Glass formation in colloidal suspensions has many of the hallmarks of glass formation in molecular materials1, 2, 3, 4, 5. For hard-sphere colloids, which interact only as a result of excluded volume, phase behaviour is controlled by volume fraction, ; an increase in drives the system towards its glassy state, analogously to a decrease in temperature, T, in molecular systems. When increases above * 0.53, the viscosity starts to increase significantly, and the system eventually moves out of equilibrium at the glass transition, g 0.58, where particle crowding greatly restricts structural relaxation1, 2, 3, 4. The large particle size makes it possible to study both structure and dynamics with light scattering1 and imaging3, 4; colloidal su...
We use molecular dynamics to investigate the glass transition occurring at large volume fraction, φ,...
Microgel colloids, solvent swollen hydrogel particles of microscopic size, are in osmotic equilibriu...
Microgel colloids, solvent swollen hydrogel particles of microscopic size, are in osmotic equilibriu...
Glass formation in colloidal suspensions has many of the hallmarks of glass formation in molecular m...
Glass formation in colloidal suspensions has many of the hallmarks of glass formation in molecular m...
Glasses formed from nano- and microparticles form a fascinating testing ground to explore and unders...
Glasses formed from nano- and microparticles form a fascinating testing ground to explore and unders...
We study the structure and dynamics of colloidal particles with a spherical hard core and a thermo-r...
We explore the glassy dynamics of soft colloids using microgels and charged particles interacting b...
Colloidal hard-sphere suspensions are convenient experimental models to understand soft matter, and ...
Colloidal hard-sphere suspensions are convenient experimental models to understand soft matter, and ...
The glass transition is the most enduring grand-challenge problem in contemporary condensed matter p...
Colloidal hard-sphere suspensions are convenient experimental models to understand soft matter, and ...
Colloidal hard-sphere suspensions are convenient experimental models to understand soft matter, and ...
The glass transition is the most enduring grand-challenge problem in contemporary condensed matter p...
We use molecular dynamics to investigate the glass transition occurring at large volume fraction, φ,...
Microgel colloids, solvent swollen hydrogel particles of microscopic size, are in osmotic equilibriu...
Microgel colloids, solvent swollen hydrogel particles of microscopic size, are in osmotic equilibriu...
Glass formation in colloidal suspensions has many of the hallmarks of glass formation in molecular m...
Glass formation in colloidal suspensions has many of the hallmarks of glass formation in molecular m...
Glasses formed from nano- and microparticles form a fascinating testing ground to explore and unders...
Glasses formed from nano- and microparticles form a fascinating testing ground to explore and unders...
We study the structure and dynamics of colloidal particles with a spherical hard core and a thermo-r...
We explore the glassy dynamics of soft colloids using microgels and charged particles interacting b...
Colloidal hard-sphere suspensions are convenient experimental models to understand soft matter, and ...
Colloidal hard-sphere suspensions are convenient experimental models to understand soft matter, and ...
The glass transition is the most enduring grand-challenge problem in contemporary condensed matter p...
Colloidal hard-sphere suspensions are convenient experimental models to understand soft matter, and ...
Colloidal hard-sphere suspensions are convenient experimental models to understand soft matter, and ...
The glass transition is the most enduring grand-challenge problem in contemporary condensed matter p...
We use molecular dynamics to investigate the glass transition occurring at large volume fraction, φ,...
Microgel colloids, solvent swollen hydrogel particles of microscopic size, are in osmotic equilibriu...
Microgel colloids, solvent swollen hydrogel particles of microscopic size, are in osmotic equilibriu...