We investigate the dynamic interfacial deformation induced by micrometric particles exerting a periodic force on a planar interface or on a bubble, and the resulting lateral capillary interactions. Assuming that the deformation of the interface is small, neglecting the effect of viscosity and assuming point particles, we derive analytical formulas for the dynamic deformation of the interface. For the case of a planar interface the dynamic point force simply generates capillary waves, while for the case of a bubble it excites shape oscillations, with a dominant deformation mode that depends on the bubble radius for a given forcing frequency. We evaluate the lateral capillary force acting between two particles, by superimposing the deformatio...
This thesis concerns the modelling of the interactions between colloidal particles and fluid-fluid i...
There\u27s a great interest in studying particle assembly on fluid interfaces for their properties t...
Classical capillary theory predicts that a non-neutrally wetting ellipsoidal particle adsorbed at a ...
<p> </p> <p> This thesis deals with spherical microparticles trapped at liquid interfaces. It focuse...
Within a general theoretical framework, we study the effective, deformation-induced interaction bet...
For partially wetting, ellipsoidal colloids trapped at a fluid interface, their effective, interface...
We study the capillary forces acting on sub-millimeter particles (0.02-0.6 mm) trapped at a liquid-l...
There\u27s a great interest in studying particle assembly on fluid interfaces for their properties t...
Objects floating at a liquid interface, such as breakfast cereals floating in a bowl of milk or bubb...
Particles can be adsorbed to liquid-fluid interface to minimize interfacial energy. The adsorbed par...
Micron-sized anisotropic particles with homogeneous surface properties at a fluid interface can defo...
Nanometre- and micrometre-sized charged particles at aqueous interfaces are typically stabilized by ...
Particle-laden interfaces have promising potentials in many fields because the particulate nature ca...
Micron-sized anisotropic particles with homogeneous surface properties at a fluid interface can defo...
How to dynamically tune an assembly of anisotropic colloidal particles adsorbed at fluid-fluid inter...
This thesis concerns the modelling of the interactions between colloidal particles and fluid-fluid i...
There\u27s a great interest in studying particle assembly on fluid interfaces for their properties t...
Classical capillary theory predicts that a non-neutrally wetting ellipsoidal particle adsorbed at a ...
<p> </p> <p> This thesis deals with spherical microparticles trapped at liquid interfaces. It focuse...
Within a general theoretical framework, we study the effective, deformation-induced interaction bet...
For partially wetting, ellipsoidal colloids trapped at a fluid interface, their effective, interface...
We study the capillary forces acting on sub-millimeter particles (0.02-0.6 mm) trapped at a liquid-l...
There\u27s a great interest in studying particle assembly on fluid interfaces for their properties t...
Objects floating at a liquid interface, such as breakfast cereals floating in a bowl of milk or bubb...
Particles can be adsorbed to liquid-fluid interface to minimize interfacial energy. The adsorbed par...
Micron-sized anisotropic particles with homogeneous surface properties at a fluid interface can defo...
Nanometre- and micrometre-sized charged particles at aqueous interfaces are typically stabilized by ...
Particle-laden interfaces have promising potentials in many fields because the particulate nature ca...
Micron-sized anisotropic particles with homogeneous surface properties at a fluid interface can defo...
How to dynamically tune an assembly of anisotropic colloidal particles adsorbed at fluid-fluid inter...
This thesis concerns the modelling of the interactions between colloidal particles and fluid-fluid i...
There\u27s a great interest in studying particle assembly on fluid interfaces for their properties t...
Classical capillary theory predicts that a non-neutrally wetting ellipsoidal particle adsorbed at a ...