Using event-driven Brownian dynamics simulations, we investigate the epitaxial growth of hardsphere crystals with a face-centered-cubic (fcc) structure on the three densest cross-sectional planes of the fcc: (i) fcc (100), (ii) fcc (111), and (iii) fcc (110). We observe that for high settling velocities, large fcc crystals with very few extended defects grow on the fcc (100) template. Our results show good agreement with the experiments of Jensen et al. [Soft Matter 9, 320 (2013)], who observed such large fcc crystals upon centrifugation on an fcc (100) template. We also compare the quality of the fcc crystal formed on the fcc (111) and fcc (110) templates with that of the fcc (100) template and conclude that the latter yields the best crys...
When colloidal particles form a crystal phase on a spherical template, their packing is governed by ...
We present a numerical study of colloidal crystal growth on finite templates. Specifically, we consi...
In this thesis, we examine the phase behaviour and nucleation in a variety of hard-sphere systems. I...
Using event-driven Brownian dynamics simulations, we investigate the epitaxial growth of hardsphere ...
Hard sphere crystal growth is a delicate interplay between kinetics and thermodynamics, where the fo...
We have studied, with quantitative confocal microscopy, epitaxial colloidal crystal growth of partic...
We have studied, with quantitative confocal microscopy, epitaxial colloidal crystal growth of partic...
A review of computer simulation studies on crystal growth in hard-sphere systems is presented. A his...
We estimate the rate at which randomly stacked hard-sphere crystals transform into the thermodynamic...
A real-space study is presented on the occurrence of stacking faults in crystals of silica colloids ...
In colloidal epitaxy a patterned substrate is used to manipulate colloidal crystallization. The tech...
We investigate the crystallization of monodisperse hard spheres confined by two square patterned sub...
We study crystal nucleation under the influence of sedimentation in a model of colloidal hard sphere...
Nucleation is an important stage in the growth of crystals. During this stage, the structure and ori...
Crystal formation process of charged colloidal particles is investigated using Brownian dynamics (BD...
When colloidal particles form a crystal phase on a spherical template, their packing is governed by ...
We present a numerical study of colloidal crystal growth on finite templates. Specifically, we consi...
In this thesis, we examine the phase behaviour and nucleation in a variety of hard-sphere systems. I...
Using event-driven Brownian dynamics simulations, we investigate the epitaxial growth of hardsphere ...
Hard sphere crystal growth is a delicate interplay between kinetics and thermodynamics, where the fo...
We have studied, with quantitative confocal microscopy, epitaxial colloidal crystal growth of partic...
We have studied, with quantitative confocal microscopy, epitaxial colloidal crystal growth of partic...
A review of computer simulation studies on crystal growth in hard-sphere systems is presented. A his...
We estimate the rate at which randomly stacked hard-sphere crystals transform into the thermodynamic...
A real-space study is presented on the occurrence of stacking faults in crystals of silica colloids ...
In colloidal epitaxy a patterned substrate is used to manipulate colloidal crystallization. The tech...
We investigate the crystallization of monodisperse hard spheres confined by two square patterned sub...
We study crystal nucleation under the influence of sedimentation in a model of colloidal hard sphere...
Nucleation is an important stage in the growth of crystals. During this stage, the structure and ori...
Crystal formation process of charged colloidal particles is investigated using Brownian dynamics (BD...
When colloidal particles form a crystal phase on a spherical template, their packing is governed by ...
We present a numerical study of colloidal crystal growth on finite templates. Specifically, we consi...
In this thesis, we examine the phase behaviour and nucleation in a variety of hard-sphere systems. I...