Inspired by recent experimental observations of spontaneous chain formation of cubic particles adsorbed at a fluid-fluid interface, we theoretically investigate whether capillary interactions can be responsible for this self-assembly process. We calculate adsorption energies, equilibrium particle orientations, and interfacial deformations, not only for a variety of contact angles but also for single cubes as well as an infinite 2D lattice of cubes at the interface. This allows us to construct a ground-state phase diagram as a function of areal density for several contact angles, and upon combining the capillary energy of a 2D lattice with a simple expression for the entropy of a 2D fluid we also construct temperature-density or size-density...
Hypothesis: The collective dynamics and self-assembly of colloids floating at a fluid/fluid interfac...
Colloidal particles of micrometer size usually become irreversibly trapped at fluid interfaces if th...
Spherical colloidal particles typically self-assemble into hexagonal lattices when adsorbed at liqui...
Inspired by recent experimental observations of spontaneous chain formation of cubic particles adsor...
Colloidal particles adsorbed at fluid–fluid interfaces can self-assemble, thanks to capillary intera...
Particles adsorbed at a fluid-fluid interface induce capillary deformations that determine their ori...
In this thesis, first we provide a theoretical introduction about fluid-fluid interfaces, and the ma...
This thesis deals with a series of phenomena occurring in systems composed of particles with dimensi...
Colloidal particles adsorbed at fluid-fluid interfaces interact via mechanisms that can be specific ...
The trapping and interaction of nano- and micro-particles at fluid interfaces is broadly important i...
Micron-sized anisotropic particles with homogeneous surface properties at a fluid interface can defo...
Charged colloidal particles trapped at an air-water interface are well known to form an ordered crys...
There\u27s a great interest in studying particle assembly on fluid interfaces for their properties t...
A colloidal dispersion consists of insoluble microscopic particles that are suspended in a solvent. ...
Objects floating at a liquid interface, such as breakfast cereals floating in a bowl of milk or bubb...
Hypothesis: The collective dynamics and self-assembly of colloids floating at a fluid/fluid interfac...
Colloidal particles of micrometer size usually become irreversibly trapped at fluid interfaces if th...
Spherical colloidal particles typically self-assemble into hexagonal lattices when adsorbed at liqui...
Inspired by recent experimental observations of spontaneous chain formation of cubic particles adsor...
Colloidal particles adsorbed at fluid–fluid interfaces can self-assemble, thanks to capillary intera...
Particles adsorbed at a fluid-fluid interface induce capillary deformations that determine their ori...
In this thesis, first we provide a theoretical introduction about fluid-fluid interfaces, and the ma...
This thesis deals with a series of phenomena occurring in systems composed of particles with dimensi...
Colloidal particles adsorbed at fluid-fluid interfaces interact via mechanisms that can be specific ...
The trapping and interaction of nano- and micro-particles at fluid interfaces is broadly important i...
Micron-sized anisotropic particles with homogeneous surface properties at a fluid interface can defo...
Charged colloidal particles trapped at an air-water interface are well known to form an ordered crys...
There\u27s a great interest in studying particle assembly on fluid interfaces for their properties t...
A colloidal dispersion consists of insoluble microscopic particles that are suspended in a solvent. ...
Objects floating at a liquid interface, such as breakfast cereals floating in a bowl of milk or bubb...
Hypothesis: The collective dynamics and self-assembly of colloids floating at a fluid/fluid interfac...
Colloidal particles of micrometer size usually become irreversibly trapped at fluid interfaces if th...
Spherical colloidal particles typically self-assemble into hexagonal lattices when adsorbed at liqui...