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[HTML][HTML] A broad perspective to particle-laden fluid interfaces systems: From chemically homogeneous particles to active colloids
Particles adsorbed to fluid interfaces are ubiquitous in industry, nature or life. The wide
range of properties arising from the assembly of particles at fluid interface has stimulated an …
range of properties arising from the assembly of particles at fluid interface has stimulated an …
Self‐Assembly of Nanoparticles in 2D and 3D: Recent Advances and Future Trends
For more than a century, it has been known that emulsions consisting of two immiscible
liquids can be rendered from coalescence by means of solid particles, coined as Pickering …
liquids can be rendered from coalescence by means of solid particles, coined as Pickering …
Long-wavelength fluctuations and the glass transition in two dimensions and three dimensions
Phase transitions significantly differ between 2D and 3D systems, but the influence of
dimensionality on the glass transition is unresolved. We use microscopy to study colloidal …
dimensionality on the glass transition is unresolved. We use microscopy to study colloidal …
Freezing on a sphere
The best understood crystal ordering transition is that of two-dimensional freezing, which
proceeds by the rapid eradication of lattice defects as the temperature is lowered below a …
proceeds by the rapid eradication of lattice defects as the temperature is lowered below a …
Lindemann melting criterion in two dimensions
It is demonstrated that the Lindemann's criterion of melting can be formulated for two-
dimensional classical solids using statistical mechanics arguments. With this formulation the …
dimensional classical solids using statistical mechanics arguments. With this formulation the …
Tracking E. coli runs and tumbles with scattering solutions and digital holographic microscopy
We use in-line digital holographic microscopy to image freely swimming E. coli. We show
that fitting a light scattering model to E. coli holograms can yield quantitative information …
that fitting a light scattering model to E. coli holograms can yield quantitative information …
Particle contact angles at fluid interfaces: pushing the boundary beyond hard uniform spherical colloids
Micro and nanoparticles at fluid interfaces have been attracting increasing interest in the last
few decades as building blocks for materials, as mechanical and structural probes for …
few decades as building blocks for materials, as mechanical and structural probes for …
Shape-anisotropic colloids at interfaces
Research in the 1980s demonstrated the formation of monolayers of particles achieved by
interfacial particle trap** as a model system for investigating colloids in two dimensions …
interfacial particle trap** as a model system for investigating colloids in two dimensions …
Interfacial flow around Brownian colloids
Understanding the flow created by particle motion at interfaces is a critical step toward
understanding hydrodynamic interactions and colloidal self organization. We have …
understanding hydrodynamic interactions and colloidal self organization. We have …
Thermodynamics and dynamics of two-dimensional systems with dipolelike repulsive interactions
Thermodynamics and dynamics of a classical two-dimensional system with dipolelike
isotropic repulsive interactions are studied systematically using extensive molecular …
isotropic repulsive interactions are studied systematically using extensive molecular …