Using simulations and theory, we show that the cubatic phase is metastable for three model hard platelets. The locally favored structures of perpendicular particle stacks in the fluid prevent the formation of the columnar phase through geometric frustration resulting in vitrification. Also, we find a direct link between structure and dynamic heterogeneities in the cooperative rotation of particle stacks, which is crucial for the devitrification process. Finally, we show that the lifetime of the glassy cubatic phase can be tuned by surprisingly small differences in particle shape. © 2012 American Physical Society
The free energy landscape responsible for crystallization can be complex even for relatively simple ...
We consider the possibility of smectic and columnar phases in fluids and colloidal suspensions of al...
The phase behavior of model colloidal systems containing platelets and polymer is investigated using...
Computer simulation studies are reported for the bulk phase behaviour of a colloidal platelet with s...
We investigate the phase behavior of a model for colloidal hard platelets and rigid discotic molecul...
We perform Monte Carlo simulations to analyze the equilibrium dynamics and the long-time structural ...
We study the phase behaviour of hard spheres confined between two parallel hard plates using extensi...
The phase behavior of a model suspension of colloidal polydisperse platelets is studied using densit...
We study the phase behavior of bowl-shaped particles using computer simulations. These particles wer...
Colloidal rod-like particles self-assemble into a variety of liquid crystal phases. In contrast to t...
In this thesis we aim to provide a many-sided answer to the question: what are the consequences of p...
We consider homogeneous crystallisation rates in confocal microscopy experiments on colloidal nearly...
The dynamic process of homogenous nucleation in charged colloids is investigated by brute-force mo...
We investigate the isotropic-to-smectic transformation in a fluid of colloidal hard rods using compu...
We study the phase behavior of model colloidal systems composed of infinitely thin hard platelets, w...
The free energy landscape responsible for crystallization can be complex even for relatively simple ...
We consider the possibility of smectic and columnar phases in fluids and colloidal suspensions of al...
The phase behavior of model colloidal systems containing platelets and polymer is investigated using...
Computer simulation studies are reported for the bulk phase behaviour of a colloidal platelet with s...
We investigate the phase behavior of a model for colloidal hard platelets and rigid discotic molecul...
We perform Monte Carlo simulations to analyze the equilibrium dynamics and the long-time structural ...
We study the phase behaviour of hard spheres confined between two parallel hard plates using extensi...
The phase behavior of a model suspension of colloidal polydisperse platelets is studied using densit...
We study the phase behavior of bowl-shaped particles using computer simulations. These particles wer...
Colloidal rod-like particles self-assemble into a variety of liquid crystal phases. In contrast to t...
In this thesis we aim to provide a many-sided answer to the question: what are the consequences of p...
We consider homogeneous crystallisation rates in confocal microscopy experiments on colloidal nearly...
The dynamic process of homogenous nucleation in charged colloids is investigated by brute-force mo...
We investigate the isotropic-to-smectic transformation in a fluid of colloidal hard rods using compu...
We study the phase behavior of model colloidal systems composed of infinitely thin hard platelets, w...
The free energy landscape responsible for crystallization can be complex even for relatively simple ...
We consider the possibility of smectic and columnar phases in fluids and colloidal suspensions of al...
The phase behavior of model colloidal systems containing platelets and polymer is investigated using...