Crystallization represents a long-standing problem in statistical physics and is of great relevance for many practical and industrial applications. It often occurs in the presence of container walls or impurities, which are usually unavoidable or might even be desirable to facilitate crystallization by exploiting heterogeneous nucleation. Heterogeneous nucleation relies on a seed. Here we discuss the role of the seed and concentrate on a very generic situation, namely crystallization of hard and soft colloidal spheres in the presence of flat or curved hard walls. Curvature serves as a simple means to introduce a tunable mismatch between the seed-induced crystal lattice and the thermodynamically-favoured lattice. The mismatch induces distort...
We present a real-space imaging study of homogeneous and heterogeneous crystal nucleation and growth...
We report on a large scale computer simulation study of crystal nucleation in hard spheres. Through ...
When colloidal particles form a crystal phase on a spherical template, their packing is governed by ...
Nucleation is an important stage in the growth of crystals. During this stage, the structure and ori...
The addition of small 'seed' particles to a supersaturated solution can greatly increase the rate at...
We study crystal nucleation under the influence of sedimentation in a model of colloidal hard sphere...
We study crystal nucleation under the influence of sedimentation in a model of colloidal hard sphere...
We studied the crystallization kinetics of the homogeneous bulk as well as of the heterogeneous wall...
We report on a numerical study of the effect of a smooth, hard wall on the crystallization of hard-s...
We report on a numerical study of the effect of a smooth, hard wall on the crystallization of hard-s...
Confocal microscopy has been used to study the crystallization of two colloidal model systems that a...
Confocal microscopy has been used to study the crystallization of two colloidal model systems that a...
When colloidal particles form a crystal phase on a spherical template, their packing is governed by ...
When colloidal particles form a crystal phase on a spherical template, their packing is governed by ...
We present a real-space imaging study of homogeneous and heterogeneous crystal nucleation and growth...
We present a real-space imaging study of homogeneous and heterogeneous crystal nucleation and growth...
We report on a large scale computer simulation study of crystal nucleation in hard spheres. Through ...
When colloidal particles form a crystal phase on a spherical template, their packing is governed by ...
Nucleation is an important stage in the growth of crystals. During this stage, the structure and ori...
The addition of small 'seed' particles to a supersaturated solution can greatly increase the rate at...
We study crystal nucleation under the influence of sedimentation in a model of colloidal hard sphere...
We study crystal nucleation under the influence of sedimentation in a model of colloidal hard sphere...
We studied the crystallization kinetics of the homogeneous bulk as well as of the heterogeneous wall...
We report on a numerical study of the effect of a smooth, hard wall on the crystallization of hard-s...
We report on a numerical study of the effect of a smooth, hard wall on the crystallization of hard-s...
Confocal microscopy has been used to study the crystallization of two colloidal model systems that a...
Confocal microscopy has been used to study the crystallization of two colloidal model systems that a...
When colloidal particles form a crystal phase on a spherical template, their packing is governed by ...
When colloidal particles form a crystal phase on a spherical template, their packing is governed by ...
We present a real-space imaging study of homogeneous and heterogeneous crystal nucleation and growth...
We present a real-space imaging study of homogeneous and heterogeneous crystal nucleation and growth...
We report on a large scale computer simulation study of crystal nucleation in hard spheres. Through ...
When colloidal particles form a crystal phase on a spherical template, their packing is governed by ...