Hard sphere crystal growth is a delicate interplay between kinetics and thermodynamics, where the former is commonly thought to favour a random hexagonal close packed structure and the latter leads to a face centered cubic crystal. In this article, we discuss the influence of slanted stacking faults on the growth of sedimentary colloidal crystals from dispersions with high initial volume fraction and particles that sediment relatively fast. We find that the presence of these persisting faults locally induces fcc structure, while defect free regions form rhcp crystals as expected for a system where kinetics dominate. These results are promising for use in epitaxial growth of colloidal crystals, where proper templating could lead to almost pe...
Nucleation is an important stage in the growth of crystals. During this stage, the structure and ori...
We determine the kinetic phase diagram for nucleation and growth of crystal phases in a suspension o...
This thesis is made up of several studies of boundaries occurring in colloidal hard sphere crystals ...
Using event-driven Brownian dynamics simulations, we investigate the epitaxial growth of hardsphere ...
A real-space study is presented on the occurrence of stacking faults in crystals of silica colloids ...
We present results for high-resolution small-angle single-crystal X-ray diffraction of hard-sphere s...
We have studied, with quantitative confocal microscopy, epitaxial colloidal crystal growth of partic...
We present results for high-resolution small-angle single-crystal X-ray diffraction of hard-sphere s...
We have studied, with quantitative confocal microscopy, epitaxial colloidal crystal growth of partic...
We demonstrate that randomly stacked hard-sphere colloidal crystals do not merely consist of random ...
This work characterizes the defect stacking registry in field-assisted colloidal crystallization uti...
When colloidal particles form a crystal phase on a spherical template, their packing is governed by ...
We estimate the rate at which randomly stacked hard-sphere crystals transform into the thermodynamic...
Using microradian X-ray diffraction, we investigated the crystal structure of convectively assembled...
Colloidal systems possess unique features to investigate the governing principles behind liquid-to-s...
Nucleation is an important stage in the growth of crystals. During this stage, the structure and ori...
We determine the kinetic phase diagram for nucleation and growth of crystal phases in a suspension o...
This thesis is made up of several studies of boundaries occurring in colloidal hard sphere crystals ...
Using event-driven Brownian dynamics simulations, we investigate the epitaxial growth of hardsphere ...
A real-space study is presented on the occurrence of stacking faults in crystals of silica colloids ...
We present results for high-resolution small-angle single-crystal X-ray diffraction of hard-sphere s...
We have studied, with quantitative confocal microscopy, epitaxial colloidal crystal growth of partic...
We present results for high-resolution small-angle single-crystal X-ray diffraction of hard-sphere s...
We have studied, with quantitative confocal microscopy, epitaxial colloidal crystal growth of partic...
We demonstrate that randomly stacked hard-sphere colloidal crystals do not merely consist of random ...
This work characterizes the defect stacking registry in field-assisted colloidal crystallization uti...
When colloidal particles form a crystal phase on a spherical template, their packing is governed by ...
We estimate the rate at which randomly stacked hard-sphere crystals transform into the thermodynamic...
Using microradian X-ray diffraction, we investigated the crystal structure of convectively assembled...
Colloidal systems possess unique features to investigate the governing principles behind liquid-to-s...
Nucleation is an important stage in the growth of crystals. During this stage, the structure and ori...
We determine the kinetic phase diagram for nucleation and growth of crystal phases in a suspension o...
This thesis is made up of several studies of boundaries occurring in colloidal hard sphere crystals ...