to capillary forces is a common method for generating 2D mesoscale st...
Abstract. Self-assembly due to capillary forces is a common method for generating 2D mesoscale struc...
When identical soft ferromagnetic particles are suspended at some water-air interface, capillary att...
peer reviewedCapillarity driven self-assembly is a way to create spontaneous structures along liquid...
Regular arrays of topologically complex, millimeter-scale objects were prepared by self-assembly, wi...
Self-assembly of floating particles driven by capillary forces at some liquid-air interface leads to...
Self-assembly of floating particles driven by capillary forces at some liquid-air interface leads to...
peer reviewedReview article on magnetocapillary self-assemblies, and in particular microswimmers, wh...
Regular arrays of topologically complex, mill imeter-scale objects were prepared by self-assembly, w...
Dissipative colloidal materials use energy to generate and maintain structural complexity. The energ...
Because they cause a deformation of the interface, floating particles interact. In particular, ident...
peer reviewedSmall objects floating on a fluid have a tendency to aggregate due to capillary forces....
This paper describes the preparation and manipulation of several coexisting, dynamically self-assemb...
Magnetocapillary self-assemblies form when soft-ferromagnetic particles are deposited on a liquid su...
This paper describes self-assembly of millimeter-sized, magnetized disks floating on a liquid-air in...
peer reviewedSelf-assembly due to capillary forces is a common method for generating 2D mesoscale st...
Abstract. Self-assembly due to capillary forces is a common method for generating 2D mesoscale struc...
When identical soft ferromagnetic particles are suspended at some water-air interface, capillary att...
peer reviewedCapillarity driven self-assembly is a way to create spontaneous structures along liquid...
Regular arrays of topologically complex, millimeter-scale objects were prepared by self-assembly, wi...
Self-assembly of floating particles driven by capillary forces at some liquid-air interface leads to...
Self-assembly of floating particles driven by capillary forces at some liquid-air interface leads to...
peer reviewedReview article on magnetocapillary self-assemblies, and in particular microswimmers, wh...
Regular arrays of topologically complex, mill imeter-scale objects were prepared by self-assembly, w...
Dissipative colloidal materials use energy to generate and maintain structural complexity. The energ...
Because they cause a deformation of the interface, floating particles interact. In particular, ident...
peer reviewedSmall objects floating on a fluid have a tendency to aggregate due to capillary forces....
This paper describes the preparation and manipulation of several coexisting, dynamically self-assemb...
Magnetocapillary self-assemblies form when soft-ferromagnetic particles are deposited on a liquid su...
This paper describes self-assembly of millimeter-sized, magnetized disks floating on a liquid-air in...