To realize new and directed self-assembly (SA) pathways, the focus in colloid science and nanoscience has shifted from spherical particles and interactions to increasingly more complex shapes and interparticle potentials. This field is fueled by recent breakthroughs in particle synthesis, such as particles with complementary shapes that allow for specific lock-and-key interactions induced by depletants. Here, we show that electric fields form an alternative route for directing the SA of convex and concave colloids, with the additional advantage that the system now becomes switchable by external conditions. Both experimental and theoretical results are presented that validate the electric-field-induced assembly mechanism and show that even i...
Current theoretical attempts to understand the reversible formation of stable microtubules and virus...
Current theoretical attempts to understand the reversible formation of stable microtubules and virus...
A diverse set of functional materials can be fabricated by assembling dispersions of colloids and na...
To realize new and directed self-assembly (SA) pathways, the focus in colloid science and nanoscienc...
To realize new and directed self-assembly (SA) pathways, the focus in colloid science and nanoscienc...
During the last decade the focus in colloid science on selfassembly has moved from mostly spherical ...
The assembly of materials from building blocks has been in the core of a wide range of applications ...
This study explored the application of localized electric fields for reversible directed self-assemb...
The central theme of this thesis is exploiting the directed self-assembly of both isotropic and anis...
Field-directed self-assembly (DSA) has recently moved into the focus of the soft-matter and nanotech...
Colloidal suspensions and tunable self-assembly of colloidal particles attract a great interest in r...
We have seen a considerable effort in colloid sciences to copy Nature’s successful strategies to fab...
We study how dispersions of colloidal particles in a cholesteric liquid crystal behave under a time-...
Over the past few decades, the out-of-equilibrium transport and assembly of colloidal particles have...
We study how dispersions of colloidal particles in a cholesteric liquid crystal behave under a time-...
Current theoretical attempts to understand the reversible formation of stable microtubules and virus...
Current theoretical attempts to understand the reversible formation of stable microtubules and virus...
A diverse set of functional materials can be fabricated by assembling dispersions of colloids and na...
To realize new and directed self-assembly (SA) pathways, the focus in colloid science and nanoscienc...
To realize new and directed self-assembly (SA) pathways, the focus in colloid science and nanoscienc...
During the last decade the focus in colloid science on selfassembly has moved from mostly spherical ...
The assembly of materials from building blocks has been in the core of a wide range of applications ...
This study explored the application of localized electric fields for reversible directed self-assemb...
The central theme of this thesis is exploiting the directed self-assembly of both isotropic and anis...
Field-directed self-assembly (DSA) has recently moved into the focus of the soft-matter and nanotech...
Colloidal suspensions and tunable self-assembly of colloidal particles attract a great interest in r...
We have seen a considerable effort in colloid sciences to copy Nature’s successful strategies to fab...
We study how dispersions of colloidal particles in a cholesteric liquid crystal behave under a time-...
Over the past few decades, the out-of-equilibrium transport and assembly of colloidal particles have...
We study how dispersions of colloidal particles in a cholesteric liquid crystal behave under a time-...
Current theoretical attempts to understand the reversible formation of stable microtubules and virus...
Current theoretical attempts to understand the reversible formation of stable microtubules and virus...
A diverse set of functional materials can be fabricated by assembling dispersions of colloids and na...